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Enercon Services, Inc., Final Status Survey Report, Rev 0
ML17039A895
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Site: University of Buffalo
Issue date: 01/09/2017
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FINAL STATUS SURVEY REPORT Buffalo Materials Research Center The State University of New York University at Buffalo Nuclear Regulatory Commission Facility Operating License R-77 Revision 0 January 9, 2017 Prepared for:

The State University of New York Office of Environment, Health, and Safety Services Prepared by:

Enercon Services, Inc.

1501 Ardmore Blvd., Suite 200 Pittsburgh, PA 15221

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report ii

SUMMARY

OF CHANGES Revisions to this report will be tracked when revisions are issued. Changed sections will be identified by special demarcation in the margin. A summary description of each revision will be noted in the following table.

Revision Number Date Description of Change 0

1/9/2017 Initial issue.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report iii TABLE OF CONTENTS LIST OF ACRONYMS AND ABBREVIATIONS................................................................................ VI EXECUTIVE

SUMMARY

................................................................................................................... VIII

1.0 INTRODUCTION

......................................................................................................................... 1 1.1 Purpose................................................................................................................................... 1 1.2 Project Background................................................................................................................ 1 1.3 Radionuclides of Concern...................................................................................................... 5 1.4 Decommissioning Activities.................................................................................................. 6 Removal of the Operating Platform............................................................................ 6 Removal of Reactor Components............................................................................... 6 Water Removal from the Reactor Tank...................................................................... 6 Removal of Activated Portions of the Reactor Tank Liner........................................ 7 Removal of Reactor Bioshield, Dry Cell, and Hot Cell.............................................. 7 Removal of the Heating, Ventilation, and Air Conditioning System and Other Impacted Systems....................................................................................................... 8 Waste Systems Removal............................................................................................. 8 Demolition of Containment Building......................................................................... 8 Demolition of Administration Building...................................................................... 8 Embedded Items......................................................................................................... 9 2.0 FINAL STATUS SURVEY METHODOLOGY....................................................................... 10 2.1 Release Criteria.................................................................................................................... 10 Volumetric Derived Concentration Guideline Level................................................ 10 Gross Beta Derived Concentration Guideline Level................................................ 11 Class 1 Excavation Area........................................................................................... 12 Class 2 Area.............................................................................................................. 13 Class 3 Area.............................................................................................................. 13 Measurement and Sample and Location Identification............................................ 14 2.2 Types and Methods of Surveys............................................................................................ 15 2.3 Survey Instrumentation........................................................................................................ 15 Instrument Models.................................................................................................... 15 Instrument Calibration.............................................................................................. 15 Pre-Operational Checks............................................................................................ 16 Instrument Efficiency............................................................................................... 16 Minimum Detectable Concentration......................................................................... 17 3.0 FINAL STATUS SURVEY RESULTS...................................................................................... 18 3.1 Overview of Final Status Survey Results............................................................................ 18 Surface Preparation................................................................................................... 18 Determination of Survey and Sample Point Locations............................................. 20 Radiological Survey Instruments Used..................................................................... 20 Field Data for Survey Units...................................................................................... 23 Radiological Measurements for Bedrock Surfaces (SU1 through SU4).................. 23

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report iv Radiological Measurements for Soil Surfaces (SU5 and SU6)................................ 26 Radiological Measurements for Soil Surfaces (SU7)............................................... 31 Determination of Background Values...................................................................... 31 3.2 Surface Scan (Gamma Walkover) Results........................................................................... 32 3.3 Soil Stockpile Sampling....................................................................................................... 32

4.0 CONCLUSION

S.......................................................................................................................... 33

5.0 REFERENCES

............................................................................................................................. 34 LIST OF TABLES Table 1-1: BMRC Radionuclides of Concern............................................................................................... 5 Table 2-1: DCGLs for Primary Radionuclides of Concern in Soil............................................................. 10 Table 2-2: NRC License Termination Screening Levels for Building (Bedrock) Surfaces........................ 11 Table 2-3: FSS Instrumentation.................................................................................................................. 15 Table 3-1: Sampling Density for Survey Units.......................................................................................... 20 Table 3-2: List of Radiological Survey Instruments................................................................................... 22 Table 3-3: Results of MicroShield Calculations for Bedrock Surface Scans (mR/hr)................................ 24 LIST OF FIGURES Figure 1-1: Location of Former BMRC........................................................................................................ 2 Figure 1-2: Tank Farm Location................................................................................................................... 4 Figure 1-3: Artists rendering - Interior Cut Away View of the Reactor and Containment......................... 9 Figure 2-1: Survey Units by Classification................................................................................................. 14 Figure 3-1: Bedrock Sample Location........................................................................................................ 19 Figure 3-2: Soil Sample Location............................................................................................................... 19 Figure 3-3: Frequency of Gross Beta Static Measurements for Bedrock Surfaces..................................... 24 Figure 3-4: Frequency Distribution for Scan Gross cpm for Bedrock Surfaces......................................... 25 Figure 3-5: Frequency Distribution for Scan Net cpm for Bedrock Surfaces............................................. 26 Figure 3-6: Frequency Distribution for Scan Gross cpm for Soil Surfaces................................................ 27 Figure 3-7: Frequency Distribution for Scan Net cpm for Soil Surfaces.................................................... 28 Figure 3-8: Time Plot of Scan Survey for February 5, 2015...................................................................... 29 Figure 3-9: Site Plot of Scan Data for February 5, 2015............................................................................ 30

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report v

LIST OF APPENDICES APPENDIX A - LIST OF EMBEDDED ITEMS APPENDIX B - DATA POINT LOCATIONS APPENDIX C - TECHNICAL DATA SHEETS FOR SURVEY INSTRUMENTS APPENDIX D - CALIBRATION RECORDS APPENDIX E - FIELD DATA SPREADSHEETS APPENDIX F - LABORATORY RESULTS APPENDIX G - SURFACE SCAN RESULTS APPENDIX H - SOIL STOCKPILE ANALYSIS APPENDIX I - VARIATIONS FROM DP

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report vi LIST OF ACRONYMS AND ABBREVIATIONS R/hr microRem per hour AEC Atomic Energy Commission Ag-108m Silver-108m ALARA As Low As Reasonably Achievable BMRC Buffalo Materials Research Center C&D Construction and Demolition Cs-137 Cesium-137 CFR Code of Federal Regulations cm2 square centimeters Co-60 Cobalt-60 cpm counts per minute D&D Decontamination and Decommissioning DCGL Derived Concentration Guideline Level DOC Decommissioning Oversight Contractor DOT Department of Transportation DP Decommissioning Plan dpm disintegrations per minute Ei instrument efficiency Es surface efficiency Et total instrument efficiency FSS Final Status Survey GPS Global Positioning System HVAC Heating, Ventilation, and Air Conditioning LLRW Low-Level Radioactive Waste MARSSIM NUREG-1575, Multi-Agency Radiation Survey and Site Investigation Manual MDC Minimum Detectable Concentration mR/hr millirem per hour MWt Megawatt thermal N-16 Nitrogen-16 NaI Sodium Iodide NIST National Institute of Standards and Technology NRC U.S. Nuclear Regulatory Commission ORAU Oak Ridge Associated Universities OSHA Occupational Safety and Health Administration pCi/g picocuries per gram PULSTAR Pulse Training Assembly Reactor ROCs Radionuclides of Concern RWP Radiation Work Permit SOF Sum-of-Fractions SSCs uR/hr Systems, Structures, and Components MicroR per hour SUNY The State University of New York

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report vii TEDE Total Effective Dose Equivalent VSP Visual Sample Plan© alpha emission beta emission gamma emission

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report viii EXECUTIVE

SUMMARY

The Buffalo Materials Research Center (BMRC) reactor was located on the south campus of The State University of New York (SUNY) at Buffalo in the city of Buffalo, New York. During the period of operation, the BMRC had multiple uses, including training and education, transient fuel performance testing, materials radiation damage research, isotope production, neutron activation analysis, radiography, and delayed fission assay.

SUNY was licensed by the U.S. Nuclear Regulatory Commission (NRC) to possess radioactive materials within the BMRC.

The reactor was defueled in 2005. Following removal of the spent fuel, the BMRC entered Decontamination and Decommissioning (D&D) with the goal of NRC license termination.

In 2009 ENERCON was hired by the University at Buffalo to provide Decommissioning scope, schedule and pricing. In 2010, SUNY selected Enercon Services, Inc. (ENERCON) as the Decommissioning Oversight Contractor (DOC). During the winter of 2011 ENERCON performed a characterization of the BMRC. July of 2011 the University awarded a contract to Energy Solutions to remove, transport and dispose of stored LLRW from the containment building of BMRC. June of 2012 the University awarded a contract to Mark Cerrone to complete interference removal prior to the start of the main Decommissioning contract. The scope of work consisted of asbestos and lead abatement along with removal of PCB caulk.

Concurrent with these contracts ENERCON developed a Decommissioning Plan and Final Status Survey Plan which were submitted and approved by the NRC. October 30, 2012 the University awarded a contract to LVI Environmental Services, Inc. (LVI), to complete the D&D contract to implement the (DP).. The reactor bridge and control rod drive were removed in January 2013. The reactor core assembly (core, reflector, grid plates, and stand) was removed in February 2013 with the subsequent removal of activated portions of the bioshield. Auxiliary systems within the BMRC were removed, and the BMRC was decontaminated where necessary to support a full radiological release survey prior to overall demolition.

The DOC performed the release survey and, following a confirmatory survey by the NRC, a few discrete embedded items were identified for removal and disposal during overall building demolition. Following removal of these embedded items, a detailed survey was performed to ensure all material met release criteria prior to facility demolition. The building release survey was submitted to the NRC June 5, 2014.

LVIs Demolition Work Plan was accepted October of 2014. The administration building and containment building were demolished in late 2014. Backfill and surface restoration of the excavation cavity were

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report ix completed in October of 2015. From December 2014 through October 2015, a Final Status Survey (FSS) was conducted of the soil within the building footprint and surrounding area per the NRC-approved FSS Plan. The FSS included radiological scans and soil samples. The FSS results support an unrestricted release of the NRC license.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 1

1.0 INTRODUCTION

This report presents the results of post-remediation FSS (i.e., radiological survey and sampling) activities that were conducted following decontamination and demolition of the BMRC facility. This FSS Report is in support of a DP developed in accordance with Chapter 17 of NUREG-1537 Part 1, Guidance for Preparing and Reviewing Applications for Licensing of Non-Power Reactors and NUREG-1757, Consolidated Decommissioning Guidance. The original Decommissioning Plan (Revision 0) was submitted February 6, 2013 and the final Decommissioning Plan (Revision 1) was submitted May 31, 2012. The Final Status Survey Plan (Revision 0) was submitted June 12, 2012. Both the Decommissioning Plan and the Final Status Survey Plan are filed on the NRCs ADAMS.

During construction minor variations from the Decommissioning Plan were addressed with Operating Committee approved Work Plans. Appendix I contains copies of the work plans and a summary of the variations from the Decommissioning Plan.

1.1 Purpose The purpose of the FSS is to demonstrate that the radiological conditions at the BMRC satisfy the release criteria presented in the approved DP, thus supporting a request to the NRC to terminate the NRC license.

For the purpose of this demonstration, the area is divided into survey units, with each survey unit being independently evaluated.

1.2 Project Background The BMRC reactor was located on the south campus of SUNY at Buffalo in the city of Buffalo, New York, as shown on Figure 1-1.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 2

Figure 1-1: Location of Former BMRC The facility was constructed in 1959, went into operation on March 24, 1960, and was operated by The Western New York Nuclear Research Center, Inc., a subsidiary of SUNY, under Atomic Energy Commission (AEC) License R-77. The facility licensee was changed to the Nuclear Science and Technology Center in 1973, and then changed to the BMRC in 1985.

The reactor at the BMRC was placed into operation in 1961 under AEC License R-77 and operated until 1963 with materials testing reactor-type fuel elements with a maximum steady-state power level of 1 Megawatt thermal (MWt). In 1963, the reactor was shut down and the core and control systems were modified so that the reactor could operate with Pulse Training Assembly Reactor (PULSTAR)-type fuel at power levels of up to 2 MWt. In 1964, the facility was re-issued Operating License R-77 for its newly modified reactor. The operating license was subsequently renewed for a period of 20 years in 1984. The reactor operated with PULSTAR-type fuel until the facility was shut down in 1994. The reactor facility

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 3

has undergone several name changes over the years. The Office of Environment, Health and Safety at SUNY at Buffalo is currently the organization that is responsible for maintaining the BMRC and its decommissioning.

The reactor was defueled in 2005. Following removal of the spent fuel, the BMRC entered D&D with the goal of NRC license termination.

The BMRC building was comprised of an administrative/laboratory wing (administrative wing) and a containment building with three levels in each. The three levels were: neutron deck (lowest level, i.e.,

subgrade), gamma deck (second level, i.e., middle level), and control deck (top floor). The neutron deck of the administrative wing (known as the subbasement) housed numerous systems, structures, and components (SSCs) that support operation of the reactor. The remainder of the administrative wing contained 20 rooms which were a mixture of offices, laboratories, utility rooms, and classrooms.

The reactor core was located in a pool-type tank that was 29 feet deep with horizontal dimensions of 13 feet by 7 feet, located in the containment building of the BMRC. The tank contained approximately 13,700 gallons of demineralized water. The reactor fuel consisted of zircalloy-clad PULSTAR fuel elements.

Prior to 1984, liquid waste from the hot cell drain, hot chemistry laboratory, and service area drains was collected in the two 250-gallon tanks located in the tank farm (see Figure 1-2). The tank farm is an underground facility located southeast of the Containment Building. Liquid waste from the Gamma Deck and Control Deck laboratories, change area sinks, and Truck Lock door drain were collected in the two 600-gallon tanks located in the tank farm. In 1984 this system was placed into layup and a new 10,000 gallon vertical tank was installed on the east side of the building, see Figure 1-2.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 4

Figure 1-2: Tank Farm Location Several events occurred at the BMRC during its operational history that led to the determination that the buildings, structures, and immediate surrounding soils were impacted from historical operations at BMRC.

Additional details of the reactor, the site, licensing history, and operational history are documented in the BMRC Historical Site Assessment and the DP.

In 2009 ENERCON was hired to provide decommissioning scope, schedule and pricing. In 2010, SUNY selected ENERCON as the DOC. Prior to the start of the decommissioning contract in November of 2012 two preliminary contracts were released by the Univeristy. The first contract was for the removal of stored LLRW from the neutron deck of the containments building. In the summer of 2011, the team began removing the legacy waste from the BMRC.The second was for interference removal, which primarily consisted of asbestos, lead and PCB abatement. LVI, a D&D contractor, was selected to implement the DP.

The reactor bridge and control rod drive were removed in January 2013. The reactor core assembly (core, reflector, grid plates, and stand) was removed in February 2013, with the subsequent removal of activated portions of the bioshield. Auxiliary systems within the BMRC were removed, and the BMRC was decontaminated where necessary to support a full radiological release survey.

Vertical 10K Tank 1K Tank

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 5

A release survey of the building was performed and, following a confirmatory survey by the NRC, a few discrete embedded items were identified for removal and disposal during overall building demolition.

Information regarding these embedded items is included in Appendix A. Following removal of these embedded items, a detailed survey was performed to ensure all remaining material met the release criteria prior to facilty demolition. The building release survey was submitted to the NRC June 5, 2014.

The administration building and containment building were demolished in late 2014. Backfill and surface restoration of the excavation cavity were completed in October 2015.

From December 2014 through October 2015, an FSS was conducted in the soils of the building footprint and surrounding area per the NRC-approved FSS Plan. In addition to this, surveys were performed in LLRW and clean backfill storage areas. The FSS included radiological scanning and soil sampling as described in the following sections.

1.3 Radionuclides of Concern During characterization of the site, a list of radionuclides of concern (ROCs) was developed based on analytical results of soil samples, waste tank liquid samples, and removable activity wipes (smears) collected for 10 Code of Federal Regulations (CFR) Part 61 waste characterization data. The analytical results of the soils and wipe test did not provide indications of BMRC-derived ROCs; therefore, the selected ROCs for soils were based on the analytical results from the waste tanks and the Part 61 data. Details of the analysis can be found in Part 3.1 of the July 30, 2011 BMRC Characterization Report.

The following table provides the comprehensive list of the ROCs for the BMRC and the applicable area/media where the radionuclide was of concern.

Table 1-1: BMRC Radionuclides of Concern Radionuclide Half Life (yr)

Emission Area(s) of Concern Ag-108m 4.38E+02 Soil; Tank Water; SSCs Am-241 4.32E+02 Tank sediment C-14 5.73E+03 Laboratory areas Co-60 5.27E+00 Soil; SSCs; Bioshield Cs-137 3.01E+01 Soil; SSCs; Bioshield Eu-152 1.36E+01 Soil; SSCs; Bioshield Eu-154 8.59E+00 Soil; SSCs; Bioshield H-3 1.23E+01 Soil; Bioshield and Tank Water Ni-63 1.00E+02 Soil; SSCs; Bioshield Pu-238 8.78E+01 Tank sediment

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 6

Radionuclide Half Life (yr)

Emission Area(s) of Concern Pu-239 2.41E+04 Tank sediment Pu-240 6.60E+03 Tank sediment Sr-90 2.88E+01 SSCs; Ventilation systems; Soil

  • emission from Ba-137m progeny.

1.4 Decommissioning Activities Decommissioning included numerous tasks involving remediation, dismantlement, and demolition of various SSCs with a constant focus on safety and limiting radiation dose to the on-site staff. This section details the results of these tasks. The final project collective Total Effective Dose Equivalent (TEDE) to personnel was 0.393 person-rem. The DP estimated the collective project dose to be 6.7 person-rem.

Removal of the Operating Platform The operating platform was located above the reactor. It was removed to allow better access to the reactor and its components. The operating platform was removed and disposed based on the release criteria in the DP.

Removal of Reactor Components Reactor core components included, but were not limited to, the following: the core frame, plenum, core blades and shrouds, thermal column frame, and sleeve for the fission chamber. Reactor components, irradiation facility tubes for experiments, and other items located within approximately three feet of the core for extended periods of time were activated to levels that required removal and disposal as Low-Level Radioactive Waste (LLRW). The upper portion of reactor components, i.e., control blade drives, irradiation facility tubes, and instrumentation housings, were surveyed and released.

Removal of the reactor components was performed with water still in the reactor pool to provide shielding, thus keeping exposure as low as reasonably achievable (ALARA). Long-handle tools and remotely operated equipment were used to disassemble the components. The components were lifted using the overhead crane and were placed in LLRW containers with appropriate shielding to keep dose rates ALARA and within Department of Transportation (DOT) and disposal facility acceptance limits.

Water Removal from the Reactor Tank The water in the reactor tank was drained, filtered, and discharged to the sanitary sewer system in accordance with the existing discharge permit and, as approved by the EHS Department, using the existing liquid waste system. Radioactive sediments on the bottom of the tank were removed by agitating the sediments to remove them during pumping, for subsequent filtering. The tank water was filtered to remove

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 7

the suspended solids, stored, and sampled according to approved procedures to allow discharge of the water to the sanitary system. Water from any ancillary systems, such as the water purification system or water in the tanks in the tank farm, was processed in the same manner.

Dose rates were carefully monitored as the tank was drained and did not exceed the limits set in the Radiation Work Permit (RWP).

Removal of Activated Portions of the Reactor Tank Liner In the rebuild completed in 1991, a liner was installed in the bottom half (neutron deck level) of the reactor tank. Both the tank and the liner were made of an aluminum alloy (6061-T6). The aluminum liner was removed prior to destructive dismantling of the bioshield. The inner and outer liners were disposed as Class A LLRW at Energy Solutions. Since the bioshield was poured around the completed reactor tank, it was not feasible to remove the original tank separately from the bioshield.

Removal of Reactor Bioshield, Dry Cell, and Hot Cell After the activated core components were removed, the concrete associated with the reactor bioshield, dry cell, and hot cell was removed by destructive methods. As described in the DP, the bioshield, the dry cell, and the walls/ceiling of the hot cell were poured independently from the containment building floors and walls. The concrete waste from the demolition of the portions of these structures between the neutron deck and the bottom of the gamma deck was disposed as Class A LLRW at Energy Solutions.

The bioshield concrete was cut into blocks less than 10 tons each using air-cooled diamond core drills, water-cooled track saws, and diamond wire saws. With these specialized cutting tools, dust and debris were controlled. A recycling system utilizing a Slurry Fox filter press was used to filter the water before circulating it back to the cutting tools. The resulting slurry from the filtered cutting water was drummed and shipped offsite as LLRW for processing and disposal.

The dry cell and hot cell walls were also primarily removed by diamond wire cutting, but limited portions were removed by other demolition methods such as hand tools.

Cut points were verified by a New York licensed professional engineer to ensure the structural integrity of the BMRC was not compromised. Concrete dust from destructive removal operations was continuously monitored and adequately controlled for industrial hygiene and radiological concerns.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 8

Removal of the Heating, Ventilation, and Air Conditioning System and Other Impacted Systems The heating, ventilation, and air conditioning (HVAC) system was removed and disposed as Class A LLRW prior to demolition of the containment building. Radioactively impacted systems were disposed as Class A LLRW at Energy Solutions. Any systems that had been maintained to support decommissioning activities were de-energized at this stage to prepare for demolition of the containment building. The storm water and sanitary systems were removed up to the junction point where they tie into other south campus systems.

The tanks used in the current and former liquid waste management systems were disposed as LLRW. The soil and gravel under the tanks, along with the concrete enclosure and berms, were disposed as LLRW waste.

Waste Systems Removal The waste systems original consisted of a subsurface tank farm located southeast of the containment building. In 1984 this system was replaced with a smaller 1,000-gallon holding tank in the subbasement that was in line with a 10,000-gallon vertical waste holding tank located on the east side of the building.

Figure 1-2 shows the location of all the tanks. The removal of the waste systems included the removal of the original subsurface tanks and the newer 1k and 10k tanks. All piping associated with both waste systems were removed. The tanks were size reduced by industry standard methods and disposed as Class A LLRW at Energy Solutions.

Demolition of Containment Building The containment building was safely demolished following completion of work described in Sections 2.3.1.2.1 through 2.3.1.2.7 of the DP. The activated concrete was removed and disposed of as Class A LLRW. Building surfaces were remediated where necessary to meet the limits specified in Section 2.2.3.2 of the DP. The demolition debris, i.e., concrete and rebar, was sent to a local construction and demolition (C&D) landfill. During this process, several discrete embedded items were identified and disposed as LLRW.

Demolition of Administration Building The administration building was demolished in conjunction with the containment building as there was no future need for the BMRC. Embedded radioactive piping was removed from the waste treatment system during the demolition process. These materials were segregated and disposed as LLRW. Areas adjacent to the piping were re-surveyed and verified to meet release criteria. The building was mostly composed of concrete and masonry construction materials so a majority of the waste was rubble. The demolition debris was disposed of to a C&D landfill in the same manner as the containment building.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 9

Embedded Items A few discrete embedded items were removed for LLRW disposal during demolition of the containment and administration buildings. Information regarding these embedded items is included in Appendix A.

Figure 1-3: Artists rendering - Interior Cut Away View of the Reactor and Containment Legend:

1.

Bioshield

2.

Reactor Plenum

3.

Thermal Column Plug

4.

Beam Tube

5.

Thermal Column Support

6.

Thermal Column Graphite Blocks

7.

Thermal Column Support Plate

8.

Thermal Column

9.

Flux Trap

10. Beam Tube Chamber
11. Reactor
12. Coolant Outlet Plenum
13. Coolant Outlet Piping
14. Reactor Pool Lining
15. Vertical Standpipe
16. Pneumatic Conveyor Tube
17. Isotope Tube
18. Isotope Tube Drive Mechanism
19. Operating Platform
20. NA
21. Hot Cell
22. Hot Cell Crane and Rail
23. Pass Tube Isolation Valve
24. Hot Cell Lead Shutter
25. Hot Cell Lead Shutter Drive Mechanism
26. Hot Cell Remote Manipulators
27. Radiation Shielding Window
28. Hot Cell Instrumentation Access Port
29. Hot Cell Removable Access Plug
30. Dry Chamber
31. NA
32. Removable Metal Plate Floor Opening Cover
33. Pass Tube Isolation Valve Hand Wheel
34. Control Deck Airlock (Access to/from Administration Building)

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 10 2.0 FINAL STATUS SURVEY METHODOLOGY The FSS provides data demonstrating the BMRC facility site complies with the radiological criteria for unrestricted use in 10 CFR 20.1402 of 25-mrem per year TEDE. In meeting the radiological criteria listed in the DP, as approved by the NRC, the data show this unrestricted use criterion has been met. The FSS was designed in accordance with the NRC-approved FSS Plan in order to demonstrate that the BMRC site complies with the radiological release criteria stated in Section 3.1. The FSS Plan described the process for survey preparation, survey design, data collection, data evaluation, and documentation of survey results.

The FSS included gross gamma scans and collection of soil samples analyzed via gamma spectroscopy for the radionuclides of concern and analyzed for hard to detect radionuclides. Also static alpha and beta measurement were taken as described in section 3.0.

2.1 Release Criteria Volumetric Derived Concentration Guideline Level The NRC approved the site Derived Concentration Guideline Levels (DCGLs) for soil as provided in Table 2-1. The DCGLs are the screening levels for radionuclide concentrations in soils in picocuries per gram (pCi/g) as provided in Table B.2 of NUREG-1757 (Reference 10). When applying the DCGLs in Table 2-1, the sum-of-fractions (SOF) rule applies; that is, the sum of the ratios of the radionuclide concentrations to the DCGLs must be less than 1.0.

Table 2-1: DCGLs for Primary Radionuclides of Concern in Soil Radionuclide NRC Screening Value for Surface Soils (pCi/g)

Selected DCGL Value (pCi/g)*

Ag-108m None 8.2 Am-241 None 2.1 C-14 12 12 Co-60 3.8 3.8 Cs-137 11 11 Eu-152 8.7 6.9§ Eu-154 8

8 H-3 110 110 Ni-63 2,100 2,100 Pu-238 2.5 2.5 Pu-239/240 2.3 2.3 Sr-90 1.7 1.7

  • Source: Decommissioning Plan, Buffalo Materials Research Center, February 2012.

§ Taken from EPA MOU

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 11 Release criteria for the bedrock materials used the NRC screening values for building surfaces as found in Table B.1 of NUREG-1757 (Reference 10) and presented in Table 2-2. Release criteria for radionuclides that are not in Table 2-2 were consistent with the Regulatory Guide 1.86 values stated in Section 2.2.3.1 of the DP. The bedrock was prepared prior to the FSS by removing loose materials, i.e., concrete dust, pieces, and soil in excess of one quarter inch. The stated DCGLs assume that less than 10 percent of the measured radioactive material is removable radioactivity. Removable activity wipes were collected in conjunction with static measurement to ensure that the concentration of removable radioactive materials does not exceed 10 percent of the release criteria.

Table 2-2: NRC License Termination Screening Levels for Building (Bedrock) Surfaces Radionuclide NRC Screening Value (dpm/100 cm2)*

Ag-108m 17,000 C-14 3,700,000 Co-60 7,100 Cs-137 28,000 H-3 120,000,000 Ni-63 1,800,000 Sr-90 8,700

  • Source: Decommissioning Plan, Buffalo Materials Research Center, February 2012.

Gross Beta Derived Concentration Guideline Level A potential exposure scenario for the bedrock could be an exposed crawl space or subbasement of a building constructed in the area where the BMRC once stood. In this case, the bedrock would be similar to a surface-contaminated concrete floor for exposure pathways. For building surfaces such as concrete, gross beta measurements are typically performed. Since the bedrock is similar to concrete, gross beta measurements were collected on the bedrock surfaces in addition to volumetric samples. The data were evaluated as if the bedrock were a building surface.

Performing surveys to address the presence of multiple radionuclides requires a knowledge of the expected distribution of the radionuclides, although it was expected that the bedrock would not exhibit indications of any residual radioactive materials at or above the release criteria. Characterization data collected beneath the floor of the neutron deck support this assumption. Consequently, a radionuclide distribution was not calculated. As a conservative assumption, all detectable beta/gamma surface activity was assumed to be Cobalt-60 (Co-60) since it has the most conservative screening level of 7,100 disintegrations per minute per 100 square centimeters (dpm/100 cm2).

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 12 Investigation of an area was performed when a measurement exceeded the gross beta DCGL, i.e.,

7,100 dpm/100 cm2. The investigation consisted of a detailed scan of the area immediately surrounding the elevated measurement to determine the extent of the elevated area. Static measurements were performed if additional elevated areas were detected. Volumetric sampling was performed, if necessary, to determine the specific isotopic content.

Area classification in accordance with Multi-Agency Radiation Survey and Site Investigation Manual (MARSSIM) protocols ensured that the number of measurements and the scan coverage were commensurate with the potential for residual contamination to exceed the approved release criteria. The classification of an area was based on characterization measurements and historical use of the area. Areas that had no reasonable potential for residual contamination because there was no known impact from site operations were classified as non-impacted areas. Non-impacted areas were not required to be surveyed beyond what was completed as part of site characterization to confirm the areas non-impacted classification.

Areas that may have contained residual radioactivity from licensed activities were considered impacted areas. Based on the levels of residual radioactivity present, impacted areas were further divided into Class 1, Class 2, or Class 3 designations. Class 1 areas have the greatest potential for residual activity, while Class 3 areas have the least potential for residual contamination. Each classification was bounded by areas classified one step lower to provide a buffer zone around the higher class. Survey units are shown by classification on Figure 2-1.

The BMRC footprint was comprised of four Class 1 survey units: the Nitrogen-16 (N16) vault, containment, subbasement, and tank farm areas. The side slope area surrounding the excavation was a single Class 2 survey unit. The 10,000-gallon tank area was also categorized as Class 2.

The remainder of the project area was classified as a single Class 3 survey unit.

Class 1 Excavation Area The bottom of the excavated area consisted of four Class 1 survey units based on MARSSIM recommendations. MARSSIM recommends that exterior Class 1 survey units be limited to 2,000 square meters. The DOC performed a 100 percent walkover using 2x2 Sodium Iodide (NaI) detectors, direct measurements were made, and soil samples were collected at predetermined locations using a random start grid pattern. Area exposure rates were taken one meter above ground surfaces at the location of each sample point using an exposure rate meter measuring in units of microR per hour (µR/hr).

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 13 Class 2 Area The side slopes of the excavation and 10,000-gallon tank areas were Class 2 survey units and received a minimum 25 percent walkover scan using 2x2 NaI detectors, direct measurements were made, and soil samples were collected at predetermined locations using a random start grid pattern. Radiation measurements and sample collection, preparation, and analysis were prescribed in specific survey packages or FSS procedures. Area exposure rates were taken at one meter above ground surfaces at the location of each sample point using an exposure rate meter measuring in units of µR/hr.

Class 3 Area The remaining property of the BMRC project area was a single Class 3 survey unit and received a minimum 10 percent scan using the NaI detectors, direct measurements were made, and soil samples were collected at predetermined locations using randomly selected sample locations. Radiation measurements and sample collection, preparation, and analysis were prescribed in specific survey packages. Area exposure rates were taken at one meter above ground surfaces at the location of each sample point using an exposure rate meter measuring in units of µR/hr.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 14 Figure 2-1: Survey Units by Classification Measurement and Sample and Location Identification Visual Sample Plan© (VSP) was used to plot the survey locations to the nearest 0.1 meter. Figures of the survey locations are included in Appendix B. The development of measurement locations within a survey unit was accomplished using Version 6.0 of the VSP software. VSP has been developed by Pacific Northwest National Laboratory to aid in the development, generation, and evaluation of sampling locations to meet various regulatory guidance documents and is regularly used by the NRCs Independent Verification Contractor, Oak Ridge Associated Universities (ORAU).

Measurement locations within each survey unit were clearly identified and documented for purposes of reproducibility. Actual measurement locations were located by global positioning system (GPS). Sample points for Class 1 and Class 2 survey units were based on a systematic triangular grid throughout the survey

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 15 unit by randomly selecting a start point coordinate. VSP generates a random number to determine the start point of the grid pattern. Random measurement locations were chosen for Class 3 survey units using VSP.

Measurement locations selected that did not fall within the actual survey unit boundary or that could not be surveyed due to site conditions were relocated to the nearest location that could be surveyed within the survey unit.

2.2 Types and Methods of Surveys Survey measurements were performed by personnel trained and qualified in accordance with the FSS Plan.

FSS measurements included a 100 percent walkover gamma survey of the Class 1 survey unit using 2x2 NaI gamma scintillation detectors. The Class 2 survey units received a 25 percent walkover survey and Class 3 a 10% walkover survey. Direct one-minute gamma measurements were also made at each sample point in the Class 1 (56 points) and Class 2 (28 points) survey units.

2.3 Survey Instrumentation Instrument Models The FSS consisted of walkover surveys with gamma scintillation detectors and soil sampling with off-site analysis. The instruments used during the FSS and their applications are provided in Table 2-3.

Table 2-3: FSS Instrumentation Instrument Detector Type Radiation Detected Calibration Source Use Ludlum Model 2221 Ludlum Model 44-10 2 x 2 NaI Gamma Cs-137 Gamma Walkover Surveys Ludlum Model 19 Internal NaI Gamma Cs-137 General area exposure rates Ludlum Model 2360 Ludlum Model 43-93 Alpha/Beta Th-230/Tc-99 Alpha/beta surveys Ludlum Model 2929 Ludlum Model 43-10-1 Alpha/Beta Th-230/Tc-99 Removable contamination Technical data sheets for each instrument and detector used are provided in Appendix C.

Instrument Calibration The survey instruments were calibrated prior to use for the FSS. All instruments were calibrated using National Institute of Standards and Technology (NIST)-traceable standards by MJW Technical Services located in Olean, New York. ENERCON maintained copies of the calibration data in the on-site project file. Instruments were checked at the beginning of each day to ensure they were operating properly. The daily check also reassures the validity of the previous days measurements. The daily checks included a background measurement and a source check. These were performed in the field office adjacent to the project site. Instrument records, including dates of use, efficiencies, calibration due dates, and source

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 16 traceability, were maintained in accordance with established procedures. Appendix D provides the calibration records for the instruments used.

Pre-Operational Checks Background readings for counting instruments were conducted daily during instrument use. Any instrument that used a battery had a daily battery check performed before instrument operation. An appropriate initial source response as determined by a comparison with calibration information to the appropriate on-site check source was obtained prior to the instrument being placed into service for the project.

Each day an instrument was used, the instrument received an operational check that consisted of a background reading (observed response rate for rate meters and one-minute static count for scalers) and a count of a known check source (observed response rate for rate meters and one-minute static count for scalers) with the detector in contact with the source in its holder to provide a consistent source to detector distance. If at any time an instrument exceeded its calibration due date or fell outside of the 10 percent of the established initial source response, the instrument was removed from service, repaired, and/or recalibrated and a new initial source check was performed. This information was recorded on a Daily Source Check Log form.

Instrument Efficiency The efficiency of the detection capabilities for each instrument was calculated using the following formula:

Instrument Efficiency (Ei)

S C

C b

s i

)

(

Where:

Cs = Measured source count in counts per minute (cpm)

Cb = Measured background count in cpm S = 2 pi source activity value in dpm Total Instrument Efficiency (Et) s i

t E

E E

Where:

Ei = Instrument efficiency Es = Surface efficiency (0.25 for beta emitters < 400 keV max)

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 17 The total instrument efficiency (Et) is a product of the instrument detection efficiency (Ei) and the surface efficiency (Es) and is used to convert the raw instrument counts into standardized units. The surface efficiency utilized follows the recommendations in ISO-7503-1, which makes recommendations for default surface efficiencies. A surface efficiency of 0.25 is recommended for beta emitters with maximum energies less than 400 keV (NUREG 1507); therefore, the surface efficiency used for the FSS was 0.25 based on a beta energy maximum of 318 keV for Co-60.

Minimum Detectable Concentration The minimum detectable concentration (MDC) is the concentration of radioactivity that an instrument can be expected to detect at a 95 percent confidence level. For instruments performing direct measurements and for laboratory analyses, the MDC goal is 10 to 50 percent of applicable release criteria.

For static (direct) surface measurements, with conventional detectors, the MDC was calculated using the formula:

MDC (dpm/100 cm2) =

t s

b s

s b

T T

T T

R

/

1 29 3

3 Where:

b R

=

Background count rate (cpm) b T

= Background count time (min) s T

= Sample count time (min) t

= Total instrument efficiency (MARSSIM Section 6.6.1)

A list of the survey instruments used is provided in Table 3-2 of Section 3.1.3. Table 3-2 includes average background cpm results, detection efficiency, and average MDC for each instrument.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 18 3.0 FINAL STATUS SURVEY RESULTS 3.1 Overview of Final Status Survey Results The following summarizes the process utilized to obtain the FSS measurements and the validation of the data results.

Surface Preparation To address concerns over site conditions during final surveying and sampling of soil and bedrock surfaces the following controls were utilized.

A. Water Control:

1) The deepest section of the excavation was diked off, pumped dry and surveyed.
2) Once the lowest section of the excavation was scanned and surveyed water was diverted into this section of the excavations utilizing dikes to create a sump area and minimize any water collection in other areas of the excavation.
3) Pumps were utilized throughout the survey process to ensure that areas being surveyed were sufficiently dry.

B. Soil and Snow Coverage on Bedrock

1) Soil thickness over bedrock was limited to less than one (1) inch.
2) Excess soil in survey areas was allowed to be removed and spread over adjacent areas.
3) Snow was removed from the static survey and sampling points.

C. Locating Points of Survey

1) To accurate locate survey points 3-4 permanent benchmarks were established and recorded with the Trimble Instruments.
2) Survey points were marked with labeled bricks and conditions photographically documented.

Photographs of typical survey locations for bedrock and soil, respectively, are shown below in Figures 3-1 and 3-2.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 19 Figure 3-1: Bedrock Sample Location Figure 3-2: Soil Sample Location

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 20 Determination of Survey and Sample Point Locations Sample point locations are depicted on the figures included in Appendix B. The number of survey/sample point locations within each survey unit was provided in the FSS Plan. For each survey unit, VSP was used to establish the location of the points using a random start with a triangular grid for both Class 1 (SU1 through SU4) and Class 2 (SU5 and SU6) areas. The coordinates established by VSP were then imported to other codes to transform the coordinates into the system used on the site and the ArcGIS code in order to plot the sample locations on the site maps. For SU1, this process modified the triangular grid, which resulted in the sample locations looking more like random placements. This discrepancy was investigated and the specific cause was not established but is most likely due to field location methods. The sample density within each of the Class 1, Class 2 and Class 3 survey units are presented in Table 3-1.

Table 3-1: Sampling Density for Survey Units Survey Unit MARSSIM Class Survey Unit Area (m2)

Number of Sample Locations Sampling Density (m2/Sample)

SU1 1

90 18 5.0 SU2 1

105 30 3.5 SU3 1

300 29 10.3 SU4 1

420 29 14.5 SU5 2

1230 20 61.5 SU6 2

105 29 3.6 SU7 3

2420 14 172.9 Although the grid for SU1 is not strictly a triangular grid, the sample locations were established based on a random start point, and sampling density within SU1 are consistent with the other Class 1 survey units.

Based on this evaluation, the sampling of SU1 meets the intent of MARSSIM, and resampling of SU1 was not required.

The location of the survey points in the field was established using the coordinates provided in the approved survey package and a portable GPS unit to locate the corresponding point. When deemed appropriate, the location was measured from nearby points using a tape measure.

Radiological Survey Instruments Used Table 3-2 provides the list of the radiological survey instruments used during the FSS. Specific instructions for the survey requirements were provided in the survey package applicable to the survey units. The six survey units were grouped into two survey packages. The first package covered the Class 1 bedrock

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 21 surfaces (SU1 through SU4), and the second package covered the Class 2 soil areas (SU5 and SU6). The third package covered Class 3 Unit SU7.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 22 Table 3-2: List of Radiological Survey Instruments Instrument Model /

Serial Number Use Calibration Due Probe Model /

Serial Number Probe Area (cm2)

Total Alpha Efficiency

(%)

Average Alpha

Background

(cpm)

Average Alpha MDA (dpm/100 cm2)

Total Beta Efficiency

(%)

Average Beta

Background

(cpm)

Average Beta MDA (dpm/100 cm2)

Ludlum 19 / 69363 Gamma dose rate 8/20/2015 N/A N/A N/A N/A N/A N/A N/A N/A Ludlum 19 / 13476 Gamma dose rate 3/12/2014 N/A N/A N/A N/A N/A N/A N/A N/A Ludlum 2221 / 190173 Gross gamma (static and scan) 1/13/2016 44-10 / PR206809 N/A N/A N/A N/A N/A N/A N/A Ludlum 2221 / 211772 Gross gamma (static and scan) 9/8/2015 44-10 / PR2163994 N/A N/A N/A N/A N/A N/A N/A Ludlum 2221 / 211808 Gross gamma (static and scan) 8/6/2015 44-10 / PR196032 N/A N/A N/A N/A N/A N/A N/A Ludlum 2360 / 248132 Alpha and beta static 6/3/2015 43-93 / PR236970 100 8.7 0

34 3.1 58 955 Ludlum 2360 / 267525 Alpha and beta static 7/1/2015 43-93 / PR236970 100 9.5 2

83 3.0 81 1135 Ludlum 2360 / 267533 Alpha and beta static 8/6/2015 43-93 / PR236970 100 5.8 0

52 6.1 93 595 Ludlum 2929 / 180832 Removable alpha and beta 4/2/2015 43-10-1 / PR203056 (area wiped) 38.4 0.1 6

36.1 59.2 77

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 23 Field Data for Survey Units Spreadsheets, including all data collected for each survey unit, are included in Appendix F.

Radiological Measurements for Bedrock Surfaces (SU1 through SU4)

The acceptance criteria for the bedrock surfaces are based on the combination of gross static beta activity measurements using the 43-93 probe and 100 percent scans using the 2x2 NaI detectors. Other measurements were made, including wipe samples counted for gross alpha and beta activity, gross alpha static activity measurements, static gamma activity measurements, and gamma dose rate measurements.

However, these additional measurements have only been used for qualitative evaluations and were not part of the evaluation determining whether the survey unit met the acceptance criteria.

Due to weather conditions, it was impossible to completely eliminate all snow and ice from the bedrock surfaces. Where appropriate, soil samples were collected at the bedrock sample locations before static measurements were made. For the static measurements, the bedrock surface was cleared of soil, snow, and ice first. MicroShield calculations were made to evaluate the impact of the presence of various thicknesses of soil on the bedrock surface on the scan sensitivity. Based on this evaluation, a 50.59 change process was approved for the use of the 2x2 NaI detector to perform the scan surveys of the bedrock surfaces allowing a soil layer up to one-inch thick. This permitted the FSS to continue under the winter weather conditions without undue effort being required to completely expose the bedrock. The computer output reports for the MicroShield calculations are attached and are summarized in Table 3-3 for the dose rate in millirem per hour (mR/hr) at varied thickness of soil shielding.

During a visit from ORAU several in-process observations were made. A summary of the observations is listed below. All deficiencies were immediately corrected, field staff received additional training and the survey continued according to the FSS Plan and applicable work instructions.

1. Incorrect surface area for handheld detector used.
2. Inappropriate background readings in SU-3.
3. Improper standoff distance while using 2x2 NaI probe
4. Improper sequencing with regards to scan, sampling and static measurements.
5. ORAU was unable to further investigate areas of elevated background due to tarps and snow.

These areas were further investigated and no areas of elevated activity were noted.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 24 Table 3-3: Results of MicroShield Calculations for Bedrock Surface Scans (mR/hr)

Radionuclide Thickness of soil Layer (cm) 0 1.25 2.5 15 Co-60 2.112E-2 7.313E-3 5.494E-3 1.328E-3 Ag-108m 4.432E-2 Not calculated 1.038E-2 1.680E-3 The DCGL for the static gross beta activity measurements was conservatively set at 7,100 dpm/100 cm2 in accordance with Table 3-2 of the FSS Plan. The investigation level for the static measurements (greater than DCGL) was not exceeded for any measurement. The maximum static gross beta result for the bedrock surfaces was 3,095 dpm/100 cm2. Figure 3-3 shows the frequency of the static gross beta measurements for the bedrock surfaces within Survey Units 1 through 4.

Figure 3-3: Frequency of Gross Beta Static Measurements for Bedrock Surfaces In accordance with Table 3-11 of the FSS Plan, the scan investigation level was established as greater than DCGLemc using an area factor of 5 (Section 3.11.3 of FSS Plan) and a DCGL of 7,100 dpm/100 cm2. For Co-60 and a 2.5 cm layer of covering soil, the dose rate at the DCGL is 5.494E-3 mR/hr (5.494 R/hr).

Using a 2x2 NaI detector with a response of 430 cpm per R/hr, the response at the DCGLemc would be:

5.49*5*430 = 11,805 cpm above background The average scan background for the bedrock surfaces was 6,813 cpm, so:

0 5

10 15 20 25 30 35 40 45 50 3,000 2,000 1,000 0

1,000 2,000 3,000 4,000 Frequency StaticBetaMeasurement(dpm/100cm2)

StaticBeta BedrockSurveys(SU1toSU4)

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 25 Scan Investigation Level = 11,805 + 6,813 = 18,618 cpm Thus, the scan investigation level (greater than DCGLemc) was 18,618 cpm based on conservatively assuming that the bedrock surface is covered by a one-inch-thick layer of soil or ice. The maximum scan count rate for the bedrock surfaces was 11,923 cpm, so no scan reading exceeded the investigation level.

Figure 3-4 shows the frequency distribution of the gross scan data for the bedrock surfaces, and Figure 3-5 shows the frequency distribution of the net scan data for the bedrock surfaces.

Figure 3-4: Frequency Distribution for Scan Gross cpm for Bedrock Surfaces 0

200 400 600 800 1000 1200 1400 1600 1800 0

2000 4000 6000 8000 10000 12000 Frequency Scan Grosscpm ScanGrossCPM BedrockSurfaces

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 26 Figure 3-5: Frequency Distribution for Scan Net cpm for Bedrock Surfaces Radiological Measurements for Soil Surfaces (SU5 and SU6)

The acceptance criteria for the soil surfaces are based on the laboratory analysis measurements of the collected soil sample and 25 percent scans using the 2x2 NaI detectors. Other measurements were made, including wipe samples counted for gross alpha and beta activity, gross alpha and beta static activity measurements, static gamma activity measurements, and gamma dose rate measurements. However, these additional measurements have only been used for qualitative evaluations and are not part of the specific determination as to whether the survey unit met the acceptance criteria.

Due to weather conditions, it was not possible to completely eliminate all snow and ice from the soil surfaces, but each area was cleared as much as possible. Soil samples were collected at the soil sample locations with mechanical means used to break up the frozen soil.

The soil DCGLs are in accordance with Table 3-2 of the FSS Plan. Each soil sample was evaluated by calculating for each radionuclide measured the fraction of the result to the individual DCGL and then calculating the SOF for that sample. The acceptance criterion for that sample is SOF less than 1.

The investigation level for the Class 2 area soil samples is given in Table 3-11 of the FSS Plan as greater than DCGL or equivalently SOF greater than 1. No FSS soil sample exceeded an SOF of 1, so no further investigation was required.

0 200 400 600 800 1000 1200 1400 1600 1800 10000 8000 6000 4000 2000 0

2000 4000 6000 Frequency Scan Netcpm ScanNetcpm BedrockSurfaces

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 27 In accordance with Section 3.6.3 of the FSS Plan, the scan investigation level was established as greater than DCGL and a DCGL of 3.8 pCi/g for Co-60 would give a dose rate of 11 R/hr. Using a 2x2 NaI detector with a response of 430 cpm per R/hr, the response at the DCGL would be:

11*430 = 4,730 cpm above background The average scan background for the soil surfaces was 7,949 cpm, so:

Scan Investigation Level = 7,949 + 4,730 = 12,679 cpm Figure 3-6 shows the frequency distribution for gross scan data of the soil surfaces.

Figure 3-7 shows that some of the scan results exceed the investigation level so a review of the data was conducted. All of the data above the investigation level were found to be associated with measurements made on one day (February 5, 2015) with one instrument. Section 3.1.6.1 provides the discussion of the investigation of this elevated area within SU5.

Figure 3-6: Frequency Distribution for Scan Gross cpm for Soil Surfaces 0

200 400 600 800 1000 1200 0

5000 10000 15000 20000 Frequency Scan GrossCPM ScanGrosscpm SoilSurfaces

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 28 Figure 3-7: Frequency Distribution for Scan Net cpm for Soil Surfaces 3.1.6.1 Summary of Investigation of Elevated Scan Measurements in SU5 During the scan surveys made on February 5, 2015, an elevated area was noted by the survey technician.

The time plot of the data accumulated on February 5 is shown on Figure 3-8. This plot demonstrates that an area of localized elevated activity was noted in the same area plotted on the site map in Figure 3.7. For those scan measurements that are greater than 13,000 cpm, the area was found to be less than 0.1 square foot in size. The investigation level established above is 12,679 cpm, but it should be noted that this value is a conservative number in that it uses Co-60 as the basis. For the site mixture that was measured based on grab samples, the Co-60 contributes only about 3 percent of the total activity and about 15 percent to the SOF of the mixture. If Silver-108m (Ag-108m) is used as the basis for the investigation level, then the equivalent value is 75,200 cpm. Ag-108m accounts for about 13 percent of the total activity and about 35 percent to the SOF of the mixture.

The area where this elevated area is located is near the beam storage tubes for the reactor. One grab sample had been taken in this area (2014 11 05 GR-01), and the analytical results for that sample provided an SOF = 0.047.

Based on this investigation, it is concluded that given the conservative approach that was used to establish the investigation level and the small size associated with the elevated area, no further action was necessary.

0 200 400 600 800 1000 1200 10000 5000 0

5000 10000 15000 Frequency Scan Netcpm ScanNetcpm SoilSurfaces

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 29 Figure 3-8: Time Plot of Scan Survey for February 5, 2015 0

2000 4000 6000 8000 10000 12000 14000 16000 18000 20000 1

19 37 55 73 91 109 127 145 163 181 199 217 235 253 271 289 307 325 343 361 379 397 415 433 451 Grosscpm Time 2/5/15TimeChart

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 30 Figure 3-9: Site Plot of Scan Data for February 5, 2015

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 31 Radiological Measurements for Soil Surfaces (SU7)

As shown on Figure 2-1, SU7 is a Class 3 survey unit that surrounds the excavation and also consists of a large area northwest of the facility. This area was used to stockpile soil excavated from Class 1 and Class 2 areas which had been surveyed and found to contain no detectable radioactivity. The stockpiled soil was returned to the excavation cavity as backfill prior to performing FSS of SU7. The areas surrounding the perimeter of the excavation were disturbed by construction equipment during the excavation process.

Gamma walkover surveys using the 2x2 NaI detectors were performed on approximately 10 percent of the soil surface, and 14 volumetric samples were collected and analyzed for the FSS. Results demonstrate the survey unit meets FSS release criteria.

The soil DCGL is in accordance with Table 3-2 of the FSS Plan. Each soil sample was evaluated by calculating for each radionuclide measured the fraction of the result to the individual DCGL and then calculating the SOF for that sample. The acceptance criterion is SOF less than 1.

The investigation level for the Class 3 area soil samples is given in Table 3-11 of the FSS Plan as greater than 50 percent DCGL or SOF greater than 0.5, as appropriate. No FSS soil sample exceeded an SOF of 0.5, so no further investigation was required.

In accordance with Section 3.6.3 of the FSS Plan, the scan investigation level was established as greater than 50 percent DCGL. A DCGL of 3.8 pCi/g for Co-60 would give a dose rate of 11 R/hr. Using a 2x2 NaI detector with a response of 430 cpm per R/hr and adjusting for 50 percent of the DCGL, the response at the DCGL would be:

11*430*0.5 = 2,365 cpm above background The average scan background for the soil surfaces was 7,949 cpm, so:

Scan Investigation Level = 7,949 + 2,365 = 10,314 cpm Therefore, the scan investigation level for SU7 is 10,314 cpm. No scan exceeded the investigation level, so no further investigation was required.

Determination of Background Values For each day of use, the instruments were given a documented response check to establish operability. This check was conducted in the office area. Instruments that were used in the field then had a background determination made in the field. There was a significant difference in the background levels between the

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 32 excavated area on the bedrock and the soil areas with the bedrock being lower. Background values were determined and recorded by holding the detector probes (Models 43-93 and 44-10) above the ground within the survey unit to be measured. For the gross beta static measurements, the distance from the bedrock is sufficient to eliminate any influence from the surface of the bedrock. An examination of the frequency distribution curve on Figure 3-3 shows that the net value for the gross beta static measurements centers on zero, demonstrating that the background values determined are valid. The same is true for the frequency distribution curve on Figure 3-4 and Figure 3-6 for the scan measurements of the bedrock and soil surfaces using the 2x2 NaI detectors.

3.2 Surface Scan (Gamma Walkover) Results Gamma walkover results are depicted on the figures located in Appendix G.

3.3 Soil Stockpile Sampling In accordance with the work instructions for the removal and stockpiling of soil from the excavation, 39 soil samples were collected from the stockpile designated as clean soil from a Class 1 survey unit, 53 soil samples were collected from the stockpile designated as clean soil from a Class 2 survey unit, and 10 samples were collected from the stockpile designated as clean soil from a Class 3 survey unit. Gamma walkover scans were performed during the backfill operations on a frequency commensurate with the original classification of the area. No gamma readings greater than 1.5 times the background count rate were detected. The original analytical laboratory reports are included in Appendix F. Analysis of the soil stockpile sample results is provided in Appendix H.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 33

4.0 CONCLUSION

S The results for the soil samples support an unrestricted release of the NRC license. In the Class 1 excavation area survey unit, only 2 of the 56 soil samples had detectable Cesium-137 (Cs-137) concentrations with a maximum result of 0.1 pCi/g, approximately 1 percent of its release criteria. In the Class 2 perimeter survey unit, the maximum result for 28 soil samples collected was 0.25 pCi/g of Cs-137 (i.e., 2 percent of the release criteria) out of only 4 samples that had detectable Cs-137. There was no detectable Cs-137 in the Class 3 survey unit (SU7).

The Cs-137 results can be attributable to fall-out from historical atmospheric testing of nuclear weapons.

No other ROCs were detected in the FSS samples, and all gamma walkover count rates were at background levels.

Based on the results of the BMRC FSS, the conditions in 10 CFR 20.1402, Radiological Criteria for Unrestricted Use, have been met with the maximum dose to an average member of the public calculated (by comparison of the residual concentration of material to the release criteria) to be less than 0.5 mrem per year, or 2 percent of the release criteria.

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report 34

5.0 REFERENCES

1. 10 CFR 20.1402, Radiological Criteria for Unrestricted Use.
2. 10 CFR 50.82, Termination of License.
3. U.S. Nuclear Regulatory Commission, Supplemental Information on the Implementation of the Final Rule on Radiological Criteria for License Termination, Federal Register, Volume 63, Number 222, November 18, 1998.
4. 10 CFR 20 Subpart E, Radiological Criteria for License Termination.
5. Buffalo Materials Research Center, State University of New York, University at Buffalo -

Decommissioning Plan, Revision 1, Enercon Services, Inc., May 31, 2012.

6. Buffalo Materials Research Center, State University of New York, University at Buffalo - Final Status Survey Plan, Revision 1, Enercon Services, Inc., September 20, 2012.
7. NUREG-1575, Multi-Agency Radiation Survey and Site Investigation Manual (MARSSIM),

Revision 1, August 2002.

8. NUREG-1507, Minimum Detectable Concentrations With Typical Radiation Survey Instruments for Various Field Conditions, December 1997.
9. NUREG-1505, A Nonparametric Statistical Methodology for the Design and Analysis of Final Status Decommissioning Surveys, Revision 1, June 1998 draft.
10. NUREG-1757, Consolidated Decommissioning Guidance, September 2006.
11. Buffalo Materials Research Center, State University of New York, University at Buffalo - Site Characterization Report, Revision 0, Enercon Services, Inc., July 30, 2011.
12. ISO-7503-1, Evaluation of surface contamination, 1988.
13. Regulatory Guide 1.86, Termination of Operating Licenses for Nuclear Reactors, Nuclear Regulatory Commission, 1974.
14. NUREG-1537, Guidelines for Preparing and Reviewing Applications for the Licensing of Non-Power Reactors

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report APPENDIX A -

LIST OF EMBEDDED ITEMS

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report STATUS OF EMBEDDED PIPING AND ACTIVATED STRUCTURAL CONCRETE Item Status Item 1 is a pipe in the northwest portion of the reactor pit and goes to the 1k tank sump.

Completed 12/06/2014 Item 2 is the abandoned cooling line running from the center of the reactor pit under the Neutron Deck Floor to the N-16 Tank Vault.

Completed 12/06/2014 Items 3, 4, and 5 are the Dry Chamber columns, lintel, and floor.

Completed 11/19/2014 Item 6 is the seven Beam Storage Tubes that extend from the interior of the Reactor Building into the soil southwest of the Reactor Building.

Completed 11/11/2014 Item 7 and 8 are a ventilation pipe from the Hot Cell running from the gamma deck down to the neutron deck.

Completed 10/27/2014 Item 9 is a drain line running from the area in the sub-basement where the eleven waste lines exit the building. This line runs to the 1k sump.

Completed 12/06/2014 Item 10 is four lines entering the 1k tank sump area just above the sump. These are various drains from the containment building.

Completed 12/06/2014 Item 11 is eleven waste lines running from the sub-basement, terminating at the tank excavation outside the rollup door to the reactor building.

Completed 12/06/2014 Item 12 is the area on the neutron deck which is covered by cinder blocks.

Completed 11/20/2014 Items 13 and 14 are two floor points in the Sr-90 room.

Completed 08/19/2014 Items 15, 16, 17, and 18 are wall and floor points located in the 1k tank pit.

Completed 08/19/2014. Additional remediation of Spot #17 was completed on 09/16/2014.

Item 19 is a 3 drain line in the Hot Cell that was identified and removed on 10/25/2014.

Completed 10/25/2014 Item 20 is the 2.5 Primary Sump Pit Drain Line Completed 11/11/2014

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report APPENDIX B -

DATA POINT LOCATIONS

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report APPENDIX C -

TECHNICAL DATA SHEETS FOR SURVEY INSTRUMENTS

Ludlum Measurements, Inc.

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Speci"cations INDICATED USE: "eld analysis RATEMETER: provides a four-decade analog display that is operational any time the instrument is turned on, the ratemeter can also be presented on the accompanying LCD as a digital value when the LCD is switched to the Dig. Rate position SCALER: range from 0-999999 counts TIMER: switch selectable divisions of 0.1, 0.5, 1, 2, 5, 10 minutes or CONT (continuous) for manual timing CONCURRENT USE: scaler or digital ratemeter is active when not selected, allowing for concurrent use SUGGESTED DETECTORS: GM, proportional, scintillation HIGH VOLTAGE: adjustable from 400-2400 volts (can be checked on display)

THRESHOLD: adjustable from 100-1000 (can be checked on display)

WINDOW: adjustable from 0-1000 above threshold setting (can be turned on or off)

GAIN: adjustable from 1.5-100 mV at a threshold setting of 100 OVERLOAD: senses detector saturation, indicated by - - - - on LCD display and meter going to full scale (adjustable depending on detector selected)

CONNECTOR: series C type METER DIAL: 0-500 cpm, 50-500k cpm logarithmic scale (others available)

DIGITAL DISPLAY: 6-digit LCD display with 1.3 cm (0.5 in.) high digits LCD BACKLIGHT: activated by LAMP switch AUDIO: built-in unimorph speaker with volume control AUDIO DIVIDE: toggle switch for 1, 10, or 100 events per click AUDIO JACK: for optional headset CONTROLS:

  • Power Switch: on/off
  • Scale Selector Switch: x1, x10, x100, x1K, Log
  • Response Switch: toggles between FAST (4 sec.) or SLOW (22 sec.) from 10% to 90% of "nal reading
  • Meter Zero Pushbutton: to zero meter
  • Audio Volume Knob: adjusts volume of audio output
  • Audio Divide Switch: divides audio clicks by either 1, 10, or 100
  • Meter Lamp Switch: illuminates meter
  • Window Switch: selects wide open window counts or a narrower setting for viewing a speci"c energy band
  • Scaler Count Time Selector Switch: 0.1, 0.2, 0.5, 1, 2, 5, or 10 minutes
  • Count Pushbutton: starts or resets scaler count
  • Count Hold Pushbutton: stops scaler count and leaves result in the display
  • Scaler/Digital Rate Switch: selects which mode is presented on the LCD
  • Test Buttons: battery, high voltage, threshold, window
  • Calibration Controls: recessed screwdriver adjustments with calibration cover POWER: 4 each D cell batteries BATTERY LIFE: typically 250 hours0.00289 days <br />0.0694 hours <br />4.133598e-4 weeks <br />9.5125e-5 months <br /> with alkaline batteries (battery condition can be checked on digital display)

SIZE: 22.9 x 10.9 x 25.4 cm (9 x 4.3 x 10 in.) (H x W x L) including handle WEIGHT: 2.5 kg (5.5 lb) including batteries RS-232 OUTPUT OPTION: This option facilitates exporting data to be read as output to a computer or serial printer from either the ratemeter or scaler reading. (Part No. 4261-148)

Features

  • Digital Ratemeter with Built-In Scaler Dual Analog Meter & Digital LCD Presentation Rich Array of Discrete Front Panel Controls Single Channel Analysis RS-232 Data Output Wide Range HV Overload Protection Part Number: 48-2065 tions E: "eld analysis

Model 2221 General Purpose Ratemeter/Scaler

Ludlum Measurements, Inc.

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Speci"cations INDICATED USE: low-level, wide-energy gamma detection ENERGY RESPONSE: energy dependent SUGGESTED INSTRUMENTS: general purpose survey meters, ratemeters, and scalers OPERATING VOLTAGE: 500-1200 volts SCINTILLATOR: 5.1 x 5.1 cm (2 x 2 in.) (Dia x L) Nal SENSITIVITY: typically 900 cpm/R/hr (137Cs gamma)

BACKGROUND: 9750 cpm RECOMMENDED ENERGY RANGE: 50 KeV-3.0 MeV PHOTOMULTIPLIER TUBE: 5.1 cm (2 in.) diameter, magnetically shielded CONNECTOR: series C (others available)

TEMPERATURE RANGE: -20 to 50 °C (-4 to 122 °F), may be certi"ed to operate from

-40 to 65 °C (-40 to 150 °F)

CONSTRUCTION: aluminum housing with beige polyurethane paint SIZE: 6.6 x 27.9 cm (2.6 x 11 in.) (Dia x L)

WEIGHT: 1.0 kg (2.3 lb)

Part Number: 47-1540

Model 44-10 Gamma Detector

Ludlum Measurements, Inc.

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R a d i a t i o n D e t e c t i o n f o r a S a f e r Wo r l d Feb 2012

 

INDICATED USE: alpha beta survey SUGGESTED INSTRUMENTS: Models 12, 16, 18, 2000, 2200, 2221, 2224-1, 2241-2, 2350-1, 2360 DETECTOR TYPE: rechargeable gas proportional RECOMMENDED COUNTING GAS: P-10 (10% methane, 90% argon)

GAS RECHARGE: will operate on static charge for at least 15 hours1.736111e-4 days <br />0.00417 hours <br />2.480159e-5 weeks <br />5.7075e-6 months <br /> with a 1 m (39 in.) cable; 5-hour static charge if connected to a simultaneous alpha/beta measuring instrument GAS CONNECTORS: double-end quick disconnect



 239Pu; 15%-14 99 90Sr/90Y less than 1%-gamma

 ! " #$'+239< 99 90Sr/90Y WINDOW: typically 0.8 mg/cm² aluminized Mylar ( other thicknesses available)

WINDOW AREA: 126 cm² (19.5 inY) active, 100 cmY (15.6 inY) open BACKGROUND: alpha: < 3 cpm (when operating at alpha-only plateau region)

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Model 43-68 Alpha Beta Gamma Detector

Ludlum Measurements, Inc.

P.O. Box 810, Sweetwater, Texas 79556 / http://www.ludlums.com 800-622-0828 / 325-235-5494 / Fax: 325-235-4672 / E-mail: ludlum@ludlums.com R a d i a t i o n D e t e c t i o n f o r a S a f e r Wo r l d 1/24/2011 Speci"cations SUGGESTED DETECTOR: dual phosphor scintillation and gas proportional detectors LINEARITY: reading within 10% of true value HIGH VOLTAGE: adjustable from 200-2000 volts (can be read on meter)

OVERLOAD: senses detector saturation, indicated by red lamp on meter and meter de"ecting to full scale (internally adjustable)

RESPONSE: will vary according to number of counts, typically 2-11 seconds from 10%-90% of "nal reading SCALER: 6-digit LCD display with 0.64 cm (0.25 in.) digits, over"ow arrow, colons to indicate when a count is in process, and backlight COUNT TIME RANGE: 0.1-60 minutes with capability to preset user-programmed value DATA LOGGER: capable of storing up to 550 individual data points with the following identi"ers for each point: (all data is stored in non-volatile memory allowing batteries to be removed without loss of data) alpha and beta sample counts sample number date/time stamp scaler count time 10-character location identi"er (can be set by ASCII terminal or PC)

HEADER INFORMATION: 6 lines of user de"ned memory at the beginning of the stack for storing user name, survey name, serial numbers, etc. (information is dumped with logged data)

RS-232 PORT: located on the can, this allows the instrument to be connected to a PC for dumping of data, and setup of parameters LOGGING FUNCTION CONTROL: internal selection that enables the pushbutton to log a ratemeter reading, initiate a scaler count and log the resulting reading, log both the scaler and ratemeter reading, or disable the logging function ALARM: has alarm capabilities on both the scaler and ratemeter, both circuits allow for independent alarm settings of the alpha channel, beta channel, and the alpha/beta channel, the scaler alarm setpoints can be set at any point from 0-999999 counts, the ratemeter alarms can be set at any point from 0-999999 cpm, alarm points can be set via the keypad, or PC CONTROLS:

RESET/READ HV: a two-position, momentary action switch to allow for the meter to be reset or a reading of the HV setting COUNT TYPE: toggle switch to select alpha+beta or alpha, only, or beta only AUDIO VOLUME: rotary knob volume control, greater than 60 dB at 61 cm (2 ft), full volume, selectable dual or individual click-per-event for alpha and beta counts and divisions of 1, 10, 100, or 1000 events per click (beta counts only)

INSTRUMENT: 6-position rotary knob for instrument off, battery check, range multipliers: x1, x10, x100, x1000 COUNT TIME: switch selectable times of 0.1, 0.5, 1, 2, 5, 10, 60 minutes, or PC to allow for a speci"c count time to be set from a PC LOGGING PUSHBUTTON: located in handle; used to activate scaler and/or log a count CALIBRATION DUE DATE: an internal date that disables the instrument if the required calibration interval has been missed METER DIAL: 0-500 cpm, 0-2 kV, BAT OK, OL (overload); others available BATTERY LIFE: typically 250 hours0.00289 days <br />0.0694 hours <br />4.133598e-4 weeks <br />9.5125e-5 months <br /> with alkaline batteries (battery condition can be checked on meter)

TEMPERATURE RANGE: -20 to 50 °C (-4 to 122 °F), may be certi"ed for operation from -40 to 65 °C (-40 to 150 °F)

SIZE: 16.5 x 8.9 x 21.6 cm (6.5 x 3.5 x 8.5 in.) (H x W x L)

WEIGHT: 1.6 kg (3.5 lb), including batteries Features

  • Scaler/Ratemeter/Data Logger Simultaneous Alpha & Beta Measurements with Audio Discrimination Logs 550 Data Points Analog & Digital Display Six Separate Alarms Overload Protection RS-232 Port f

Part Number 48-2872 Model 2360 Alpha/Beta Data Logger

Ludlum Measurements, Inc.

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Speci" cations INDICATED USE: simultaneous alpha and beta survey SUGGESTED INSTRUMENTS: Ludlum Model 2929, Model 2223, Model 2224, Model 2360, or Model 3030E DETECTOR: scintillator, ZnS (Ag) deposited on a 0.025 cm (0.010 in.) thick rectangular plastic scintillator PHOTOMULTIPLIER TUBE: 3.8 cm (1.5 in.) diameter OPERATING VOLTAGE: 500-1000 volts (1500 volts maximum)

WINDOW: 1.2 mg/cm² mylar WINDOW AREA:

Open: approximately 100 cm² (15.5 in²)

Active: approximately 125 cm² (19.4 in²)

PROTECTOR SCREEN: 22 ga (0.076 cm [0.030 in.]) stainless steel hex (0.64 cm [0.25 in.]), 79% open RESPONSE UNIFORMITY: +/-10% from average reading EFFICIENCY (4 ): 20% for 239Pu, 10% for 99Tc, and 20% for 90Sr 90Y GAMMA SENSITIVITY: approximately 20 cpm per R/hr TYPICAL BACKGROUND:

alpha: 3 cpm or less beta: 300 cpm or less CROSSTALK:

alpha to beta: 10% or less beta to alpha: 1% or less TEMPERATURE RANGE: -20 to 50 ºC (-4 to 122 °F)

CONSTRUCTION: aluminum with beige powder coat CONNECTOR: series C, unless speci" ed otherwise WINDOW FRAME SIZE: 190.3 x 100.2 mm (7.5 x 3.9 in.) (L x W)

OVERALL SIZE: 33 x 10 x 10 cm (12.25 x 4 x 4 in.) (L x W x H)

WEIGHT: 0.68 kg (1.5 lbs)

Part Number: 47-2430

Model 43-89 Alpha / Beta Scintillator

Ludlum Measurements, Inc.

P.O. Box 810, Sweetwater, Texas 79556 / http://www.ludlums.com Tel: 800-622-0828 / 325-235-5494 / Fax: 325-235-4672 / Email: ludlum@ludlums.com R a d i a t i o n D e t e c t i o n f o r a S a f e r Wo r l d Apr 2014

 

INDICATED USE: simultaneous alpha beta sample counting SCALERS: 2 each six-digit LCD displays with back lights providing a range of 0-999999 counts SCALER LINEARITY: reading within 2% of true value COUNT TIMER SETTINGS: 0.1, 0.5, 1, 2, 5, 10, and 60 minutes. PC position facilitates other user-

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CONNECTOR: series C THRESHOLDS:

alpha: -120 mV beta: -4 mV beta window: 50 mV SCALERS: two each six-digit LCD displays with backlights providing a range of 0-999999 counts SCALER LINEARITY: reading within 2% of true value

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HIGH VOLTAGE: adjustable from 200-2500 Vdc DATA-OUTPUT: 9-pin RS-232 port POWER: 250 watts at 95-250 Vac, 50-60 Hz single phase; internal 12 Vdc, 1.2A/hr, trickle-charged battery will provides power up to eight hours CONSTRUCTION: aluminum housing with gray powder coat paint and sub-surface printed front panel

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SOFTWARE: computer based to perform setup and calibration routines including: background subtract, crosstalk correction, cpm/dpm modes, daily QC check parameters, alarm levels, and automatic plateaus.

All parameters are stored in the instrument in non-volatile memory. The supplied software is capable of logging and storing the following: Sample Number, Sample Date, Sample Time, Alpha Count, Beta Count, Sample Type, Comments.

Part Number: 48-3448



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Alpha/Beta Sample Counter

Ludlum Measurements, Inc.

P.O. Box 810, Sweetwater, Texas 79556 / http://www.ludlums.com Tel: 800-622-0828 / 325-235-5494 / Fax: 325-235-4672 / Email: ludlum@ludlums.com R a d i a t i o n D e t e c t i o n f o r a S a f e r Wo r l d July 2014

 

INDICATED USE: alpha/beta sample counting SUGGESTED INSTRUMENTS: Model 2929, Model 2223, Model 2224, Model 3030E DETECTOR TYPE: scintillator, ZnS (Ag)

DETECTOR OPERATING VOLTAGE: 500-1200 volts CONNECTOR: series C (others available)

SAMPLE SIZE (maximum): 5.1 x 0.9 cm (2 x 0.4 in.) (Dia x L)

SAMPLE HOLDER: anodized aluminum tray with sample ring to allow for 2.5 cm (1 in.) or 5.1 cm (2 in.) diameter x 0.32 cm (0.13 in.) deep samples PHOTOMULTIPLIER TUBE: 5.1 cm (2 in.)

WINDOW: 0.4 mg/cm2



 $ ~ 239< + ~ 14 $ ~ 99  ~ 230}  ~ 238U,

 ~ 137  ~ 99Sr/90Y BACKGROUND: 3 cpm or less alpha, 80 cpm or less for beta-gamma CONSTRUCTION: aluminum housing with beige powder coating TEMPERATURE RANGE: -20 to 50 °C (-4 to 122 °F), may be certified for operation from -40 to 65 °C (-40 to 150 °F)

SIZE: 23.6 x 11.4 x 23.6 cm (9.3 x 4.5 x 9.3 in.) (H x W x L)

WEIGHT: 1.9 kg (4.1 lb)

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Sample Planchets SIZE: 5.1 x 0.32 cm (2 x 0.125 in.) (Dia x Thickness)

Aluminum: Part Number 7525-371 Stainless Steel: Part Number 7525-371-01 (minimum order quantity 500)

Part Number: 47-1305

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Ludlum Measurements, Inc.

P.O. Box 810, Sweetwater, Texas 79556 / http://www.ludlums.com 800-622-0828 / 325-235-5494 / Fax: 325-235-4672 / E-mail: ludlum@ludlums.com R a d i a t i o n D e t e c t i o n f o r a S a f e r Wo r l d 4/5/2010 Speci"cations INDICATED USE: low-level (R) gamma survey MEASUREMENT RANGE: 0-5000 R/hr DETECTOR: 2.5 x 2.5 cm (1 x 1 in.) Sodium Iodide (NaI[Tl]) scintillator SENSITIVITY: 175 cpm/R/hr (137Cs gamma)

ENERGY RESPONSE: energy dependent LINEARITY: reading +/-10% of true value METER: 6.4 cm (2.5 in.) arc, 1 mA analog type METER DIAL: 0-25 R/hr, 0-50 R/hr, BAT TEST, High Voltage Test CONTROLS ROTARY KNOB SELECTOR: 0-25, 0-50, 0-250, 0-500, 0-5000 R/hr, Instrument Off RESPONSE: toggle switch for FAST (4 seconds) or SLOW (22 seconds) from 10% to 90% of "nal reading AUDIO: built-in unimorph speaker with ON/OFF switch (greater than 60 dB at 0.6 meters [2 ft])

HIGH VOLTAGE: pushbutton to display HV setting on meter BATTERY: pushbutton checks battery voltage RESET: pushbutton to zero meter LAMP: pushbutton to activate meter light CALIBRATION CONTROLS: accessible from front of instrument (protective cover provided)

WORKING ENVIRONMENT: splashproof shields for outdoor use TEMPERATURE RANGE: -20 to 50 °C (-4 to 122 °F), may be certi"ed for operation from -40 to 65 °C (-40 to 150 °F)

POWER: 2 each D cell batteries (housed in sealed compartment that is externally accessible)

BATTERY LIFE: typically 2000 hours0.0231 days <br />0.556 hours <br />0.00331 weeks <br />7.61e-4 months <br /> with alkaline batteries (battery condition can be checked on meter)

CONSTRUCTION: cast and drawn aluminum with beige polyurethane enamel paint SIZE: 15.2 x 8.9 x 21.6 cm (6.0 x 3.5 x 8.5 in.) (H x W x L), without handle WEIGHT: 2.04 kg (4.5 lb), including batteries Introduction The Model 19 is a highly sensitive gamma R/meter employing an internally housed, 2.5 cm diameter by 2.5 cm thick (1.0 x 1.0 in.) NaI detector. The measuring range is 0-5000 R/

hr. The cast aluminum instrument housing with its separate battery compartment and accompany-ing metal handle offer an industrial robustness and quality that promote long lasting protection and instrument life.

The front-panel controls include a rotary switch for selecting the "ve-decade range and instrument shut-off, an audio on/off switch, a fast/slow response switch, and pushbuttons for activating the meter lamp, high-voltage display, battery test, and count reset. The Model 19 is a complete turn-key system and includes two D cell batteries.

Features High Sensitivity to Gamma 0-5000 R/hr Range (others available)

Rugged Splashproof Protection for Outdoor Use 2000 Hour Battery life CE Certi"ed Part Number: 48-1615 Model 19 MicroR Ratemeter

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report APPENDIX D -

CALIBRATION RECORDS



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The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report APPENDIX G -

SURFACE SCAN RESULTS

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report APPENDIX H -

SOIL STOCKPILE ANALYSIS

GEW-P15-005 Attachment D

Client Project Sample ID Parameter Results Sigma MDC Units DCGL Fraction SOF BMRC Final Status Survey 2014 11 12 S1-01 Americium-241

-0.008 +/-

0.395 0.639 pCi/g 2.1

-0.0038

-0.0084 BMRC Final Status Survey 2014 11 12 S1-01 Carbon-14

-0.122 +/-

0.706 1.57 pCi/g 12

-0.0102 BMRC Final Status Survey 2014 11 12 S1-01 Cesium-137 0.015 +/-

0.062 0.11 pCi/g 11 0.0014 BMRC Final Status Survey 2014 11 12 S1-01 Cobalt-60

-0.031 +/-

0.142 0.132 pCi/g 3.8

-0.0082 BMRC Final Status Survey 2014 11 12 S1-01 Europium-152 0.119 +/-

0.156 0.257 pCi/g 6.9 0.0172 BMRC Final Status Survey 2014 11 12 S1-01 Europium-154 0.134 +/-

0.127 0.169 pCi/g 8

0.0168 BMRC Final Status Survey 2014 11 12 S1-01 Nickel-63

-0.269 +/-

0.575 1.493 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 11 12 S1-01 Plutonium-238

-0.012 +/-

0.032 0.053 pCi/g 2.5

-0.0048 BMRC Final Status Survey 2014 11 12 S1-01 Pu-239/240 0.005 +/-

0.01 0.017 pCi/g 2.3 0.0022 BMRC Final Status Survey 2014 11 12 S1-01 Silver-108M 0.025 +/-

0.071 0.124 pCi/g 8.2 0.0030 BMRC Final Status Survey 2014 11 12 S1-01 Strontium-90

-0.0539 +/-

0.063 0.175 pCi/g 1.7

-0.0317 BMRC Final Status Survey 2014 11 12 S1-01 Tritium 1.08 +/-

1.74 2.97 pCi/g 110 0.0098 BMRC Final Status Survey 2014 11 12 S1-02 Americium-241 0.049 +/-

0.24 0.41 pCi/g 2.1 0.0233 0.1871 BMRC Final Status Survey 2014 11 12 S1-02 Carbon-14 0.636 +/-

0.973 1.68 pCi/g 12 0.0530 BMRC Final Status Survey 2014 11 12 S1-02 Cesium-137 0.03 +/-

0.037 0.061 pCi/g 11 0.0027 BMRC Final Status Survey 2014 11 12 S1-02 Cobalt-60 0.079 +/-

0.038 0.079 pCi/g 3.8 0.0208 BMRC Final Status Survey 2014 11 12 S1-02 Europium-152 0.021 +/-

0.105 0.179 pCi/g 6.9 0.0030 BMRC Final Status Survey 2014 11 12 S1-02 Europium-154 0.038 +/-

0.072 0.12 pCi/g 8

0.0048 BMRC Final Status Survey 2014 11 12 S1-02 Nickel-63 0.349 +/-

0.548 1.24 pCi/g 2100 0.0002 BMRC Final Status Survey 2014 11 12 S1-02 Plutonium-238 0.012 +/-

0.019 0.03 pCi/g 2.5 0.0048 BMRC Final Status Survey 2014 11 12 S1-02 Pu-239/240 0.009 +/-

0.01 0.015 pCi/g 2.3 0.0039 BMRC Final Status Survey 2014 11 12 S1-02 Silver-108M 0.325 +/-

0.057 0.056 pCi/g 8.2 0.0396 BMRC Final Status Survey 2014 11 12 S1-02 Strontium-90 0.021 +/-

0.077 0.183 pCi/g 1.7 0.0124 BMRC Final Status Survey 2014 11 12 S1-02 Tritium 2.05 +/-

1.77 2.83 pCi/g 110 0.0186 BMRC Final Status Survey 2014 11 12 S1-03 Americium-241 0.015 +/-

0.255 0.458 pCi/g 2.1 0.0071 0.2197 BMRC Final Status Survey 2014 11 12 S1-03 Carbon-14 0.522 +/-

0.962 1.72 pCi/g 12 0.0435 BMRC Final Status Survey 2014 11 12 S1-03 Cesium-137 0.203 +/-

0.073 0.049 pCi/g 11 0.0185 BMRC Final Status Survey 2014 11 12 S1-03 Cobalt-60 0.066 +/-

0.059 0.13 pCi/g 3.8 0.0174 BMRC Final Status Survey 2014 11 12 S1-03 Europium-152 0.031 +/-

0.145 0.253 pCi/g 6.9 0.0045 BMRC Final Status Survey 2014 11 12 S1-03 Europium-154

-0.032 +/-

0.109 0.187 pCi/g 8

-0.0040 BMRC Final Status Survey 2014 11 12 S1-03 Nickel-63 1.85 +/-

0.778 2.191 pCi/g 2100 0.0009 BMRC Final Status Survey 2014 11 12 S1-03 Plutonium-238 0.003 +/-

0.019 0.032 pCi/g 2.5 0.0012 BMRC Final Status Survey 2014 11 12 S1-03 Pu-239/240

-0.007 +/-

0.013 0.024 pCi/g 2.3

-0.0030 BMRC Final Status Survey 2014 11 12 S1-03 Silver-108M 1.07 +/-

0.164 0.083 pCi/g 8.2 0.1305 BMRC Final Status Survey 2014 11 12 S1-03 Strontium-90 0.0123 +/-

0.073 0.177 pCi/g 1.7 0.0072 BMRC Final Status Survey 2014 11 12 S1-03 Tritium

-0.438 +/-

1.99 3.72 pCi/g 110

-0.0040 BMRC Final Status Survey 2014 11 12 S1-04 Americium-241 0.063 +/-

0.17 0.292 pCi/g 2.1 0.0300 0.1978 BMRC Final Status Survey 2014 11 12 S1-04 Carbon-14 0.131 +/-

0.858 1.73 pCi/g 12 0.0109 BMRC Final Status Survey 2014 11 12 S1-04 Cesium-137 0.014 +/-

0.086 0.157 pCi/g 11 0.0013 BMRC Final Status Survey 2014 11 12 S1-04 Cobalt-60 0.016 +/-

0.085 0.169 pCi/g 3.8 0.0042 BMRC Final Status Survey 2014 11 12 S1-04 Europium-152 0 +/-

0.103 0.191 pCi/g 6.9 0.0000 BMRC Final Status Survey 2014 11 12 S1-04 Europium-154

-0.005 +/-

0.092 0.166 pCi/g 8

-0.0006 BMRC Final Status Survey 2014 11 12 S1-04 Nickel-63

-0.198 +/-

0.75 2.493 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 11 12 S1-04 Plutonium-238 0.02 +/-

0.024 0.035 pCi/g 2.5 0.0080 BMRC Final Status Survey 2014 11 12 S1-04 Pu-239/240

-0.005 +/-

0.017 0.03 pCi/g 2.3

-0.0022 BMRC Final Status Survey 2014 11 12 S1-04 Silver-108M 0.053 +/-

0.053 0.162 pCi/g 8.2 0.0065 BMRC Final Status Survey 2014 11 12 S1-04 Strontium-90 0.218 +/-

0.131 0.254 pCi/g 1.7 0.1282 BMRC Final Status Survey 2014 11 12 S1-04 Tritium 1.28 +/-

1.89 3.2 pCi/g 110 0.0116 BMRC Final Status Survey 2014 11 12 S1-05 Americium-241

-0.084 +/-

0.368 0.633 pCi/g 2.1

-0.0400 0.1111 BMRC Final Status Survey 2014 11 12 S1-05 Carbon-14 0.658 +/-

1.01 1.73 pCi/g 12 0.0548 BMRC Final Status Survey 2014 11 12 S1-05 Cesium-137 0.002 +/-

0.068 0.123 pCi/g 11 0.0002 BMRC Final Status Survey 2014 11 12 S1-05 Cobalt-60

-0.006 +/-

0.202 0.123 pCi/g 3.8

-0.0016 BMRC Final Status Survey 2014 11 12 S1-05 Europium-152

-0.005 +/-

1.039 0.249 pCi/g 6.9

-0.0007 BMRC Final Status Survey 2014 11 12 S1-05 Europium-154 0.12 +/-

0.15 0.163 pCi/g 8

0.0150 BMRC Final Status Survey 2014 11 12 S1-05 Nickel-63 0.254 +/-

0.594 1.489 pCi/g 2100 0.0001 BMRC Final Status Survey 2014 11 12 S1-05 Plutonium-238

-0.014 +/-

0.029 0.049 pCi/g 2.5

-0.0056 The Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 1 of 9 Appendix H1 - Class 1 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDC Units DCGL Fraction SOF BMRC Final Status Survey 2014 11 12 S1-05 Pu-239/240 0.008 +/-

0.012 0.018 pCi/g 2.3 0.0035 BMRC Final Status Survey 2014 11 12 S1-05 Silver-108M 0.066 +/-

0.077 0.125 pCi/g 8.2 0.0080 BMRC Final Status Survey 2014 11 12 S1-05 Strontium-90 0.103 +/-

0.071 0.136 pCi/g 1.7 0.0606 BMRC Final Status Survey 2014 11 12 S1-05 Tritium 1.84 +/-

1.6 2.55 pCi/g 110 0.0167 BMRC Final Status Survey 2014 11 12 S1-06 Americium-241

-0.018 +/-

0.189 0.332 pCi/g 2.1

-0.0086 0.2053 BMRC Final Status Survey 2014 11 12 S1-06 Carbon-14 1.61 +/-

1.25 1.76 pCi/g 12 0.1342 BMRC Final Status Survey 2014 11 12 S1-06 Cesium-137 0.05 +/-

0.09 0.153 pCi/g 11 0.0045 BMRC Final Status Survey 2014 11 12 S1-06 Cobalt-60 0.001 +/-

0.085 0.177 pCi/g 3.8 0.0003 BMRC Final Status Survey 2014 11 12 S1-06 Europium-152 0 +/-

0.004 0.307 pCi/g 6.9 0.0000 BMRC Final Status Survey 2014 11 12 S1-06 Europium-154

-0.014 +/-

0.109 0.193 pCi/g 8

-0.0018 BMRC Final Status Survey 2014 11 12 S1-06 Nickel-63 0.363 +/-

0.592 1.459 pCi/g 2100 0.0002 BMRC Final Status Survey 2014 11 12 S1-06 Plutonium-238

-0.002 +/-

0.022 0.037 pCi/g 2.5

-0.0008 BMRC Final Status Survey 2014 11 12 S1-06 Pu-239/240 0.006 +/-

0.012 0.02 pCi/g 2.3 0.0026 BMRC Final Status Survey 2014 11 12 S1-06 Silver-108M 0.091 +/-

0.056 0.147 pCi/g 8.2 0.0111 BMRC Final Status Survey 2014 11 12 S1-06 Strontium-90 0.0267 +/-

0.08 0.189 pCi/g 1.7 0.0157 BMRC Final Status Survey 2014 11 12 S1-06 Tritium 5.26 +/-

2.23 3 pCi/g 110 0.0478 BMRC Final Status Survey 2014 11 12 S1-07 Americium-241 0.039 +/-

0.181 0.315 pCi/g 2.1 0.0186 0.1126 BMRC Final Status Survey 2014 11 12 S1-07 Carbon-14 0.131 +/-

0.861 1.74 pCi/g 12 0.0109 BMRC Final Status Survey 2014 11 12 S1-07 Cesium-137 0.013 +/-

0.059 0.112 pCi/g 11 0.0012 BMRC Final Status Survey 2014 11 12 S1-07 Cobalt-60 0.076 +/-

0.08 0.132 pCi/g 3.8 0.0200 BMRC Final Status Survey 2014 11 12 S1-07 Europium-152

-0.05 +/-

0.133 0.229 pCi/g 6.9

-0.0072 BMRC Final Status Survey 2014 11 12 S1-07 Europium-154 0.147 +/-

0.156 0.15 pCi/g 8

0.0184 BMRC Final Status Survey 2014 11 12 S1-07 Nickel-63 0.093 +/-

0.547 1.288 pCi/g 2100 0.0000 BMRC Final Status Survey 2014 11 12 S1-07 Plutonium-238 0.02 +/-

0.027 0.041 pCi/g 2.5 0.0080 BMRC Final Status Survey 2014 11 12 S1-07 Pu-239/240 0.004 +/-

0.012 0.02 pCi/g 2.3 0.0017 BMRC Final Status Survey 2014 11 12 S1-07 Silver-108M 0.204 +/-

0.075 0.147 pCi/g 8.2 0.0249 BMRC Final Status Survey 2014 11 12 S1-07 Strontium-90

-0.0257 +/-

0.072 0.189 pCi/g 1.7

-0.0151 BMRC Final Status Survey 2014 11 12 S1-07 Tritium 3.44 +/-

2.21 3.34 pCi/g 110 0.0313 BMRC Final Status Survey 2014 11 12 S1-08 Americium-241 0.058 +/-

0.356 0.623 pCi/g 2.1 0.0276 0.0545 BMRC Final Status Survey 2014 11 12 S1-08 Carbon-14 0 +/-

0.787 1.67 pCi/g 12 0.0000 BMRC Final Status Survey 2014 11 12 S1-08 Cesium-137 0 +/-

0.064 0.118 pCi/g 11 0.0000 BMRC Final Status Survey 2014 11 12 S1-08 Cobalt-60

-0.019 +/-

0.235 0.124 pCi/g 3.8

-0.0050 BMRC Final Status Survey 2014 11 12 S1-08 Europium-152 0.065 +/-

0.141 0.241 pCi/g 6.9 0.0094 BMRC Final Status Survey 2014 11 12 S1-08 Europium-154 0.028 +/-

0.1 0.174 pCi/g 8

0.0035 BMRC Final Status Survey 2014 11 12 S1-08 Nickel-63 0.072 +/-

0.711 2.194 pCi/g 2100 0.0000 BMRC Final Status Survey 2014 11 12 S1-08 Plutonium-238 0.012 +/-

0.029 0.046 pCi/g 2.5 0.0048 BMRC Final Status Survey 2014 11 12 S1-08 Pu-239/240 0 +/-

0.016 0.028 pCi/g 2.3 0.0000 BMRC Final Status Survey 2014 11 12 S1-08 Silver-108M 0.046 +/-

0.042 0.118 pCi/g 8.2 0.0056 BMRC Final Status Survey 2014 11 12 S1-08 Strontium-90 0.0157 +/-

0.075 0.181 pCi/g 1.7 0.0092 BMRC Final Status Survey 2014 11 12 S1-08 Tritium

-0.0779 +/-

1.56 2.87 pCi/g 110

-0.0007 BMRC Final Status Survey 2014 11 17 S1-01 Americium-241 0.239 +/-

0.365 0.607 pCi/g 2.1 0.1138 0.4312 BMRC Final Status Survey 2014 11 17 S1-01 Carbon-14 0 +/-

0.302 0.543 pCi/g 12 0.0000 BMRC Final Status Survey 2014 11 17 S1-01 Cesium-137 0.146 +/-

0.085 0.081 pCi/g 11 0.0133 BMRC Final Status Survey 2014 11 17 S1-01 Cobalt-60 0.1 +/-

0.067 0.13 pCi/g 3.8 0.0263 BMRC Final Status Survey 2014 11 17 S1-01 Europium-152

-0.011 +/-

0.533 0.274 pCi/g 6.9

-0.0016 BMRC Final Status Survey 2014 11 17 S1-01 Europium-154 0.105 +/-

0.111 0.178 pCi/g 8

0.0131 BMRC Final Status Survey 2014 11 17 S1-01 Nickel-63 2.54 +/-

1.404 3.336 pCi/g 2100 0.0012 BMRC Final Status Survey 2014 11 17 S1-01 Plutonium-238 0.011 +/-

0.031 0.059 pCi/g 2.5 0.0044 BMRC Final Status Survey 2014 11 17 S1-01 Pu-239/240

-0.011 +/-

0.015 0.041 pCi/g 2.3

-0.0048 BMRC Final Status Survey 2014 11 17 S1-01 Silver-108M 0.913 +/-

0.147 0.099 pCi/g 8.2 0.1113 BMRC Final Status Survey 2014 11 17 S1-01 Strontium-90 0.25 +/-

0.132 0.238 pCi/g 1.7 0.1471 BMRC Final Status Survey 2014 11 17 S1-01 Tritium 0.778 +/-

1.46 2.52 pCi/g 110 0.0071 BMRC Final Status Survey 2014 12 12 S1-01 Americium-241

-0.066 +/-

0.327 0.568 pCi/g 2.1

-0.0314 0.0142 BMRC Final Status Survey 2014 12 12 S1-01 Carbon-14

-0.103 +/-

0.373 0.699 pCi/g 12

-0.0086 BMRC Final Status Survey 2014 12 12 S1-01 Cesium-137 0.016 +/-

0.05 0.089 pCi/g 11 0.0015 BMRC Final Status Survey 2014 12 12 S1-01 Cobalt-60

-0.016 +/-

3.81 0.122 pCi/g 3.8

-0.0042 The Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 2 of 9 Appendix H1 - Class 1 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDC Units DCGL Fraction SOF BMRC Final Status Survey 2014 12 12 S1-01 Europium-152 0.103 +/-

0.157 0.261 pCi/g 6.9 0.0149 BMRC Final Status Survey 2014 12 12 S1-01 Europium-154 0 +/-

0.018 0.183 pCi/g 8

0.0000 BMRC Final Status Survey 2014 12 12 S1-01 Nickel-63

-0.147 +/-

1.29 4.136 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 12 12 S1-01 Plutonium-238 0.04 +/-

0.025 0.034 pCi/g 2.5 0.0160 BMRC Final Status Survey 2014 12 12 S1-01 Pu-239/240 0.002 +/-

0.009 0.019 pCi/g 2.3 0.0009 BMRC Final Status Survey 2014 12 12 S1-01 Silver-108M 0.084 +/-

0.044 0.096 pCi/g 8.2 0.0102 BMRC Final Status Survey 2014 12 12 S1-01 Strontium-90 0.0169 +/-

0.053 0.1 pCi/g 1.7 0.0099 BMRC Final Status Survey 2014 12 12 S1-01 Tritium 0.557 +/-

1.56 2.73 pCi/g 110 0.0051 BMRC Final Status Survey 2014 12 12 S1-02 Americium-241 0.115 +/-

0.32 0.552 pCi/g 2.1 0.0548 0.0557 BMRC Final Status Survey 2014 12 12 S1-02 Carbon-14 0.146 +/-

0.404 0.709 pCi/g 12 0.0122 BMRC Final Status Survey 2014 12 12 S1-02 Cesium-137 0.003 +/-

0.06 0.111 pCi/g 11 0.0003 BMRC Final Status Survey 2014 12 12 S1-02 Cobalt-60

-0.018 +/-

5.666 0.098 pCi/g 3.8

-0.0047 BMRC Final Status Survey 2014 12 12 S1-02 Europium-152

-0.009 +/-

0.153 0.241 pCi/g 6.9

-0.0013 BMRC Final Status Survey 2014 12 12 S1-02 Europium-154

-0.013 +/-

0.102 0.168 pCi/g 8

-0.0016 BMRC Final Status Survey 2014 12 12 S1-02 Nickel-63

-0.607 +/-

1.314 4.501 pCi/g 2100

-0.0003 BMRC Final Status Survey 2014 12 12 S1-02 Plutonium-238 0.018 +/-

0.02 0.033 pCi/g 2.5 0.0072 BMRC Final Status Survey 2014 12 12 S1-02 Pu-239/240 0.01 +/-

0.012 0.018 pCi/g 2.3 0.0043 BMRC Final Status Survey 2014 12 12 S1-02 Silver-108M 0.029 +/-

0.025 0.102 pCi/g 8.2 0.0035 BMRC Final Status Survey 2014 12 12 S1-02 Strontium-90

-0.0275 +/-

0.056 0.11 pCi/g 1.7

-0.0162 BMRC Final Status Survey 2014 12 12 S1-02 Tritium

-0.268 +/-

1.3 2.42 pCi/g 110

-0.0024 BMRC Final Status Survey 2014 12 13 S1-01 Americium-241

-0.012 +/-

0.19 0.312 pCi/g 2.1

-0.0057 0.0626 BMRC Final Status Survey 2014 12 13 S1-01 Carbon-14 0.447 +/-

0.425 0.688 pCi/g 12 0.0373 BMRC Final Status Survey 2014 12 13 S1-01 Cesium-137 0.02 +/-

0.092 0.167 pCi/g 11 0.0018 BMRC Final Status Survey 2014 12 13 S1-01 Cobalt-60 0.034 +/-

0.084 0.163 pCi/g 3.8 0.0089 BMRC Final Status Survey 2014 12 13 S1-01 Europium-152 0.076 +/-

0.125 0.21 pCi/g 6.9 0.0110 BMRC Final Status Survey 2014 12 13 S1-01 Europium-154 0 +/-

0.009 0.158 pCi/g 8

0.0000 BMRC Final Status Survey 2014 12 13 S1-01 Nickel-63 1.278 +/-

1.363 3.915 pCi/g 2100 0.0006 BMRC Final Status Survey 2014 12 13 S1-01 Plutonium-238 0.014 +/-

0.025 0.044 pCi/g 2.5 0.0056 BMRC Final Status Survey 2014 12 13 S1-01 Pu-239/240

-0.002 +/-

0.01 0.024 pCi/g 2.3

-0.0009 BMRC Final Status Survey 2014 12 13 S1-01 Silver-108M 0.001 +/-

0.081 0.153 pCi/g 8.2 0.0001 BMRC Final Status Survey 2014 12 13 S1-01 Strontium-90

-0.0066 +/-

0.052 0.101 pCi/g 1.7

-0.0039 BMRC Final Status Survey 2014 12 13 S1-01 Tritium 0.851 +/-

1.46 2.5 pCi/g 110 0.0077 BMRC Final Status Survey 2014 12 13 S1-02 Americium-241 0.001 +/-

0.364 0.647 pCi/g 2.1 0.0005 0.0549 BMRC Final Status Survey 2014 12 13 S1-02 Carbon-14 0.227 +/-

0.407 0.698 pCi/g 12 0.0189 BMRC Final Status Survey 2014 12 13 S1-02 Cesium-137 0.027 +/-

0.065 0.113 pCi/g 11 0.0025 BMRC Final Status Survey 2014 12 13 S1-02 Cobalt-60 0.006 +/-

0.066 0.129 pCi/g 3.8 0.0016 BMRC Final Status Survey 2014 12 13 S1-02 Europium-152 0.07 +/-

0.16 0.273 pCi/g 6.9 0.0101 BMRC Final Status Survey 2014 12 13 S1-02 Europium-154

-0.001 +/-

0.021 0.237 pCi/g 8

-0.0001 BMRC Final Status Survey 2014 12 13 S1-02 Nickel-63 0.651 +/-

1.326 3.987 pCi/g 2100 0.0003 BMRC Final Status Survey 2014 12 13 S1-02 Plutonium-238

-0.019 +/-

0.036 0.068 pCi/g 2.5

-0.0076 BMRC Final Status Survey 2014 12 13 S1-02 Pu-239/240 0.005 +/-

0.011 0.02 pCi/g 2.3 0.0022 BMRC Final Status Survey 2014 12 13 S1-02 Silver-108M 0.059 +/-

0.046 0.124 pCi/g 8.2 0.0072 BMRC Final Status Survey 2014 12 13 S1-02 Strontium-90 0.0272 +/-

0.062 0.116 pCi/g 1.7 0.0160 BMRC Final Status Survey 2014 12 13 S1-02 Tritium 0.374 +/-

1.76 3.14 pCi/g 110 0.0034 BMRC Final Status Survey 2014 12 13 S1-03 Americium-241

-0.054 +/-

0.196 0.332 pCi/g 2.1

-0.0257

-0.0071 BMRC Final Status Survey 2014 12 13 S1-03 Carbon-14 0.429 +/-

0.425 0.693 pCi/g 12 0.0358 BMRC Final Status Survey 2014 12 13 S1-03 Cesium-137

-0.001 +/-

0.071 0.136 pCi/g 11

-0.0001 BMRC Final Status Survey 2014 12 13 S1-03 Cobalt-60 0.013 +/-

0.083 0.168 pCi/g 3.8 0.0034 BMRC Final Status Survey 2014 12 13 S1-03 Europium-152 0.03 +/-

0.14 0.246 pCi/g 6.9 0.0043 BMRC Final Status Survey 2014 12 13 S1-03 Europium-154

-0.029 +/-

0.112 0.191 pCi/g 8

-0.0036 BMRC Final Status Survey 2014 12 13 S1-03 Nickel-63 0.186 +/-

1.053 2.622 pCi/g 2100 0.0001 BMRC Final Status Survey 2014 12 13 S1-03 Plutonium-238 0.028 +/-

0.031 0.051 pCi/g 2.5 0.0112 BMRC Final Status Survey 2014 12 13 S1-03 Pu-239/240

-0.002 +/-

0.016 0.034 pCi/g 2.3

-0.0009 BMRC Final Status Survey 2014 12 13 S1-03 Silver-108M 0.041 +/-

0.033 0.059 pCi/g 8.2 0.0050 BMRC Final Status Survey 2014 12 13 S1-03 Strontium-90

-0.0698 +/-

0.058 0.114 pCi/g 1.7

-0.0411 BMRC Final Status Survey 2014 12 13 S1-03 Tritium 0.49 +/-

1.37 2.4 pCi/g 110 0.0045 The Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 3 of 9 Appendix H1 - Class 1 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDC Units DCGL Fraction SOF BMRC Final Status Survey 2014 12 13 S1-04 Americium-241 0.003 +/-

0.156 0.277 pCi/g 2.1 0.0014 0.0713 BMRC Final Status Survey 2014 12 13 S1-04 Carbon-14 0.33 +/-

0.418 0.699 pCi/g 12 0.0275 BMRC Final Status Survey 2014 12 13 S1-04 Cesium-137 0 +/-

0.014 0.052 pCi/g 11 0.0000 BMRC Final Status Survey 2014 12 13 S1-04 Cobalt-60 0.014 +/-

0.019 0.102 pCi/g 3.8 0.0037 BMRC Final Status Survey 2014 12 13 S1-04 Europium-152

-0.052 +/-

0.178 0.278 pCi/g 6.9

-0.0075 BMRC Final Status Survey 2014 12 13 S1-04 Europium-154 0.059 +/-

0.104 0.151 pCi/g 8

0.0074 BMRC Final Status Survey 2014 12 13 S1-04 Nickel-63 0.536 +/-

1.255 3.594 pCi/g 2100 0.0003 BMRC Final Status Survey 2014 12 13 S1-04 Plutonium-238 0.03 +/-

0.027 0.043 pCi/g 2.5 0.0120 BMRC Final Status Survey 2014 12 13 S1-04 Pu-239/240 0.003 +/-

0.013 0.026 pCi/g 2.3 0.0013 BMRC Final Status Survey 2014 12 13 S1-04 Silver-108M 0.134 +/-

0.064 0.052 pCi/g 8.2 0.0163 BMRC Final Status Survey 2014 12 13 S1-04 Strontium-90 0.0176 +/-

0.05 0.0941 pCi/g 1.7 0.0104 BMRC Final Status Survey 2014 12 13 S1-04 Tritium

-0.16 +/-

1.7 3.13 pCi/g 110

-0.0015 BMRC Final Status Survey 2014 12 13 S1-05 Americium-241 0.081 +/-

0.169 0.287 pCi/g 2.1 0.0386 0.0816 BMRC Final Status Survey 2014 12 13 S1-05 Carbon-14 0.301 +/-

0.432 0.73 pCi/g 12 0.0251 BMRC Final Status Survey 2014 12 13 S1-05 Cesium-137 0.054 +/-

0.082 0.138 pCi/g 11 0.0049 BMRC Final Status Survey 2014 12 13 S1-05 Cobalt-60 0.007 +/-

0.012 0.222 pCi/g 3.8 0.0018 BMRC Final Status Survey 2014 12 13 S1-05 Europium-152

-0.032 +/-

0.165 0.246 pCi/g 6.9

-0.0046 BMRC Final Status Survey 2014 12 13 S1-05 Europium-154 0.029 +/-

0.09 0.157 pCi/g 8

0.0036 BMRC Final Status Survey 2014 12 13 S1-05 Nickel-63

-0.213 +/-

1.15 3.334 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 12 13 S1-05 Plutonium-238 0.037 +/-

0.03 0.046 pCi/g 2.5 0.0148 BMRC Final Status Survey 2014 12 13 S1-05 Pu-239/240 0.009 +/-

0.011 0.017 pCi/g 2.3 0.0039 BMRC Final Status Survey 2014 12 13 S1-05 Silver-108M 0.039 +/-

0.058 0.153 pCi/g 8.2 0.0048 BMRC Final Status Survey 2014 12 13 S1-05 Strontium-90

-0.0256 +/-

0.052 0.101 pCi/g 1.7

-0.0151 BMRC Final Status Survey 2014 12 13 S1-05 Tritium 0.429 +/-

1.67 2.96 pCi/g 110 0.0039 BMRC Final Status Survey 2014 12 13 S1-06 Americium-241 0.133 +/-

0.163 0.266 pCi/g 2.1 0.0633 0.1399 BMRC Final Status Survey 2014 12 13 S1-06 Carbon-14 0.214 +/-

0.42 0.724 pCi/g 12 0.0178 BMRC Final Status Survey 2014 12 13 S1-06 Cesium-137 0.026 +/-

0.066 0.119 pCi/g 11 0.0024 BMRC Final Status Survey 2014 12 13 S1-06 Cobalt-60 0.005 +/-

0.07 0.154 pCi/g 3.8 0.0013 BMRC Final Status Survey 2014 12 13 S1-06 Europium-152

-0.035 +/-

0.171 0.257 pCi/g 6.9

-0.0051 BMRC Final Status Survey 2014 12 13 S1-06 Europium-154

-0.009 +/-

0.089 0.152 pCi/g 8

-0.0011 BMRC Final Status Survey 2014 12 13 S1-06 Nickel-63 1.203 +/-

1.104 2.388 pCi/g 2100 0.0006 BMRC Final Status Survey 2014 12 13 S1-06 Plutonium-238 0 +/-

0.025 0.046 pCi/g 2.5 0.0000 BMRC Final Status Survey 2014 12 13 S1-06 Pu-239/240 0.003 +/-

0.013 0.025 pCi/g 2.3 0.0013 BMRC Final Status Survey 2014 12 13 S1-06 Silver-108M 0.193 +/-

0.063 0.136 pCi/g 8.2 0.0235 BMRC Final Status Survey 2014 12 13 S1-06 Strontium-90 0.0485 +/-

0.057 0.104 pCi/g 1.7 0.0285 BMRC Final Status Survey 2014 12 13 S1-06 Tritium 0.808 +/-

1.62 2.79 pCi/g 110 0.0073 BMRC Final Status Survey 2014 12 22 S1-01 Americium-241

-0.127 +/-

0.4 0.68 pCi/g 2.1

-0.0605 0.4891 BMRC Final Status Survey 2014 12 22 S1-01 Carbon-14 0.173 +/-

0.356 0.612 pCi/g 12 0.0144 BMRC Final Status Survey 2014 12 22 S1-01 Cesium-137 0.073 +/-

0.067 0.105 pCi/g 11 0.0066 BMRC Final Status Survey 2014 12 22 S1-01 Cobalt-60 0.264 +/-

0.08 0.092 pCi/g 3.8 0.0695 BMRC Final Status Survey 2014 12 22 S1-01 Europium-152 0.05 +/-

0.194 0.332 pCi/g 6.9 0.0072 BMRC Final Status Survey 2014 12 22 S1-01 Europium-154 0.04 +/-

0.135 0.23 pCi/g 8

0.0050 BMRC Final Status Survey 2014 12 22 S1-01 Nickel-63 0.129 +/-

1.387 4.069 pCi/g 2100 0.0001 BMRC Final Status Survey 2014 12 22 S1-01 Plutonium-238 0.007 +/-

0.028 0.051 pCi/g 2.5 0.0028 BMRC Final Status Survey 2014 12 22 S1-01 Pu-239/240 0.018 +/-

0.017 0.025 pCi/g 2.3 0.0078 BMRC Final Status Survey 2014 12 22 S1-01 Silver-108M 1.396 +/-

0.211 0.109 pCi/g 8.2 0.1702 BMRC Final Status Survey 2014 12 22 S1-01 Strontium-90 0.452 +/-

0.151 0.198 pCi/g 1.7 0.2659 BMRC Final Status Survey 2014 12 22 S1-01 Tritium 0 +/-

1.84 3.32 pCi/g 110 0.0000 BMRC Final Status Survey 2014 12 22 S1-01-DUPAmericium-241 0.006 +/-

0.178 0.315 pCi/g 2.1 0.0029 0.3321 BMRC Final Status Survey 2014 12 22 S1-01-DUPCarbon-14 0.479 +/-

0.365 0.579 pCi/g 12 0.0399 BMRC Final Status Survey 2014 12 22 S1-01-DUPCesium-137 0.062 +/-

0.096 0.16 pCi/g 11 0.0056 BMRC Final Status Survey 2014 12 22 S1-01-DUPCobalt-60 0.148 +/-

0.098 0.215 pCi/g 3.8 0.0389 BMRC Final Status Survey 2014 12 22 S1-01-DUPEuropium-152 0.006 +/-

0.148 0.263 pCi/g 6.9 0.0009 BMRC Final Status Survey 2014 12 22 S1-01-DUPEuropium-154 0.009 +/-

0.095 0.17 pCi/g 8

0.0011 BMRC Final Status Survey 2014 12 22 S1-01-DUPNickel-63 1.706 +/-

1.462 3.832 pCi/g 2100 0.0008 BMRC Final Status Survey 2014 12 22 S1-01-DUPPlutonium-238 0.002 +/-

0.038 0.069 pCi/g 2.5 0.0008 The Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 4 of 9 Appendix H1 - Class 1 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDC Units DCGL Fraction SOF BMRC Final Status Survey 2014 12 22 S1-01-DUPPu-239/240

-0.01 +/-

0.016 0.036 pCi/g 2.3

-0.0043 BMRC Final Status Survey 2014 12 22 S1-01-DUPSilver-108M 1.171 +/-

0.192 0.13 pCi/g 8.2 0.1428 BMRC Final Status Survey 2014 12 22 S1-01-DUPStrontium-90 0.192 +/-

0.119 0.223 pCi/g 1.7 0.1129 BMRC Final Status Survey 2014 12 22 S1-01-DUPTritium

-1.13 +/-

1.4 2.71 pCi/g 110

-0.0103 BMRC Final Status Survey 2014 12 22 S1-02 Americium-241 0.01 +/-

0.33 0.584 pCi/g 2.1 0.0048 0.5126 BMRC Final Status Survey 2014 12 22 S1-02 Carbon-14 0.331 +/-

0.355 0.585 pCi/g 12 0.0276 BMRC Final Status Survey 2014 12 22 S1-02 Cesium-137 0.064 +/-

0.062 0.097 pCi/g 11 0.0058 BMRC Final Status Survey 2014 12 22 S1-02 Cobalt-60 0.202 +/-

0.077 0.157 pCi/g 3.8 0.0532 BMRC Final Status Survey 2014 12 22 S1-02 Europium-152 0.146 +/-

0.173 0.281 pCi/g 6.9 0.0212 BMRC Final Status Survey 2014 12 22 S1-02 Europium-154 0.23 +/-

0.134 0.144 pCi/g 8

0.0288 BMRC Final Status Survey 2014 12 22 S1-02 Nickel-63 1.595 +/-

1.497 4.111 pCi/g 2100 0.0008 BMRC Final Status Survey 2014 12 22 S1-02 Plutonium-238 0.008 +/-

0.029 0.052 pCi/g 2.5 0.0032 BMRC Final Status Survey 2014 12 22 S1-02 Pu-239/240 0.01 +/-

0.017 0.031 pCi/g 2.3 0.0043 BMRC Final Status Survey 2014 12 22 S1-02 Silver-108M 1.241 +/-

0.188 0.102 pCi/g 8.2 0.1513 BMRC Final Status Survey 2014 12 22 S1-02 Strontium-90 0.361 +/-

0.133 0.189 pCi/g 1.7 0.2124 BMRC Final Status Survey 2014 12 22 S1-02 Tritium

-0.071 +/-

1.66 3.01 pCi/g 110

-0.0006 BMRC Final Status Survey 2014 12 22 S1-03 Americium-241

-0.008 +/-

0.204 0.357 pCi/g 2.1

-0.0038 0.4112 BMRC Final Status Survey 2014 12 22 S1-03 Carbon-14 0.4 +/-

0.35 0.565 pCi/g 12 0.0333 BMRC Final Status Survey 2014 12 22 S1-03 Cesium-137 0.054 +/-

0.081 0.136 pCi/g 11 0.0049 BMRC Final Status Survey 2014 12 22 S1-03 Cobalt-60 0.209 +/-

0.124 0.168 pCi/g 3.8 0.0550 BMRC Final Status Survey 2014 12 22 S1-03 Europium-152 0.011 +/-

0.208 0.361 pCi/g 6.9 0.0016 BMRC Final Status Survey 2014 12 22 S1-03 Europium-154

-0.062 +/-

0.144 0.241 pCi/g 8

-0.0078 BMRC Final Status Survey 2014 12 22 S1-03 Nickel-63 1.034 +/-

1.375 3.612 pCi/g 2100 0.0005 BMRC Final Status Survey 2014 12 22 S1-03 Plutonium-238 0.044 +/-

0.027 0.038 pCi/g 2.5 0.0176 BMRC Final Status Survey 2014 12 22 S1-03 Pu-239/240 0.007 +/-

0.015 0.027 pCi/g 2.3 0.0030 BMRC Final Status Survey 2014 12 22 S1-03 Silver-108M 1.163 +/-

0.229 0.052 pCi/g 8.2 0.1418 BMRC Final Status Survey 2014 12 22 S1-03 Strontium-90 0.265 +/-

0.115 0.181 pCi/g 1.7 0.1559 BMRC Final Status Survey 2014 12 22 S1-03 Tritium 0.999 +/-

1.69 2.88 pCi/g 110 0.0091 BMRC Final Status Survey 2014 12 22 S1-04 Americium-241 0.137 +/-

0.266 0.452 pCi/g 2.1 0.0652 0.4687 BMRC Final Status Survey 2014 12 22 S1-04 Carbon-14 0.302 +/-

0.348 0.577 pCi/g 12 0.0252 BMRC Final Status Survey 2014 12 22 S1-04 Cesium-137 0.027 +/-

0.069 0.119 pCi/g 11 0.0025 BMRC Final Status Survey 2014 12 22 S1-04 Cobalt-60 0.218 +/-

0.075 0.045 pCi/g 3.8 0.0574 BMRC Final Status Survey 2014 12 22 S1-04 Europium-152 0.039 +/-

0.173 0.297 pCi/g 6.9 0.0057 BMRC Final Status Survey 2014 12 22 S1-04 Europium-154 0.048 +/-

0.083 0.195 pCi/g 8

0.0060 BMRC Final Status Survey 2014 12 22 S1-04 Nickel-63 2.736 +/-

1.757 5.378 pCi/g 2100 0.0013 BMRC Final Status Survey 2014 12 22 S1-04 Plutonium-238 0.019 +/-

0.027 0.046 pCi/g 2.5 0.0076 BMRC Final Status Survey 2014 12 22 S1-04 Pu-239/240

-0.015 +/-

0.018 0.04 pCi/g 2.3

-0.0065 BMRC Final Status Survey 2014 12 22 S1-04 Silver-108M 1.011 +/-

0.19 0.099 pCi/g 8.2 0.1233 BMRC Final Status Survey 2014 12 22 S1-04 Strontium-90 0.271 +/-

0.151 0.285 pCi/g 1.7 0.1594 BMRC Final Status Survey 2014 12 22 S1-04 Tritium 2.39 +/-

1.96 3.13 pCi/g 110 0.0217 BMRC Final Status Survey 2014 12 22 S1-05 Americium-241

-0.044 +/-

0.182 0.313 pCi/g 2.1

-0.0210 0.0961 BMRC Final Status Survey 2014 12 22 S1-05 Carbon-14 0.373 +/-

0.359 0.586 pCi/g 12 0.0311 BMRC Final Status Survey 2014 12 22 S1-05 Cesium-137 0.034 +/-

0.071 0.123 pCi/g 11 0.0031 BMRC Final Status Survey 2014 12 22 S1-05 Cobalt-60 0.048 +/-

0.062 0.176 pCi/g 3.8 0.0126 BMRC Final Status Survey 2014 12 22 S1-05 Europium-152

-0.057 +/-

0.168 0.288 pCi/g 6.9

-0.0083 BMRC Final Status Survey 2014 12 22 S1-05 Europium-154

-0.001 +/-

0.331 0.174 pCi/g 8

-0.0001 BMRC Final Status Survey 2014 12 22 S1-05 Nickel-63 0.514 +/-

1.568 5.057 pCi/g 2100 0.0002 BMRC Final Status Survey 2014 12 22 S1-05 Plutonium-238 0.044 +/-

0.029 0.044 pCi/g 2.5 0.0176 BMRC Final Status Survey 2014 12 22 S1-05 Pu-239/240

-0.008 +/-

0.015 0.032 pCi/g 2.3

-0.0035 BMRC Final Status Survey 2014 12 22 S1-05 Silver-108M 0.518 +/-

0.105 0.05 pCi/g 8.2 0.0632 BMRC Final Status Survey 2014 12 22 S1-05 Strontium-90

-0.0231 +/-

0.069 0.181 pCi/g 1.7

-0.0136 BMRC Final Status Survey 2014 12 22 S1-05 Tritium 1.61 +/-

1.68 2.76 pCi/g 110 0.0146 BMRC Final Status Survey 2014 12 22 S1-06 Americium-241 0 +/-

0.012 0.754 pCi/g 2.1 0.0000 0.1657 BMRC Final Status Survey 2014 12 22 S1-06 Carbon-14 0.349 +/-

0.358 0.587 pCi/g 12 0.0291 BMRC Final Status Survey 2014 12 22 S1-06 Cesium-137 0.039 +/-

0.056 0.094 pCi/g 11 0.0035 BMRC Final Status Survey 2014 12 22 S1-06 Cobalt-60 0.052 +/-

0.056 0.129 pCi/g 3.8 0.0137 The Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 5 of 9 Appendix H1 - Class 1 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDC Units DCGL Fraction SOF BMRC Final Status Survey 2014 12 22 S1-06 Europium-152 0.03 +/-

0.147 0.257 pCi/g 6.9 0.0043 BMRC Final Status Survey 2014 12 22 S1-06 Europium-154 0.004 +/-

0.09 0.162 pCi/g 8

0.0005 BMRC Final Status Survey 2014 12 22 S1-06 Nickel-63 1.269 +/-

1.166 2.85 pCi/g 2100 0.0006 BMRC Final Status Survey 2014 12 22 S1-06 Plutonium-238 0.013 +/-

0.024 0.042 pCi/g 2.5 0.0052 BMRC Final Status Survey 2014 12 22 S1-06 Pu-239/240

-0.023 +/-

0.023 0.053 pCi/g 2.3

-0.0100 BMRC Final Status Survey 2014 12 22 S1-06 Silver-108M 0.549 +/-

0.098 0.072 pCi/g 8.2 0.0670 BMRC Final Status Survey 2014 12 22 S1-06 Strontium-90 0.0858 +/-

0.074 0.151 pCi/g 1.7 0.0505 BMRC Final Status Survey 2014 12 22 S1-06 Tritium 0.146 +/-

1.35 2.42 pCi/g 110 0.0013 BMRC Final Status Survey 2014 12 22 S1-07 Americium-241

-0.018 +/-

0.17 0.299 pCi/g 2.1

-0.0086 0.0896 BMRC Final Status Survey 2014 12 22 S1-07 Carbon-14 0.488 +/-

0.372 0.589 pCi/g 12 0.0407 BMRC Final Status Survey 2014 12 22 S1-07 Cesium-137 0 +/-

0.007 0.118 pCi/g 11 0.0000 BMRC Final Status Survey 2014 12 22 S1-07 Cobalt-60

-0.023 +/-

0.936 0.097 pCi/g 3.8

-0.0061 BMRC Final Status Survey 2014 12 22 S1-07 Europium-152

-0.018 +/-

0.129 0.229 pCi/g 6.9

-0.0026 BMRC Final Status Survey 2014 12 22 S1-07 Europium-154 0.004 +/-

0.084 0.152 pCi/g 8

0.0005 BMRC Final Status Survey 2014 12 22 S1-07 Nickel-63 1.525 +/-

1.159 2.67 pCi/g 2100 0.0007 BMRC Final Status Survey 2014 12 22 S1-07 Plutonium-238 0.006 +/-

0.021 0.039 pCi/g 2.5 0.0024 BMRC Final Status Survey 2014 12 22 S1-07 Pu-239/240

-0.004 +/-

0.018 0.037 pCi/g 2.3

-0.0017 BMRC Final Status Survey 2014 12 22 S1-07 Silver-108M 0.306 +/-

0.104 0.051 pCi/g 8.2 0.0373 BMRC Final Status Survey 2014 12 22 S1-07 Strontium-90 0.028 +/-

0.197 0.476 pCi/g 1.7 0.0165 BMRC Final Status Survey 2014 12 22 S1-07 Tritium 1.15 +/-

1.28 2.12 pCi/g 110 0.0105 BMRC Final Status Survey 2014 12 22 S1-08 Americium-241 0.282 +/-

0.39 0.643 pCi/g 2.1 0.1343 0.2839 BMRC Final Status Survey 2014 12 22 S1-08 Carbon-14

-0.146 +/-

0.309 0.575 pCi/g 12

-0.0122 BMRC Final Status Survey 2014 12 22 S1-08 Cesium-137 0.021 +/-

0.066 0.117 pCi/g 11 0.0019 BMRC Final Status Survey 2014 12 22 S1-08 Cobalt-60 0.05 +/-

0.056 0.147 pCi/g 3.8 0.0132 BMRC Final Status Survey 2014 12 22 S1-08 Europium-152

-0.006 +/-

0.169 0.299 pCi/g 6.9

-0.0009 BMRC Final Status Survey 2014 12 22 S1-08 Europium-154 0.04 +/-

0.113 0.195 pCi/g 8

0.0050 BMRC Final Status Survey 2014 12 22 S1-08 Nickel-63 0.335 +/-

1.111 3.014 pCi/g 2100 0.0002 BMRC Final Status Survey 2014 12 22 S1-08 Plutonium-238 0.01 +/-

0.015 0.025 pCi/g 2.5 0.0040 BMRC Final Status Survey 2014 12 22 S1-08 Pu-239/240 0.006 +/-

0.013 0.025 pCi/g 2.3 0.0026 BMRC Final Status Survey 2014 12 22 S1-08 Silver-108M 0.454 +/-

0.087 0.062 pCi/g 8.2 0.0554 BMRC Final Status Survey 2014 12 22 S1-08 Strontium-90 0.118 +/-

0.085 0.162 pCi/g 1.7 0.0694 BMRC Final Status Survey 2014 12 22 S1-08 Tritium 1.21 +/-

1.58 2.65 pCi/g 110 0.0110 BMRC Final Status Survey 2014 12 22 S1-09 Americium-241 0.012 +/-

0.146 0.261 pCi/g 2.1 0.0057 0.1156 BMRC Final Status Survey 2014 12 22 S1-09 Carbon-14 0.478 +/-

0.364 0.578 pCi/g 12 0.0398 BMRC Final Status Survey 2014 12 22 S1-09 Cesium-137

-0.023 +/-

0.092 0.164 pCi/g 11

-0.0021 BMRC Final Status Survey 2014 12 22 S1-09 Cobalt-60 0.007 +/-

0.011 0.213 pCi/g 3.8 0.0018 BMRC Final Status Survey 2014 12 22 S1-09 Europium-152

-0.009 +/-

0.135 0.241 pCi/g 6.9

-0.0013 BMRC Final Status Survey 2014 12 22 S1-09 Europium-154

-0.001 +/-

0.175 0.151 pCi/g 8

-0.0001 BMRC Final Status Survey 2014 12 22 S1-09 Nickel-63 0.146 +/-

0.36 0.262 pCi/g 2100 0.0001 BMRC Final Status Survey 2014 12 22 S1-09 Plutonium-238 0.017 +/-

0.014 0.02 pCi/g 2.5 0.0068 BMRC Final Status Survey 2014 12 22 S1-09 Pu-239/240

-0.002 +/-

0.01 0.023 pCi/g 2.3

-0.0009 BMRC Final Status Survey 2014 12 22 S1-09 Silver-108M 0.289 +/-

0.067 0.054 pCi/g 8.2 0.0352 BMRC Final Status Survey 2014 12 22 S1-09 Strontium-90 0.0436 +/-

0.068 0.152 pCi/g 1.7 0.0256 BMRC Final Status Survey 2014 12 22 S1-09 Tritium 0.529 +/-

1.08 1.87 pCi/g 110 0.0048 BMRC Final Status Survey 2014 12 22 S1-10 Americium-241 0 +/-

0.011 0.727 pCi/g 2.1 0.0000 0.1239 BMRC Final Status Survey 2014 12 22 S1-10 Carbon-14 0.298 +/-

0.343 0.569 pCi/g 12 0.0248 BMRC Final Status Survey 2014 12 22 S1-10 Cesium-137 0.014 +/-

0.045 0.082 pCi/g 11 0.0013 BMRC Final Status Survey 2014 12 22 S1-10 Cobalt-60 0.024 +/-

0.045 0.126 pCi/g 3.8 0.0063 BMRC Final Status Survey 2014 12 22 S1-10 Europium-152 0.002 +/-

0.136 0.243 pCi/g 6.9 0.0003 BMRC Final Status Survey 2014 12 22 S1-10 Europium-154 0.026 +/-

0.105 0.182 pCi/g 8

0.0033 BMRC Final Status Survey 2014 12 22 S1-10 Nickel-63 0.658 +/-

1.054 2.534 pCi/g 2100 0.0003 BMRC Final Status Survey 2014 12 22 S1-10 Plutonium-238 0.015 +/-

0.021 0.035 pCi/g 2.5 0.0060 BMRC Final Status Survey 2014 12 22 S1-10 Pu-239/240

-0.005 +/-

0.021 0.043 pCi/g 2.3

-0.0022 BMRC Final Status Survey 2014 12 22 S1-10 Silver-108M 0.394 +/-

0.078 0.069 pCi/g 8.2 0.0480 BMRC Final Status Survey 2014 12 22 S1-10 Strontium-90 0.0346 +/-

0.096 0.227 pCi/g 1.7 0.0204 BMRC Final Status Survey 2014 12 22 S1-10 Tritium 1.69 +/-

1.89 3.12 pCi/g 110 0.0154 The Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 6 of 9 Appendix H1 - Class 1 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDC Units DCGL Fraction SOF BMRC Final Status Survey 2014 12 22 S1-11 Americium-241 0.145 +/-

0.301 0.511 pCi/g 2.1 0.0690 0.1378 BMRC Final Status Survey 2014 12 22 S1-11 Carbon-14 0.401 +/-

0.361 0.584 pCi/g 12 0.0334 BMRC Final Status Survey 2014 12 22 S1-11 Cesium-137 0.009 +/-

0.06 0.109 pCi/g 11 0.0008 BMRC Final Status Survey 2014 12 22 S1-11 Cobalt-60 0.013 +/-

0.06 0.112 pCi/g 3.8 0.0034 BMRC Final Status Survey 2014 12 22 S1-11 Europium-152

-0.058 +/-

0.179 0.307 pCi/g 6.9

-0.0084 BMRC Final Status Survey 2014 12 22 S1-11 Europium-154 0.011 +/-

0.107 0.187 pCi/g 8

0.0014 BMRC Final Status Survey 2014 12 22 S1-11 Nickel-63

-0.227 +/-

1.069 3.062 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 12 22 S1-11 Plutonium-238 0.016 +/-

0.018 0.029 pCi/g 2.5 0.0064 BMRC Final Status Survey 2014 12 22 S1-11 Pu-239/240 0.002 +/-

0.014 0.027 pCi/g 2.3 0.0009 BMRC Final Status Survey 2014 12 22 S1-11 Silver-108M 0.047 +/-

0.048 0.115 pCi/g 8.2 0.0057 BMRC Final Status Survey 2014 12 22 S1-11 Strontium-90 0.0419 +/-

0.063 0.141 pCi/g 1.7 0.0246 BMRC Final Status Survey 2014 12 22 S1-11 Tritium 0.0631 +/-

1.35 2.45 pCi/g 110 0.0006 BMRC Final Status Survey 2014 12 22 S1-11-dup Americium-241

-0.001 +/-

0.176 0.313 pCi/g 2.1

-0.0005 0.0617 BMRC Final Status Survey 2014 12 22 S1-11-dup Carbon-14 0.491 +/-

0.374 0.593 pCi/g 12 0.0409 BMRC Final Status Survey 2014 12 22 S1-11-dup Cesium-137 0 +/-

0.007 0.16 pCi/g 11 0.0000 BMRC Final Status Survey 2014 12 22 S1-11-dup Cobalt-60 0.015 +/-

0.078 0.162 pCi/g 3.8 0.0039 BMRC Final Status Survey 2014 12 22 S1-11-dup Europium-152 0.017 +/-

0.135 0.24 pCi/g 6.9 0.0025 BMRC Final Status Survey 2014 12 22 S1-11-dup Europium-154

-0.066 +/-

0.134 0.224 pCi/g 8

-0.0083 BMRC Final Status Survey 2014 12 22 S1-11-dup Nickel-63 0.854 +/-

1.201 3.288 pCi/g 2100 0.0004 BMRC Final Status Survey 2014 12 22 S1-11-dup Plutonium-238 0.002 +/-

0.019 0.036 pCi/g 2.5 0.0008 BMRC Final Status Survey 2014 12 22 S1-11-dup Pu-239/240

-0.007 +/-

0.011 0.026 pCi/g 2.3

-0.0030 BMRC Final Status Survey 2014 12 22 S1-11-dup Silver-108M 0.077 +/-

0.047 0.146 pCi/g 8.2 0.0094 BMRC Final Status Survey 2014 12 22 S1-11-dup Strontium-90 0.0113 +/-

0.086 0.211 pCi/g 1.7 0.0066 BMRC Final Status Survey 2014 12 22 S1-11-dup Tritium 0.974 +/-

1.78 3.06 pCi/g 110 0.0089 BMRC Final Status Survey 2014 12 22 S1-12 Americium-241 0.002 +/-

0.372 0.657 pCi/g 2.1 0.0010 0.0571 BMRC Final Status Survey 2014 12 22 S1-12 Carbon-14 0.151 +/-

0.334 0.576 pCi/g 12 0.0126 BMRC Final Status Survey 2014 12 22 S1-12 Cesium-137

-0.003 +/-

0.106 0.11 pCi/g 11

-0.0003 BMRC Final Status Survey 2014 12 22 S1-12 Cobalt-60

-0.009 +/-

0.346 0.172 pCi/g 3.8

-0.0024 BMRC Final Status Survey 2014 12 22 S1-12 Europium-152

-0.017 +/-

0.165 0.29 pCi/g 6.9

-0.0025 BMRC Final Status Survey 2014 12 22 S1-12 Europium-154 0.002 +/-

0.087 0.157 pCi/g 8

0.0003 BMRC Final Status Survey 2014 12 22 S1-12 Nickel-63 0 +/-

1.289 4.29 pCi/g 2100 0.0000 BMRC Final Status Survey 2014 12 22 S1-12 Plutonium-238 0.036 +/-

0.034 0.053 pCi/g 2.5 0.0144 BMRC Final Status Survey 2014 12 22 S1-12 Pu-239/240

-0.002 +/-

0.021 0.042 pCi/g 2.3

-0.0009 BMRC Final Status Survey 2014 12 22 S1-12 Silver-108M 0.111 +/-

0.051 0.131 pCi/g 8.2 0.0135 BMRC Final Status Survey 2014 12 22 S1-12 Strontium-90 0.0341 +/-

0.054 0.121 pCi/g 1.7 0.0201 BMRC Final Status Survey 2014 12 22 S1-12 Tritium 0.142 +/-

1.32 2.37 pCi/g 110 0.0013 BMRC Final Status Survey 2014 12 22 S1-13 Americium-241 0.089 +/-

0.157 0.263 pCi/g 2.1 0.0424 0.1805 BMRC Final Status Survey 2014 12 22 S1-13 Carbon-14 0.308 +/-

0.355 0.588 pCi/g 12 0.0257 BMRC Final Status Survey 2014 12 22 S1-13 Cesium-137 0.034 +/-

0.067 0.117 pCi/g 11 0.0031 BMRC Final Status Survey 2014 12 22 S1-13 Cobalt-60 0.011 +/-

0.089 0.178 pCi/g 3.8 0.0029 BMRC Final Status Survey 2014 12 22 S1-13 Europium-152

-0.033 +/-

0.147 0.256 pCi/g 6.9

-0.0048 BMRC Final Status Survey 2014 12 22 S1-13 Europium-154 0.034 +/-

0.089 0.155 pCi/g 8

0.0043 BMRC Final Status Survey 2014 12 22 S1-13 Nickel-63 1.665 +/-

1.265 3.254 pCi/g 2100 0.0008 BMRC Final Status Survey 2014 12 22 S1-13 Plutonium-238 0 +/-

0.019 0.038 pCi/g 2.5 0.0000 BMRC Final Status Survey 2014 12 22 S1-13 Pu-239/240

-0.002 +/-

0.019 0.039 pCi/g 2.3

-0.0009 BMRC Final Status Survey 2014 12 22 S1-13 Silver-108M 0.242 +/-

0.056 0.067 pCi/g 8.2 0.0295 BMRC Final Status Survey 2014 12 22 S1-13 Strontium-90

-0.0552 +/-

0.061 0.17 pCi/g 1.7

-0.0325 BMRC Final Status Survey 2014 12 22 S1-13 Tritium 12.1 +/-

2.5 1.96 pCi/g 110 0.1100 BMRC Final Status Survey 2014 12 22 S1-14 Americium-241

-0.001 +/-

0.307 0.347 pCi/g 2.1

-0.0005 0.0033 BMRC Final Status Survey 2014 12 22 S1-14 Carbon-14 0.206 +/-

0.342 0.582 pCi/g 12 0.0172 BMRC Final Status Survey 2014 12 22 S1-14 Cesium-137 0.026 +/-

0.055 0.096 pCi/g 11 0.0024 BMRC Final Status Survey 2014 12 22 S1-14 Cobalt-60 0.02 +/-

0.062 0.113 pCi/g 3.8 0.0053 BMRC Final Status Survey 2014 12 22 S1-14 Europium-152

-0.086 +/-

0.187 0.316 pCi/g 6.9

-0.0125 BMRC Final Status Survey 2014 12 22 S1-14 Europium-154 0.048 +/-

0.094 0.197 pCi/g 8

0.0060 BMRC Final Status Survey 2014 12 22 S1-14 Nickel-63 0.246 +/-

1.155 3.317 pCi/g 2100 0.0001 BMRC Final Status Survey 2014 12 22 S1-14 Plutonium-238 0.005 +/-

0.023 0.043 pCi/g 2.5 0.0020 The Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 7 of 9 Appendix H1 - Class 1 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDC Units DCGL Fraction SOF BMRC Final Status Survey 2014 12 22 S1-14 Pu-239/240

-0.016 +/-

0.02 0.046 pCi/g 2.3

-0.0070 BMRC Final Status Survey 2014 12 22 S1-14 Silver-108M 0.043 +/-

0.037 0.1 pCi/g 8.2 0.0052 BMRC Final Status Survey 2014 12 22 S1-14 Strontium-90

-0.0255 +/-

0.064 0.169 pCi/g 1.7

-0.0150 BMRC Final Status Survey 2014 12 22 S1-14 Tritium 0 +/-

0.873 1.59 pCi/g 110 0.0000 BMRC Final Status Survey 2014 12 22 S1-15 Americium-241

-0.131 +/-

0.209 0.347 pCi/g 2.1

-0.0624 0.2083 BMRC Final Status Survey 2014 12 22 S1-15 Carbon-14

-0.025 +/-

0.321 0.579 pCi/g 12

-0.0021 BMRC Final Status Survey 2014 12 22 S1-15 Cesium-137 0.105 +/-

0.089 0.133 pCi/g 11 0.0095 BMRC Final Status Survey 2014 12 22 S1-15 Cobalt-60 0.118 +/-

0.077 0.142 pCi/g 3.8 0.0311 BMRC Final Status Survey 2014 12 22 S1-15 Europium-152 0.07 +/-

0.092 0.289 pCi/g 6.9 0.0101 BMRC Final Status Survey 2014 12 22 S1-15 Europium-154 0.066 +/-

0.08 0.129 pCi/g 8

0.0083 BMRC Final Status Survey 2014 12 22 S1-15 Nickel-63 0.909 +/-

1.101 2.664 pCi/g 2100 0.0004 BMRC Final Status Survey 2014 12 22 S1-15 Plutonium-238 0.007 +/-

0.017 0.031 pCi/g 2.5 0.0028 BMRC Final Status Survey 2014 12 22 S1-15 Pu-239/240 0.002 +/-

0.01 0.021 pCi/g 2.3 0.0009 BMRC Final Status Survey 2014 12 22 S1-15 Silver-108M 0.835 +/-

0.171 0.097 pCi/g 8.2 0.1018 BMRC Final Status Survey 2014 12 22 S1-15 Strontium-90 0.148 +/-

0.096 0.179 pCi/g 1.7 0.0871 BMRC Final Status Survey 2014 12 22 S1-15 Tritium 2.29 +/-

1.57 2.42 pCi/g 110 0.0208 BMRC Final Status Survey 2014 12 23 S1-01 Americium-241

-0.034 +/-

0.167 0.292 pCi/g 2.1

-0.0162 0.3576 BMRC Final Status Survey 2014 12 23 S1-01 Carbon-14 0 +/-

0.317 0.568 pCi/g 12 0.0000 BMRC Final Status Survey 2014 12 23 S1-01 Cesium-137 0.018 +/-

0.099 0.179 pCi/g 11 0.0016 BMRC Final Status Survey 2014 12 23 S1-01 Cobalt-60 0.022 +/-

0.039 0.284 pCi/g 3.8 0.0058 BMRC Final Status Survey 2014 12 23 S1-01 Europium-152

-0.064 +/-

0.178 0.304 pCi/g 6.9

-0.0093 BMRC Final Status Survey 2014 12 23 S1-01 Europium-154 0.014 +/-

0.113 0.198 pCi/g 8

0.0018 BMRC Final Status Survey 2014 12 23 S1-01 Nickel-63 1.214 +/-

1.365 3.471 pCi/g 2100 0.0006 BMRC Final Status Survey 2014 12 23 S1-01 Plutonium-238 0.014 +/-

0.014 0.018 pCi/g 2.5 0.0056 BMRC Final Status Survey 2014 12 23 S1-01 Pu-239/240 0 +/-

0.015 0.032 pCi/g 2.3 0.0000 BMRC Final Status Survey 2014 12 23 S1-01 Silver-108M 0.979 +/-

0.208 0.052 pCi/g 8.2 0.1194 BMRC Final Status Survey 2014 12 23 S1-01 Strontium-90 0.266 +/-

0.088 0.11 pCi/g 1.7 0.1565 BMRC Final Status Survey 2014 12 23 S1-01 Tritium 10.1 +/-

2.59 2.72 pCi/g 110 0.0918 BMRC Final Status Survey 2014 12 23 S1-02 Americium-241

-0.165 +/-

0.397 0.671 pCi/g 2.1

-0.0786 0.1044 BMRC Final Status Survey 2014 12 23 S1-02 Carbon-14 0.127 +/-

0.343 0.597 pCi/g 12 0.0106 BMRC Final Status Survey 2014 12 23 S1-02 Cesium-137 0.016 +/-

0.054 0.096 pCi/g 11 0.0015 BMRC Final Status Survey 2014 12 23 S1-02 Cobalt-60 0.076 +/-

0.051 0.114 pCi/g 3.8 0.0200 BMRC Final Status Survey 2014 12 23 S1-02 Europium-152 0.116 +/-

0.151 0.251 pCi/g 6.9 0.0168 BMRC Final Status Survey 2014 12 23 S1-02 Europium-154

-0.013 +/-

0.103 0.181 pCi/g 8

-0.0016 BMRC Final Status Survey 2014 12 23 S1-02 Nickel-63 0.508 +/-

1.285 3.327 pCi/g 2100 0.0002 BMRC Final Status Survey 2014 12 23 S1-02 Plutonium-238 0.008 +/-

0.028 0.05 pCi/g 2.5 0.0032 BMRC Final Status Survey 2014 12 23 S1-02 Pu-239/240 0.002 +/-

0.012 0.025 pCi/g 2.3 0.0009 BMRC Final Status Survey 2014 12 23 S1-02 Silver-108M 0.57 +/-

0.101 0.076 pCi/g 8.2 0.0695 BMRC Final Status Survey 2014 12 23 S1-02 Strontium-90 0.104 +/-

0.099 0.207 pCi/g 1.7 0.0612 BMRC Final Status Survey 2014 12 23 S1-02 Tritium 0.0778 +/-

1.37 2.47 pCi/g 110 0.0007 BMRC Final Status Survey 2014 12 23 S1-03 Americium-241

-0.001 +/-

0.199 0.349 pCi/g 2.1

-0.0005 0.1263 BMRC Final Status Survey 2014 12 23 S1-03 Carbon-14 0.33 +/-

0.366 0.606 pCi/g 12 0.0275 BMRC Final Status Survey 2014 12 23 S1-03 Cesium-137 0 +/-

0.007 0.177 pCi/g 11 0.0000 BMRC Final Status Survey 2014 12 23 S1-03 Cobalt-60 0.061 +/-

0.114 0.204 pCi/g 3.8 0.0161 BMRC Final Status Survey 2014 12 23 S1-03 Europium-152 0.048 +/-

0.124 0.215 pCi/g 6.9 0.0070 BMRC Final Status Survey 2014 12 23 S1-03 Europium-154

-0.021 +/-

0.111 0.187 pCi/g 8

-0.0026 BMRC Final Status Survey 2014 12 23 S1-03 Nickel-63

-1.459 +/-

1.221 3.761 pCi/g 2100

-0.0007 BMRC Final Status Survey 2014 12 23 S1-03 Plutonium-238 0.016 +/-

0.026 0.044 pCi/g 2.5 0.0064 BMRC Final Status Survey 2014 12 23 S1-03 Pu-239/240

-0.015 +/-

0.013 0.032 pCi/g 2.3

-0.0065 BMRC Final Status Survey 2014 12 23 S1-03 Silver-108M 0.474 +/-

0.127 0.125 pCi/g 8.2 0.0578 BMRC Final Status Survey 2014 12 23 S1-03 Strontium-90

-0.0446 +/-

0.082 0.218 pCi/g 1.7

-0.0262 BMRC Final Status Survey 2014 12 23 S1-03 Tritium 5.29 +/-

2.11 2.83 pCi/g 110 0.0481 BMRC Final Status Survey 2014 12 23 S1-04 Americium-241

-0.082 +/-

0.401 0.688 pCi/g 2.1

-0.0390 0.0917 BMRC Final Status Survey 2014 12 23 S1-04 Carbon-14 0.168 +/-

0.345 0.594 pCi/g 12 0.0140 BMRC Final Status Survey 2014 12 23 S1-04 Cesium-137 0.002 +/-

0.066 0.121 pCi/g 11 0.0002 BMRC Final Status Survey 2014 12 23 S1-04 Cobalt-60 0.017 +/-

0.076 0.138 pCi/g 3.8 0.0045 The Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 8 of 9 Appendix H1 - Class 1 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDC Units DCGL Fraction SOF BMRC Final Status Survey 2014 12 23 S1-04 Europium-152

-0.096 +/-

0.181 0.304 pCi/g 6.9

-0.0139 BMRC Final Status Survey 2014 12 23 S1-04 Europium-154 0.031 +/-

0.104 0.18 pCi/g 8

0.0039 BMRC Final Status Survey 2014 12 23 S1-04 Nickel-63

-0.5 +/-

1.148 3.025 pCi/g 2100

-0.0002 BMRC Final Status Survey 2014 12 23 S1-04 Plutonium-238 0.029 +/-

0.037 0.061 pCi/g 2.5 0.0116 BMRC Final Status Survey 2014 12 23 S1-04 Pu-239/240 0.006 +/-

0.018 0.033 pCi/g 2.3 0.0026 BMRC Final Status Survey 2014 12 23 S1-04 Silver-108M 0.455 +/-

0.087 0.09 pCi/g 8.2 0.0555 BMRC Final Status Survey 2014 12 23 S1-04 Strontium-90 0.0855 +/-

0.076 0.157 pCi/g 1.7 0.0503 BMRC Final Status Survey 2014 12 23 S1-04 Tritium 0.261 +/-

1.86 3.32 pCi/g 110 0.0024 BMRC Final Status Survey 2014 12 23 S1-05 Americium-241 0.061 +/-

0.162 0.277 pCi/g 2.1 0.0290 0.3591 BMRC Final Status Survey 2014 12 23 S1-05 Carbon-14 0.323 +/-

0.359 0.593 pCi/g 12 0.0269 BMRC Final Status Survey 2014 12 23 S1-05 Cesium-137 0.029 +/-

0.084 0.148 pCi/g 11 0.0026 BMRC Final Status Survey 2014 12 23 S1-05 Cobalt-60 0.054 +/-

0.088 0.205 pCi/g 3.8 0.0142 BMRC Final Status Survey 2014 12 23 S1-05 Europium-152

-0.026 +/-

0.183 0.318 pCi/g 6.9

-0.0038 BMRC Final Status Survey 2014 12 23 S1-05 Europium-154 0.035 +/-

0.134 0.23 pCi/g 8

0.0044 BMRC Final Status Survey 2014 12 23 S1-05 Nickel-63

-0.331 +/-

1.465 4.731 pCi/g 2100

-0.0002 BMRC Final Status Survey 2014 12 23 S1-05 Plutonium-238 0.013 +/-

0.029 0.051 pCi/g 2.5 0.0052 BMRC Final Status Survey 2014 12 23 S1-05 Pu-239/240

-0.013 +/-

0.017 0.038 pCi/g 2.3

-0.0057 BMRC Final Status Survey 2014 12 23 S1-05 Silver-108M 0.677 +/-

0.12 0.052 pCi/g 8.2 0.0826 BMRC Final Status Survey 2014 12 23 S1-05 Strontium-90 0.34 +/-

0.128 0.186 pCi/g 1.7 0.2000 BMRC Final Status Survey 2014 12 23 S1-05 Tritium 0.408 +/-

1.47 2.59 pCi/g 110 0.0037 The Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 9 of 9 Appendix H1 - Class 1 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BMRC Final Status Survey 2014 10 29 S2-01 Americium-241

-0.008 +/-

0.173 0.308 pCi/g 2.1

-0.0038

-0.0377 BMRC Final Status Survey 2014 10 29 S2-01 Carbon-14

-0.063 +/-

0.434 0.794 pCi/g 12

-0.0053 BMRC Final Status Survey 2014 10 29 S2-01 Cesium-137

-0.024 +/-

0.103 0.161 pCi/g 11

-0.0022 BMRC Final Status Survey 2014 10 29 S2-01 Cobalt-60

-0.016 +/-

0.626 0.092 pCi/g 3.8

-0.0042 BMRC Final Status Survey 2014 10 29 S2-01 Europium-152 0.011 +/-

0.142 0.256 pCi/g 6.9 0.0016 BMRC Final Status Survey 2014 10 29 S2-01 Europium-154

-0.022 +/-

0.11 0.193 pCi/g 8

-0.0028 BMRC Final Status Survey 2014 10 29 S2-01 Nickel-63 1.575 +/-

1.514 4.418 pCi/g 2100 0.0008 BMRC Final Status Survey 2014 10 29 S2-01 Plutonium-238

-0.008 +/-

0.021 0.045 pCi/g 2.5

-0.0032 BMRC Final Status Survey 2014 10 29 S2-01 Pu-239/240 0.005 +/-

0.012 0.024 pCi/g 2.3 0.0022 BMRC Final Status Survey 2014 10 29 S2-01 Silver-108M 0 +/-

0.086 0.162 pCi/g 8.2 0.0000 BMRC Final Status Survey 2014 10 29 S2-01 Strontium-90

-0.0399 +/-

0.092 0.242 pCi/g 1.7

-0.0235 BMRC Final Status Survey 2014 10 29 S2-01 Tritium 0.293 +/-

0.648 1.11 pCi/g 110 0.0027 BMRC Final Status Survey 2014 10 29 S2-02 Americium-241

-0.004 +/-

1.394 0.582 pCi/g 2.1

-0.0019 0.0409 BMRC Final Status Survey 2014 10 29 S2-02 Carbon-14 0.371 +/-

0.467 0.78 pCi/g 12 0.0309 BMRC Final Status Survey 2014 10 29 S2-02 Cesium-137 0 +/-

0.051 0.096 pCi/g 11 0.0000 BMRC Final Status Survey 2014 10 29 S2-02 Cobalt-60 0.013 +/-

0.06 0.115 pCi/g 3.8 0.0034 BMRC Final Status Survey 2014 10 29 S2-02 Europium-152

-0.072 +/-

0.168 0.284 pCi/g 6.9

-0.0104 BMRC Final Status Survey 2014 10 29 S2-02 Europium-154 0.021 +/-

0.026 0.212 pCi/g 8

0.0026 BMRC Final Status Survey 2014 10 29 S2-02 Nickel-63 0.826 +/-

1.423 4.171 pCi/g 2100 0.0004 BMRC Final Status Survey 2014 10 29 S2-02 Plutonium-238 0.01 +/-

0.02 0.038 pCi/g 2.5 0.0040 BMRC Final Status Survey 2014 10 29 S2-02 Pu-239/240 0.007 +/-

0.011 0.021 pCi/g 2.3 0.0030 BMRC Final Status Survey 2014 10 29 S2-02 Silver-108M 0.012 +/-

0.024 0.171 pCi/g 8.2 0.0015 BMRC Final Status Survey 2014 10 29 S2-02 Strontium-90 0.011 +/-

0.102 0.241 pCi/g 1.7 0.0065 BMRC Final Status Survey 2014 10 29 S2-02 Tritium 0.101 +/-

0.954 1.68 pCi/g 110 0.0009 BMRC Final Status Survey 2014 10 30 S2-01 Americium-241 0.012 +/-

0.151 0.267 pCi/g 2.1 0.0057 0.0120 BMRC Final Status Survey 2014 10 30 S2-01 Carbon-14

-0.08 +/-

0.411 0.756 pCi/g 12

-0.0067 BMRC Final Status Survey 2014 10 30 S2-01 Cesium-137

-0.002 +/-

0.067 0.102 pCi/g 11

-0.0002 BMRC Final Status Survey 2014 10 30 S2-01 Cobalt-60

-0.014 +/-

0.547 0.08 pCi/g 3.8

-0.0037 BMRC Final Status Survey 2014 10 30 S2-01 Europium-152

-0.079 +/-

0.192 0.292 pCi/g 6.9

-0.0114 BMRC Final Status Survey 2014 10 30 S2-01 Europium-154 0.051 +/-

0.094 0.159 pCi/g 8

0.0064 BMRC Final Status Survey 2014 10 30 S2-01 Nickel-63 0 +/-

1.203 3.244 pCi/g 2100 0.0000 BMRC Final Status Survey 2014 10 30 S2-01 Plutonium-238 0.001 +/-

0.016 0.035 pCi/g 2.5 0.0004 BMRC Final Status Survey 2014 10 30 S2-01 Pu-239/240 0.006 +/-

0.01 0.02 pCi/g 2.3 0.0026 BMRC Final Status Survey 2014 10 30 S2-01 Silver-108M 0.002 +/-

0.072 0.137 pCi/g 8.2 0.0002 BMRC Final Status Survey 2014 10 30 S2-01 Strontium-90 0.034 +/-

0.104 0.244 pCi/g 1.7 0.0200 BMRC Final Status Survey 2014 10 30 S2-01 Tritium

-0.151 +/-

0.876 1.57 pCi/g 110

-0.0014 BMRC Final Status Survey 2014 10 30 S2-02 Americium-241

-0.002 +/-

0.1 0.671 pCi/g 2.1

-0.0010 0.0002 BMRC Final Status Survey 2014 10 30 S2-02 Carbon-14

-0.302 +/-

0.425 0.816 pCi/g 12

-0.0252 BMRC Final Status Survey 2014 10 30 S2-02 Cesium-137 0.024 +/-

0.06 0.104 pCi/g 11 0.0022 BMRC Final Status Survey 2014 10 30 S2-02 Cobalt-60 0.006 +/-

0.063 0.123 pCi/g 3.8 0.0016 BMRC Final Status Survey 2014 10 30 S2-02 Europium-152 0 +/-

0.005 0.328 pCi/g 6.9 0.0000 BMRC Final Status Survey 2014 10 30 S2-02 Europium-154 0.004 +/-

0.102 0.181 pCi/g 8

0.0005 BMRC Final Status Survey 2014 10 30 S2-02 Nickel-63 0.549 +/-

1.262 3.325 pCi/g 2100 0.0003 BMRC Final Status Survey 2014 10 30 S2-02 Plutonium-238

-0.004 +/-

0.02 0.043 pCi/g 2.5

-0.0016 BMRC Final Status Survey 2014 10 30 S2-02 Pu-239/240 0 +/-

0.01 0.024 pCi/g 2.3 0.0000 BMRC Final Status Survey 2014 10 30 S2-02 Silver-108M

-0.03 +/-

0.081 0.14 pCi/g 8.2

-0.0037 BMRC Final Status Survey 2014 10 30 S2-02 Strontium-90 0.0426 +/-

0.099 0.23 pCi/g 1.7 0.0251 BMRC Final Status Survey 2014 10 30 S2-02 Tritium 0.225 +/-

0.545 0.938 pCi/g 110 0.0020 BMRC Final Status Survey 2014 11 01 S2-01 Americium-241 0.01 +/-

0.171 0.301 pCi/g 2.1 0.0048

-0.0113 BMRC Final Status Survey 2014 11 01 S2-01 Carbon-14

-0.104 +/-

0.426 0.787 pCi/g 12

-0.0087 BMRC Final Status Survey 2014 11 01 S2-01 Cesium-137

-0.002 +/-

0.068 0.187 pCi/g 11

-0.0002 BMRC Final Status Survey 2014 11 01 S2-01 Cobalt-60

-0.001 +/-

0.084 0.15 pCi/g 3.8

-0.0003 BMRC Final Status Survey 2014 11 01 S2-01 Europium-152

-0.021 +/-

0.233 0.265 pCi/g 6.9

-0.0030 BMRC Final Status Survey 2014 11 01 S2-01 Europium-154 0.012 +/-

0.09 0.159 pCi/g 8

0.0015 BMRC Final Status Survey 2014 11 01 S2-01 Nickel-63

-0.927 +/-

1.181 3.512 pCi/g 2100

-0.0004 BMRC Final Status Survey 2014 11 01 S2-01 Plutonium-238

-0.03 +/-

0.033 0.074 pCi/g 2.5

-0.0120 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 1 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BMRC Final Status Survey 2014 11 01 S2-01 Pu-239/240 0.005 +/-

0.011 0.022 pCi/g 2.3 0.0022 BMRC Final Status Survey 2014 11 01 S2-01 Silver-108M

-0.007 +/-

0.086 0.158 pCi/g 8.2

-0.0009 BMRC Final Status Survey 2014 11 01 S2-01 Strontium-90

-0.0003 +/-

0.1 0.245 pCi/g 1.7

-0.0002 BMRC Final Status Survey 2014 11 01 S2-01 Tritium 0.646 +/-

0.739 1.23 pCi/g 110 0.0059 BMRC Final Status Survey 2014 11 01 S2-02 Americium-241 0.187 +/-

0.375 0.634 pCi/g 2.1 0.0890 0.1016 BMRC Final Status Survey 2014 11 01 S2-02 Carbon-14 0.211 +/-

0.462 0.8 pCi/g 12 0.0176 BMRC Final Status Survey 2014 11 01 S2-02 Cesium-137 0.035 +/-

0.063 0.107 pCi/g 11 0.0032 BMRC Final Status Survey 2014 11 01 S2-02 Cobalt-60

-0.014 +/-

0.556 0.059 pCi/g 3.8

-0.0037 BMRC Final Status Survey 2014 11 01 S2-02 Europium-152 0.023 +/-

0.144 0.254 pCi/g 6.9 0.0033 BMRC Final Status Survey 2014 11 01 S2-02 Europium-154

-0.019 +/-

0.109 0.19 pCi/g 8

-0.0024 BMRC Final Status Survey 2014 11 01 S2-02 Nickel-63

-1.029 +/-

1.15 3.389 pCi/g 2100

-0.0005 BMRC Final Status Survey 2014 11 01 S2-02 Plutonium-238 0.014 +/-

0.024 0.045 pCi/g 2.5 0.0056 BMRC Final Status Survey 2014 11 01 S2-02 Pu-239/240

-0.002 +/-

0.011 0.027 pCi/g 2.3

-0.0009 BMRC Final Status Survey 2014 11 01 S2-02 Silver-108M

-0.013 +/-

0.078 0.138 pCi/g 8.2

-0.0016 BMRC Final Status Survey 2014 11 01 S2-02 Strontium-90

-0.0093 +/-

0.095 0.239 pCi/g 1.7

-0.0055 BMRC Final Status Survey 2014 11 01 S2-02 Tritium

-0.293 +/-

0.746 1.36 pCi/g 110

-0.0027 BMRC Final Status Survey 2014 11 01 S2-03 Americium-241 0.085 +/-

0.157 0.264 pCi/g 2.1 0.0405 0.0945 BMRC Final Status Survey 2014 11 01 S2-03 Carbon-14

-0.209 +/-

0.418 0.789 pCi/g 12

-0.0174 BMRC Final Status Survey 2014 11 01 S2-03 Cesium-137 0.057 +/-

0.081 0.136 pCi/g 11 0.0052 BMRC Final Status Survey 2014 11 01 S2-03 Cobalt-60

-0.004 +/-

0.133 0.15 pCi/g 3.8

-0.0011 BMRC Final Status Survey 2014 11 01 S2-03 Europium-152 0.034 +/-

0.143 0.25 pCi/g 6.9 0.0049 BMRC Final Status Survey 2014 11 01 S2-03 Europium-154

-0.004 +/-

0.095 0.169 pCi/g 8

-0.0005 BMRC Final Status Survey 2014 11 01 S2-03 Nickel-63 0.561 +/-

1.191 2.931 pCi/g 2100 0.0003 BMRC Final Status Survey 2014 11 01 S2-03 Plutonium-238 0.027 +/-

0.024 0.04 pCi/g 2.5 0.0108 BMRC Final Status Survey 2014 11 01 S2-03 Pu-239/240 0.004 +/-

0.008 0.015 pCi/g 2.3 0.0017 BMRC Final Status Survey 2014 11 01 S2-03 Silver-108M 0 +/-

0.141 0.251 pCi/g 8.2 0.0000 BMRC Final Status Survey 2014 11 01 S2-03 Strontium-90 0.084 +/-

0.104 0.227 pCi/g 1.7 0.0494 BMRC Final Status Survey 2014 11 01 S2-03 Tritium 0.0703 +/-

0.832 1.47 pCi/g 110 0.0006 BMRC Final Status Survey 2014 11 01 S2-04 Americium-241

-0.073 +/-

0.365 0.596 pCi/g 2.1

-0.0348

-0.0068 BMRC Final Status Survey 2014 11 01 S2-04 Carbon-14

-0.083 +/-

0.427 0.786 pCi/g 12

-0.0069 BMRC Final Status Survey 2014 11 01 S2-04 Cesium-137 0.012 +/-

0.057 0.103 pCi/g 11 0.0011 BMRC Final Status Survey 2014 11 01 S2-04 Cobalt-60 0.019 +/-

0.048 0.09 pCi/g 3.8 0.0050 BMRC Final Status Survey 2014 11 01 S2-04 Europium-152 0 +/-

0.004 0.316 pCi/g 6.9 0.0000 BMRC Final Status Survey 2014 11 01 S2-04 Europium-154 0.074 +/-

0.067 0.104 pCi/g 8

0.0093 BMRC Final Status Survey 2014 11 01 S2-04 Nickel-63

-0.19 +/-

1.116 2.871 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 11 01 S2-04 Plutonium-238

-0.009 +/-

0.019 0.042 pCi/g 2.5

-0.0036 BMRC Final Status Survey 2014 11 01 S2-04 Pu-239/240

-0.003 +/-

0.009 0.023 pCi/g 2.3

-0.0013 BMRC Final Status Survey 2014 11 01 S2-04 Silver-108M

-0.015 +/-

0.059 0.104 pCi/g 8.2

-0.0018 BMRC Final Status Survey 2014 11 01 S2-04 Strontium-90

-0.0112 +/-

0.09 0.228 pCi/g 1.7

-0.0066 BMRC Final Status Survey 2014 11 01 S2-04 Tritium 3.62 +/-

0.942 1.08 pCi/g 110 0.0329 BMRC Final Status Survey 2014 11 01 S2-05 Americium-241 0 +/-

0.189 0.333 pCi/g 2.1 0.0000 0.0537 BMRC Final Status Survey 2014 11 01 S2-05 Carbon-14 0.759 +/-

0.504 0.776 pCi/g 12 0.0633 BMRC Final Status Survey 2014 11 01 S2-05 Cesium-137 0.003 +/-

0.082 0.154 pCi/g 11 0.0003 BMRC Final Status Survey 2014 11 01 S2-05 Cobalt-60

-0.014 +/-

0.56 0.212 pCi/g 3.8

-0.0037 BMRC Final Status Survey 2014 11 01 S2-05 Europium-152

-0.006 +/-

1.337 0.275 pCi/g 6.9

-0.0009 BMRC Final Status Survey 2014 11 01 S2-05 Europium-154 0.002 +/-

0.11 0.194 pCi/g 8

0.0003 BMRC Final Status Survey 2014 11 01 S2-05 Nickel-63 0 +/-

1.262 3.569 pCi/g 2100 0.0000 BMRC Final Status Survey 2014 11 01 S2-05 Plutonium-238 0.012 +/-

0.022 0.042 pCi/g 2.5 0.0048 BMRC Final Status Survey 2014 11 01 S2-05 Pu-239/240 0.011 +/-

0.014 0.024 pCi/g 2.3 0.0048 BMRC Final Status Survey 2014 11 01 S2-05 Silver-108M 0.001 +/-

0.08 0.151 pCi/g 8.2 0.0001 BMRC Final Status Survey 2014 11 01 S2-05 Strontium-90

-0.0299 +/-

0.07 0.189 pCi/g 1.7

-0.0176 BMRC Final Status Survey 2014 11 01 S2-05 Tritium 0.264 +/-

0.75 1.3 pCi/g 110 0.0024 BMRC Final Status Survey 2014 11 01 S2-06 Americium-241

-0.121 +/-

0.37 0.612 pCi/g 2.1

-0.0576

-0.0745 BMRC Final Status Survey 2014 11 01 S2-06 Carbon-14

-0.063 +/-

0.436 0.799 pCi/g 12

-0.0053 BMRC Final Status Survey 2014 11 01 S2-06 Cesium-137 0.017 +/-

0.058 0.105 pCi/g 11 0.0015 BMRC Final Status Survey 2014 11 01 S2-06 Cobalt-60

-0.017 +/-

1.565 0.147 pCi/g 3.8

-0.0045 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 2 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BMRC Final Status Survey 2014 11 01 S2-06 Europium-152

-0.059 +/-

0.168 0.288 pCi/g 6.9

-0.0086 BMRC Final Status Survey 2014 11 01 S2-06 Europium-154 0.002 +/-

0.095 0.171 pCi/g 8

0.0003 BMRC Final Status Survey 2014 11 01 S2-06 Nickel-63 0.334 +/-

1.296 3.617 pCi/g 2100 0.0002 BMRC Final Status Survey 2014 11 01 S2-06 Plutonium-238 0.013 +/-

0.022 0.041 pCi/g 2.5 0.0052 BMRC Final Status Survey 2014 11 01 S2-06 Pu-239/240

-0.007 +/-

0.01 0.029 pCi/g 2.3

-0.0030 BMRC Final Status Survey 2014 11 01 S2-06 Silver-108M

-0.024 +/-

0.086 0.151 pCi/g 8.2

-0.0029 BMRC Final Status Survey 2014 11 01 S2-06 Strontium-90

-0.0059 +/-

0.088 0.222 pCi/g 1.7

-0.0035 BMRC Final Status Survey 2014 11 01 S2-06 Tritium 0.403 +/-

1.03 1.77 pCi/g 110 0.0037 BMRC Final Status Survey 2014 11 01 S2-07 Americium-241 0.048 +/-

0.214 0.383 pCi/g 2.1 0.0229 0.0466 BMRC Final Status Survey 2014 11 01 S2-07 Carbon-14

-0.202 +/-

0.405 0.765 pCi/g 12

-0.0168 BMRC Final Status Survey 2014 11 01 S2-07 Cesium-137 0.045 +/-

0.063 0.104 pCi/g 11 0.0041 BMRC Final Status Survey 2014 11 01 S2-07 Cobalt-60 0.026 +/-

0.079 0.144 pCi/g 3.8 0.0068 BMRC Final Status Survey 2014 11 01 S2-07 Europium-152

-0.074 +/-

0.16 0.271 pCi/g 6.9

-0.0107 BMRC Final Status Survey 2014 11 01 S2-07 Europium-154

-0.03 +/-

0.096 0.165 pCi/g 8

-0.0038 BMRC Final Status Survey 2014 11 01 S2-07 Nickel-63 0.594 +/-

1.226 3.105 pCi/g 2100 0.0003 BMRC Final Status Survey 2014 11 01 S2-07 Plutonium-238 0.013 +/-

0.021 0.038 pCi/g 2.5 0.0052 BMRC Final Status Survey 2014 11 01 S2-07 Pu-239/240 0.01 +/-

0.011 0.018 pCi/g 2.3 0.0043 BMRC Final Status Survey 2014 11 01 S2-07 Silver-108M

-0.019 +/-

0.074 0.13 pCi/g 8.2

-0.0023 BMRC Final Status Survey 2014 11 01 S2-07 Strontium-90 0.064 +/-

0.105 0.237 pCi/g 1.7 0.0376 BMRC Final Status Survey 2014 11 01 S2-07 Tritium

-0.113 +/-

0.878 1.57 pCi/g 110

-0.0010 BMRC Final Status Survey 2014 11 01 S2-08 Americium-241 0.097 +/-

0.145 0.241 pCi/g 2.1 0.0462 0.0807 BMRC Final Status Survey 2014 11 01 S2-08 Carbon-14

-0.038 +/-

0.396 0.721 pCi/g 12

-0.0032 BMRC Final Status Survey 2014 11 01 S2-08 Cesium-137 0.018 +/-

0.063 0.117 pCi/g 11 0.0016 BMRC Final Status Survey 2014 11 01 S2-08 Cobalt-60 0.049 +/-

0.077 0.138 pCi/g 3.8 0.0129 BMRC Final Status Survey 2014 11 01 S2-08 Europium-152

-0.012 +/-

0.339 0.251 pCi/g 6.9

-0.0017 BMRC Final Status Survey 2014 11 01 S2-08 Europium-154 0.003 +/-

0.1 0.179 pCi/g 8

0.0004 BMRC Final Status Survey 2014 11 01 S2-08 Nickel-63

-0.231 +/-

1.232 3.498 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 11 01 S2-08 Plutonium-238

-0.024 +/-

0.027 0.064 pCi/g 2.5

-0.0096 BMRC Final Status Survey 2014 11 01 S2-08 Pu-239/240

-0.013 +/-

0.012 0.037 pCi/g 2.3

-0.0057 BMRC Final Status Survey 2014 11 01 S2-08 Silver-108M

-0.064 +/-

0.123 0.209 pCi/g 8.2

-0.0078 BMRC Final Status Survey 2014 11 01 S2-08 Strontium-90 0.064 +/-

0.105 0.236 pCi/g 1.7 0.0376 BMRC Final Status Survey 2014 11 01 S2-08 Tritium 1.1 +/-

0.856 1.37 pCi/g 110 0.0100 BMRC Final Status Survey 2014 11 03 S2-01 Americium-241

-0.205 +/-

0.394 0.648 pCi/g 2.1

-0.0976

-0.0064 BMRC Final Status Survey 2014 11 03 S2-01 Carbon-14 0.283 +/-

0.45 0.765 pCi/g 12 0.0236 BMRC Final Status Survey 2014 11 03 S2-01 Cesium-137

-0.001 +/-

0.055 0.102 pCi/g 11

-0.0001 BMRC Final Status Survey 2014 11 03 S2-01 Cobalt-60

-0.022 +/-

0.238 0.124 pCi/g 3.8

-0.0058 BMRC Final Status Survey 2014 11 03 S2-01 Europium-152 0.118 +/-

0.155 0.254 pCi/g 6.9 0.0171 BMRC Final Status Survey 2014 11 03 S2-01 Europium-154

-0.038 +/-

0.128 0.219 pCi/g 8

-0.0048 BMRC Final Status Survey 2014 11 03 S2-01 Nickel-63 1.689 +/-

1.414 3.709 pCi/g 2100 0.0008 BMRC Final Status Survey 2014 11 03 S2-01 Plutonium-238 0.006 +/-

0.016 0.032 pCi/g 2.5 0.0024 BMRC Final Status Survey 2014 11 03 S2-01 Pu-239/240 0.009 +/-

0.013 0.024 pCi/g 2.3 0.0039 BMRC Final Status Survey 2014 11 03 S2-01 Silver-108M 0 +/-

0.068 0.123 pCi/g 8.2 0.0000 BMRC Final Status Survey 2014 11 03 S2-01 Strontium-90 0.084 +/-

0.107 0.233 pCi/g 1.7 0.0494 BMRC Final Status Survey 2014 11 03 S2-01 Tritium 0.506 +/-

1.12 1.92 pCi/g 110 0.0046 BMRC Final Status Survey 2014 11 03 S2-02 Americium-241

-0.047 +/-

0.189 0.325 pCi/g 2.1

-0.0224

-0.0118 BMRC Final Status Survey 2014 11 03 S2-02 Carbon-14

-0.208 +/-

0.417 0.788 pCi/g 12

-0.0173 BMRC Final Status Survey 2014 11 03 S2-02 Cesium-137

-0.021 +/-

0.107 0.164 pCi/g 11

-0.0019 BMRC Final Status Survey 2014 11 03 S2-02 Cobalt-60 0.028 +/-

0.096 0.179 pCi/g 3.8 0.0074 BMRC Final Status Survey 2014 11 03 S2-02 Europium-152 0.125 +/-

0.139 0.225 pCi/g 6.9 0.0181 BMRC Final Status Survey 2014 11 03 S2-02 Europium-154

-0.05 +/-

0.123 0.209 pCi/g 8

-0.0063 BMRC Final Status Survey 2014 11 03 S2-02 Nickel-63 1.406 +/-

1.367 3.549 pCi/g 2100 0.0007 BMRC Final Status Survey 2014 11 03 S2-02 Plutonium-238 0.01 +/-

0.022 0.043 pCi/g 2.5 0.0040 BMRC Final Status Survey 2014 11 03 S2-02 Pu-239/240

-0.001 +/-

0.01 0.02 pCi/g 2.3

-0.0004 BMRC Final Status Survey 2014 11 03 S2-02 Silver-108M 0 +/-

0.059 0.116 pCi/g 8.2 0.0000 BMRC Final Status Survey 2014 11 03 S2-02 Strontium-90 0.008 +/-

0.101 0.248 pCi/g 1.7 0.0047 BMRC Final Status Survey 2014 11 03 S2-02 Tritium 0.179 +/-

0.95 1.66 pCi/g 110 0.0016 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 3 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BMRC Final Status Survey 2014 11 03 S2-03 Americium-241

-0.139 +/-

0.417 0.689 pCi/g 2.1

-0.0662

-0.0815 BMRC Final Status Survey 2014 11 03 S2-03 Carbon-14

-0.064 +/-

0.44 0.805 pCi/g 12

-0.0053 BMRC Final Status Survey 2014 11 03 S2-03 Cesium-137

-0.015 +/-

0.059 0.105 pCi/g 11

-0.0014 BMRC Final Status Survey 2014 11 03 S2-03 Cobalt-60

-0.01 +/-

0.612 0.093 pCi/g 3.8

-0.0026 BMRC Final Status Survey 2014 11 03 S2-03 Europium-152

-0.005 +/-

0.14 0.238 pCi/g 6.9

-0.0007 BMRC Final Status Survey 2014 11 03 S2-03 Europium-154

-0.017 +/-

0.105 0.182 pCi/g 8

-0.0021 BMRC Final Status Survey 2014 11 03 S2-03 Nickel-63 0.233 +/-

1.274 3.534 pCi/g 2100 0.0001 BMRC Final Status Survey 2014 11 03 S2-03 Plutonium-238

-0.003 +/-

0.019 0.044 pCi/g 2.5

-0.0012 BMRC Final Status Survey 2014 11 03 S2-03 Pu-239/240 0 +/-

0.012 0.008 pCi/g 2.3 0.0000 BMRC Final Status Survey 2014 11 03 S2-03 Silver-108M 0.008 +/-

0.055 0.1 pCi/g 8.2 0.0010 BMRC Final Status Survey 2014 11 03 S2-03 Strontium-90

-0.0004 +/-

0.079 0.2 pCi/g 1.7

-0.0002 BMRC Final Status Survey 2014 11 03 S2-03 Tritium

-0.308 +/-

0.671 1.23 pCi/g 110

-0.0028 BMRC Final Status Survey 2014 11 03 S2-04 Americium-241

-0.034 +/-

0.193 0.336 pCi/g 2.1

-0.0162 0.0409 BMRC Final Status Survey 2014 11 03 S2-04 Carbon-14 0.517 +/-

0.483 0.783 pCi/g 12 0.0431 BMRC Final Status Survey 2014 11 03 S2-04 Cesium-137 0.066 +/-

0.08 0.129 pCi/g 11 0.0060 BMRC Final Status Survey 2014 11 03 S2-04 Cobalt-60

-0.014 +/-

2.978 0.107 pCi/g 3.8

-0.0037 BMRC Final Status Survey 2014 11 03 S2-04 Europium-152

-0.005 +/-

0.198 0.309 pCi/g 6.9

-0.0007 BMRC Final Status Survey 2014 11 03 S2-04 Europium-154 0.037 +/-

0.073 0.126 pCi/g 8

0.0046 BMRC Final Status Survey 2014 11 03 S2-04 Nickel-63

-0.256 +/-

1.236 3.531 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 11 03 S2-04 Plutonium-238 0.007 +/-

0.023 0.045 pCi/g 2.5 0.0028 BMRC Final Status Survey 2014 11 03 S2-04 Pu-239/240 0.004 +/-

0.014 0.031 pCi/g 2.3 0.0017 BMRC Final Status Survey 2014 11 03 S2-04 Silver-108M

-0.035 +/-

0.097 0.171 pCi/g 8.2

-0.0043 BMRC Final Status Survey 2014 11 03 S2-04 Strontium-90 0.0117 +/-

0.081 0.198 pCi/g 1.7 0.0069 BMRC Final Status Survey 2014 11 03 S2-04 Tritium 0.0863 +/-

1.02 1.8 pCi/g 110 0.0008 BMRC Final Status Survey 2014 11 04 S2-01 Americium-241

-0.122 +/-

0.404 0.667 pCi/g 2.1

-0.0581

-0.0113 BMRC Final Status Survey 2014 11 04 S2-01 Carbon-14 0.262 +/-

0.398 0.676 pCi/g 12 0.0218 BMRC Final Status Survey 2014 11 04 S2-01 Cesium-137 0.042 +/-

0.064 0.106 pCi/g 11 0.0038 BMRC Final Status Survey 2014 11 04 S2-01 Cobalt-60 0.019 +/-

0.058 0.108 pCi/g 3.8 0.0050 BMRC Final Status Survey 2014 11 04 S2-01 Europium-152 0.106 +/-

0.134 0.22 pCi/g 6.9 0.0154 BMRC Final Status Survey 2014 11 04 S2-01 Europium-154

-0.005 +/-

0.102 0.18 pCi/g 8

-0.0006 BMRC Final Status Survey 2014 11 04 S2-01 Nickel-63 0.991 +/-

1.24 3.002 pCi/g 2100 0.0005 BMRC Final Status Survey 2014 11 04 S2-01 Plutonium-238 0.001 +/-

0.017 0.036 pCi/g 2.5 0.0004 BMRC Final Status Survey 2014 11 04 S2-01 Pu-239/240

-0.002 +/-

0.01 0.026 pCi/g 2.3

-0.0009 BMRC Final Status Survey 2014 11 04 S2-01 Silver-108M 0 +/-

0.084 0.149 pCi/g 8.2 0.0000 BMRC Final Status Survey 2014 11 04 S2-01 Strontium-90 0.0091 +/-

0.074 0.183 pCi/g 1.7 0.0054 BMRC Final Status Survey 2014 11 04 S2-01 Tritium

-0.439 +/-

1.17 2.12 pCi/g 110

-0.0040 BMRC Final Status Survey 2014 11 04 S2-02 Americium-241 0 +/-

0.205 0.358 pCi/g 2.1 0.0000 0.1330 BMRC Final Status Survey 2014 11 04 S2-02 Carbon-14 1.15 +/-

0.497 0.674 pCi/g 12 0.0958 BMRC Final Status Survey 2014 11 04 S2-02 Cesium-137

-0.005 +/-

0.137 0.136 pCi/g 11

-0.0005 BMRC Final Status Survey 2014 11 04 S2-02 Cobalt-60

-0.016 +/-

0.669 0.141 pCi/g 3.8

-0.0042 BMRC Final Status Survey 2014 11 04 S2-02 Europium-152

-0.047 +/-

0.184 0.264 pCi/g 6.9

-0.0068 BMRC Final Status Survey 2014 11 04 S2-02 Europium-154

-0.001 +/-

0.095 0.17 pCi/g 8

-0.0001 BMRC Final Status Survey 2014 11 04 S2-02 Nickel-63

-0.281 +/-

1.187 3.279 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 11 04 S2-02 Plutonium-238 0 +/-

0.014 0.033 pCi/g 2.5 0.0000 BMRC Final Status Survey 2014 11 04 S2-02 Pu-239/240

-0.003 +/-

0.017 0.041 pCi/g 2.3

-0.0013 BMRC Final Status Survey 2014 11 04 S2-02 Silver-108M

-0.031 +/-

0.085 0.151 pCi/g 8.2

-0.0038 BMRC Final Status Survey 2014 11 04 S2-02 Strontium-90 0.092 +/-

0.109 0.236 pCi/g 1.7 0.0541 BMRC Final Status Survey 2014 11 04 S2-02 Tritium

-0.0196 +/-

0.962 1.7 pCi/g 110

-0.0002 BMRC Final Status Survey 2014 11 04 S2-03 Americium-241 0.079 +/-

0.163 0.277 pCi/g 2.1 0.0376 0.0839 BMRC Final Status Survey 2014 11 04 S2-03 Carbon-14 0.288 +/-

0.409 0.691 pCi/g 12 0.0240 BMRC Final Status Survey 2014 11 04 S2-03 Cesium-137 0.002 +/-

0.077 0.146 pCi/g 11 0.0002 BMRC Final Status Survey 2014 11 04 S2-03 Cobalt-60 0.013 +/-

0.077 0.154 pCi/g 3.8 0.0034 BMRC Final Status Survey 2014 11 04 S2-03 Europium-152

-0.013 +/-

0.283 0.246 pCi/g 6.9

-0.0019 BMRC Final Status Survey 2014 11 04 S2-03 Europium-154 0.006 +/-

0.09 0.161 pCi/g 8

0.0008 BMRC Final Status Survey 2014 11 04 S2-03 Nickel-63

-1.012 +/-

1.14 3.332 pCi/g 2100

-0.0005 BMRC Final Status Survey 2014 11 04 S2-03 Plutonium-238 0.014 +/-

0.018 0.031 pCi/g 2.5 0.0056 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 4 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BMRC Final Status Survey 2014 11 04 S2-03 Pu-239/240 0.002 +/-

0.011 0.025 pCi/g 2.3 0.0009 BMRC Final Status Survey 2014 11 04 S2-03 Silver-108M 0.016 +/-

0.082 0.15 pCi/g 8.2 0.0020 BMRC Final Status Survey 2014 11 04 S2-03 Strontium-90 0.015 +/-

0.102 0.244 pCi/g 1.7 0.0088 BMRC Final Status Survey 2014 11 04 S2-03 Tritium 0.337 +/-

1.2 2.09 pCi/g 110 0.0031 BMRC Final Status Survey 2014 11 04 S2-04 Americium-241

-0.014 +/-

0.333 0.438 pCi/g 2.1

-0.0067 0.1031 BMRC Final Status Survey 2014 11 04 S2-04 Carbon-14 0.165 +/-

0.397 0.692 pCi/g 12 0.0138 BMRC Final Status Survey 2014 11 04 S2-04 Cesium-137 0.03 +/-

0.055 0.093 pCi/g 11 0.0027 BMRC Final Status Survey 2014 11 04 S2-04 Cobalt-60 0.017 +/-

0.054 0.101 pCi/g 3.8 0.0045 BMRC Final Status Survey 2014 11 04 S2-04 Europium-152 0.086 +/-

0.144 0.242 pCi/g 6.9 0.0125 BMRC Final Status Survey 2014 11 04 S2-04 Europium-154 0.02 +/-

0.107 0.186 pCi/g 8

0.0025 BMRC Final Status Survey 2014 11 04 S2-04 Nickel-63 0 +/-

1.233 3.406 pCi/g 2100 0.0000 BMRC Final Status Survey 2014 11 04 S2-04 Plutonium-238 0.012 +/-

0.012 0.015 pCi/g 2.5 0.0048 BMRC Final Status Survey 2014 11 04 S2-04 Pu-239/240

-0.007 +/-

0.011 0.03 pCi/g 2.3

-0.0030 BMRC Final Status Survey 2014 11 04 S2-04 Silver-108M

-0.022 +/-

0.067 0.116 pCi/g 8.2

-0.0027 BMRC Final Status Survey 2014 11 04 S2-04 Strontium-90 0.126 +/-

0.11 0.225 pCi/g 1.7 0.0741 BMRC Final Status Survey 2014 11 04 S2-04 Tritium 0.0675 +/-

0.833 1.47 pCi/g 110 0.0006 BMRC Final Status Survey 2014 11 05 S2-01 Americium-241

-0.026 +/-

0.157 0.279 pCi/g 2.1

-0.0124 0.0254 BMRC Final Status Survey 2014 11 05 S2-01 Carbon-14 0.38 +/-

0.429 0.709 pCi/g 12 0.0317 BMRC Final Status Survey 2014 11 05 S2-01 Cesium-137 0.042 +/-

0.083 0.144 pCi/g 11 0.0038 BMRC Final Status Survey 2014 11 05 S2-01 Cobalt-60

-0.016 +/-

0.64 0.323 pCi/g 3.8

-0.0042 BMRC Final Status Survey 2014 11 05 S2-01 Europium-152

-0.013 +/-

0.322 0.251 pCi/g 6.9

-0.0019 BMRC Final Status Survey 2014 11 05 S2-01 Europium-154 0.093 +/-

0.148 0.154 pCi/g 8

0.0116 BMRC Final Status Survey 2014 11 05 S2-01 Nickel-63 0.846 +/-

1.377 4.014 pCi/g 2100 0.0004 BMRC Final Status Survey 2014 11 05 S2-01 Plutonium-238

-0.013 +/-

0.042 0.086 pCi/g 2.5

-0.0052 BMRC Final Status Survey 2014 11 05 S2-01 Pu-239/240

-0.005 +/-

0.019 0.045 pCi/g 2.3

-0.0022 BMRC Final Status Survey 2014 11 05 S2-01 Silver-108M

-0.009 +/-

0.103 0.19 pCi/g 8.2

-0.0011 BMRC Final Status Survey 2014 11 05 S2-01 Strontium-90 0.009 +/-

0.112 0.268 pCi/g 1.7 0.0053 BMRC Final Status Survey 2014 11 05 S2-01 Tritium

-0.0521 +/-

0.508 0.905 pCi/g 110

-0.0005 BMRC Final Status Survey 2014 11 05 S2-02 Americium-241

-0.188 +/-

0.373 0.614 pCi/g 2.1

-0.0895 0.0030 BMRC Final Status Survey 2014 11 05 S2-02 Carbon-14 0.306 +/-

0.407 0.684 pCi/g 12 0.0255 BMRC Final Status Survey 2014 11 05 S2-02 Cesium-137 0.042 +/-

0.06 0.1 pCi/g 11 0.0038 BMRC Final Status Survey 2014 11 05 S2-02 Cobalt-60

-0.01 +/-

0.753 0.128 pCi/g 3.8

-0.0026 BMRC Final Status Survey 2014 11 05 S2-02 Europium-152 0.05 +/-

0.117 0.201 pCi/g 6.9 0.0072 BMRC Final Status Survey 2014 11 05 S2-02 Europium-154

-0.03 +/-

0.115 0.198 pCi/g 8

-0.0038 BMRC Final Status Survey 2014 11 05 S2-02 Nickel-63 1.063 +/-

1.308 3.477 pCi/g 2100 0.0005 BMRC Final Status Survey 2014 11 05 S2-02 Plutonium-238 0.021 +/-

0.027 0.046 pCi/g 2.5 0.0084 BMRC Final Status Survey 2014 11 05 S2-02 Pu-239/240 0.02 +/-

0.019 0.026 pCi/g 2.3 0.0087 BMRC Final Status Survey 2014 11 05 S2-02 Silver-108M 0 +/-

0.062 0.112 pCi/g 8.2 0.0000 BMRC Final Status Survey 2014 11 05 S2-02 Strontium-90 0.068 +/-

0.116 0.261 pCi/g 1.7 0.0400 BMRC Final Status Survey 2014 11 05 S2-02 Tritium 0.522 +/-

0.79 1.33 pCi/g 110 0.0047 BMRC Final Status Survey 2014 11 05 S2-03 Americium-241

-0.004 +/-

0.129 0.233 pCi/g 2.1

-0.0019 0.2653 BMRC Final Status Survey 2014 11 05 S2-03 Carbon-14 0.741 +/-

0.47 0.71 pCi/g 12 0.0618 BMRC Final Status Survey 2014 11 05 S2-03 Cesium-137 0.013 +/-

0.08 0.147 pCi/g 11 0.0012 BMRC Final Status Survey 2014 11 05 S2-03 Cobalt-60 0.018 +/-

0.073 0.146 pCi/g 3.8 0.0047 BMRC Final Status Survey 2014 11 05 S2-03 Europium-152 0.066 +/-

0.135 0.231 pCi/g 6.9 0.0096 BMRC Final Status Survey 2014 11 05 S2-03 Europium-154 0 +/-

0.114 0.201 pCi/g 8

0.0000 BMRC Final Status Survey 2014 11 05 S2-03 Nickel-63 0.025 +/-

1.269 3.724 pCi/g 2100 0.0000 BMRC Final Status Survey 2014 11 05 S2-03 Plutonium-238 0.02 +/-

0.031 0.055 pCi/g 2.5 0.0080 BMRC Final Status Survey 2014 11 05 S2-03 Pu-239/240 0.005 +/-

0.015 0.031 pCi/g 2.3 0.0022 BMRC Final Status Survey 2014 11 05 S2-03 Silver-108M 0 +/-

0.146 0.261 pCi/g 8.2 0.0000 BMRC Final Status Survey 2014 11 05 S2-03 Strontium-90 0.305 +/-

0.145 0.249 pCi/g 1.7 0.1794 BMRC Final Status Survey 2014 11 05 S2-03 Tritium 0.0382 +/-

0.939 1.66 pCi/g 110 0.0003 BMRC Final Status Survey 2014 11 05 S2-04 Americium-241 0.046 +/-

0.391 0.687 pCi/g 2.1 0.0219 0.1031 BMRC Final Status Survey 2014 11 05 S2-04 Carbon-14 0.02 +/-

0.378 0.687 pCi/g 12 0.0017 BMRC Final Status Survey 2014 11 05 S2-04 Cesium-137 0.059 +/-

0.062 0.098 pCi/g 11 0.0054 BMRC Final Status Survey 2014 11 05 S2-04 Cobalt-60

-0.003 +/-

0.101 0.134 pCi/g 3.8

-0.0008 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 5 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BMRC Final Status Survey 2014 11 05 S2-04 Europium-152

-0.079 +/-

0.192 0.326 pCi/g 6.9

-0.0114 BMRC Final Status Survey 2014 11 05 S2-04 Europium-154 0.049 +/-

0.082 0.171 pCi/g 8

0.0061 BMRC Final Status Survey 2014 11 05 S2-04 Nickel-63 0.971 +/-

1.316 3.571 pCi/g 2100 0.0005 BMRC Final Status Survey 2014 11 05 S2-04 Plutonium-238 0.016 +/-

0.029 0.052 pCi/g 2.5 0.0064 BMRC Final Status Survey 2014 11 05 S2-04 Pu-239/240 0.003 +/-

0.013 0.029 pCi/g 2.3 0.0013 BMRC Final Status Survey 2014 11 05 S2-04 Silver-108M 0.008 +/-

0.062 0.113 pCi/g 8.2 0.0010 BMRC Final Status Survey 2014 11 05 S2-04 Strontium-90 0.119 +/-

0.118 0.247 pCi/g 1.7 0.0700 BMRC Final Status Survey 2014 11 05 S2-04 Tritium 0.121 +/-

0.669 1.17 pCi/g 110 0.0011 BMRC Final Status Survey 2014 11 06 S2-01 Americium-241 0.048 +/-

0.155 0.268 pCi/g 2.1 0.0229 0.0806 BMRC Final Status Survey 2014 11 06 S2-01 Carbon-14 0.372 +/-

0.42 0.693 pCi/g 12 0.0310 BMRC Final Status Survey 2014 11 06 S2-01 Cesium-137 0.037 +/-

0.081 0.141 pCi/g 11 0.0034 BMRC Final Status Survey 2014 11 06 S2-01 Cobalt-60 0.009 +/-

0.07 0.143 pCi/g 3.8 0.0024 BMRC Final Status Survey 2014 11 06 S2-01 Europium-152 0.009 +/-

0.12 0.216 pCi/g 6.9 0.0013 BMRC Final Status Survey 2014 11 06 S2-01 Europium-154 0.007 +/-

0.115 0.202 pCi/g 8

0.0009 BMRC Final Status Survey 2014 11 06 S2-01 Nickel-63 1.862 +/-

1.324 3.184 pCi/g 2100 0.0009 BMRC Final Status Survey 2014 11 06 S2-01 Plutonium-238

-0.031 +/-

0.04 0.083 pCi/g 2.5

-0.0124 BMRC Final Status Survey 2014 11 06 S2-01 Pu-239/240 0 +/-

0.012 0.025 pCi/g 2.3 0.0000 BMRC Final Status Survey 2014 11 06 S2-01 Silver-108M

-0.035 +/-

0.092 0.162 pCi/g 8.2

-0.0043 BMRC Final Status Survey 2014 11 06 S2-01 Strontium-90 0.009 +/-

0.107 0.256 pCi/g 1.7 0.0053 BMRC Final Status Survey 2014 11 06 S2-01 Tritium 3.22 +/-

1.29 1.82 pCi/g 110 0.0293 BMRC Final Status Survey 2014 11 06 S2-02 Americium-241 0.123 +/-

0.294 0.503 pCi/g 2.1 0.0586 0.2081 BMRC Final Status Survey 2014 11 06 S2-02 Carbon-14 0.29 +/-

0.412 0.695 pCi/g 12 0.0242 BMRC Final Status Survey 2014 11 06 S2-02 Cesium-137 0.022 +/-

0.057 0.1 pCi/g 11 0.0020 BMRC Final Status Survey 2014 11 06 S2-02 Cobalt-60

-0.024 +/-

0.21 0.127 pCi/g 3.8

-0.0063 BMRC Final Status Survey 2014 11 06 S2-02 Europium-152 0 +/-

0.004 0.31 pCi/g 6.9 0.0000 BMRC Final Status Survey 2014 11 06 S2-02 Europium-154 0 +/-

0.126 0.221 pCi/g 8

0.0000 BMRC Final Status Survey 2014 11 06 S2-02 Nickel-63 0.597 +/-

1.254 3.376 pCi/g 2100 0.0003 BMRC Final Status Survey 2014 11 06 S2-02 Plutonium-238 0.009 +/-

0.029 0.056 pCi/g 2.5 0.0036 BMRC Final Status Survey 2014 11 06 S2-02 Pu-239/240

-0.001 +/-

0.015 0.033 pCi/g 2.3

-0.0004 BMRC Final Status Survey 2014 11 06 S2-02 Silver-108M 0 +/-

0.06 0.11 pCi/g 8.2 0.0000 BMRC Final Status Survey 2014 11 06 S2-02 Strontium-90 0.214 +/-

0.114 0.204 pCi/g 1.7 0.1259 BMRC Final Status Survey 2014 11 06 S2-02 Tritium 0.0348 +/-

0.856 1.51 pCi/g 110 0.0003 BMRC Final Status Survey 2014 11 06 S2-03 Americium-241

-0.024 +/-

0.096 0.166 pCi/g 2.1

-0.0114 0.2906 BMRC Final Status Survey 2014 11 06 S2-03 Carbon-14 0.021 +/-

0.38 0.689 pCi/g 12 0.0018 BMRC Final Status Survey 2014 11 06 S2-03 Cesium-137 0.021 +/-

0.045 0.079 pCi/g 11 0.0019 BMRC Final Status Survey 2014 11 06 S2-03 Cobalt-60

-0.01 +/-

1.294 0.107 pCi/g 3.8

-0.0026 BMRC Final Status Survey 2014 11 06 S2-03 Europium-152 0.014 +/-

0.073 0.129 pCi/g 6.9 0.0020 BMRC Final Status Survey 2014 11 06 S2-03 Europium-154 0.007 +/-

0.048 0.085 pCi/g 8

0.0009 BMRC Final Status Survey 2014 11 06 S2-03 Nickel-63

-0.372 +/-

1.271 3.913 pCi/g 2100

-0.0002 BMRC Final Status Survey 2014 11 06 S2-03 Plutonium-238 0.007 +/-

0.034 0.066 pCi/g 2.5 0.0028 BMRC Final Status Survey 2014 11 06 S2-03 Pu-239/240 0.013 +/-

0.016 0.025 pCi/g 2.3 0.0057 BMRC Final Status Survey 2014 11 06 S2-03 Silver-108M

-0.005 +/-

0.056 0.102 pCi/g 8.2

-0.0006 BMRC Final Status Survey 2014 11 06 S2-03 Strontium-90 0.503 +/-

0.176 0.255 pCi/g 1.7 0.2959 BMRC Final Status Survey 2014 11 06 S2-03 Tritium

-0.595 +/-

0.936 1.72 pCi/g 110

-0.0054 BMRC Final Status Survey 2014 11 11 S2-01 Americium-241

-0.059 +/-

0.339 0.584 pCi/g 2.1

-0.0281 0.1122 BMRC Final Status Survey 2014 11 11 S2-01 Carbon-14 1.42 +/-

1.18 1.7 pCi/g 12 0.1183 BMRC Final Status Survey 2014 11 11 S2-01 Cesium-137 0.025 +/-

0.061 0.106 pCi/g 11 0.0023 BMRC Final Status Survey 2014 11 11 S2-01 Cobalt-60

-0.014 +/-

0.347 0.116 pCi/g 3.8

-0.0037 BMRC Final Status Survey 2014 11 11 S2-01 Europium-152

-0.095 +/-

0.192 0.285 pCi/g 6.9

-0.0138 BMRC Final Status Survey 2014 11 11 S2-01 Europium-154 0.039 +/-

0.1 0.171 pCi/g 8

0.0049 BMRC Final Status Survey 2014 11 11 S2-01 Nickel-63

-0.231 +/-

0.738 2.422 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 11 11 S2-01 Plutonium-238 0.002 +/-

0.039 0.062 pCi/g 2.5 0.0008 BMRC Final Status Survey 2014 11 11 S2-01 Pu-239/240

-0.02 +/-

0.021 0.04 pCi/g 2.3

-0.0087 BMRC Final Status Survey 2014 11 11 S2-01 Silver-108M 0.011 +/-

0.057 0.103 pCi/g 8.2 0.0013 BMRC Final Status Survey 2014 11 11 S2-01 Strontium-90 0.0498 +/-

0.085 0.191 pCi/g 1.7 0.0293 BMRC Final Status Survey 2014 11 11 S2-01 Tritium 1.06 +/-

1.47 2.48 pCi/g 110 0.0096 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 6 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BMRC Final Status Survey 2014 11 11 S2-02 Americium-241

-0.029 +/-

0.175 0.306 pCi/g 2.1

-0.0138 0.0944 BMRC Final Status Survey 2014 11 11 S2-02 Carbon-14 1.32 +/-

1.17 1.73 pCi/g 12 0.1100 BMRC Final Status Survey 2014 11 11 S2-02 Cesium-137 0.024 +/-

0.085 0.153 pCi/g 11 0.0022 BMRC Final Status Survey 2014 11 11 S2-02 Cobalt-60

-0.04 +/-

0.283 0.193 pCi/g 3.8

-0.0105 BMRC Final Status Survey 2014 11 11 S2-02 Europium-152 0.03 +/-

0.096 0.171 pCi/g 6.9 0.0043 BMRC Final Status Survey 2014 11 11 S2-02 Europium-154 0.076 +/-

0.1 0.148 pCi/g 8

0.0095 BMRC Final Status Survey 2014 11 11 S2-02 Nickel-63

-0.258 +/-

0.61 1.668 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 11 11 S2-02 Plutonium-238 0.018 +/-

0.023 0.034 pCi/g 2.5 0.0072 BMRC Final Status Survey 2014 11 11 S2-02 Pu-239/240 0.005 +/-

0.016 0.026 pCi/g 2.3 0.0022 BMRC Final Status Survey 2014 11 11 S2-02 Silver-108M 0.021 +/-

0.039 0.126 pCi/g 8.2 0.0026 BMRC Final Status Survey 2014 11 11 S2-02 Strontium-90

-0.0379 +/-

0.071 0.193 pCi/g 1.7

-0.0223 BMRC Final Status Survey 2014 11 11 S2-02 Tritium 0.35 +/-

1.28 2.27 pCi/g 110 0.0032 BMRC Final Status Survey 2014 11 13 S2-01 Americium-241 0 +/-

0.014 0.603 pCi/g 2.1 0.0000 0.0682 BMRC Final Status Survey 2014 11 13 S2-01 Carbon-14 1.14 +/-

1.09 1.66 pCi/g 12 0.0950 BMRC Final Status Survey 2014 11 13 S2-01 Cesium-137 0.011 +/-

0.054 0.098 pCi/g 11 0.0010 BMRC Final Status Survey 2014 11 13 S2-01 Cobalt-60

-0.021 +/-

0.227 0.144 pCi/g 3.8

-0.0055 BMRC Final Status Survey 2014 11 13 S2-01 Europium-152

-0.094 +/-

0.207 0.308 pCi/g 6.9

-0.0136 BMRC Final Status Survey 2014 11 13 S2-01 Europium-154 0.015 +/-

0.021 0.211 pCi/g 8

0.0019 BMRC Final Status Survey 2014 11 13 S2-01 Nickel-63 0.11 +/-

0.543 1.266 pCi/g 2100 0.0001 BMRC Final Status Survey 2014 11 13 S2-01 Plutonium-238 0.027 +/-

0.021 0.03 pCi/g 2.5 0.0108 BMRC Final Status Survey 2014 11 13 S2-01 Pu-239/240

-0.011 +/-

0.013 0.026 pCi/g 2.3

-0.0048 BMRC Final Status Survey 2014 11 13 S2-01 Silver-108M

-0.017 +/-

0.073 0.128 pCi/g 8.2

-0.0021 BMRC Final Status Survey 2014 11 13 S2-01 Strontium-90

-0.0464 +/-

0.075 0.207 pCi/g 1.7

-0.0273 BMRC Final Status Survey 2014 11 13 S2-01 Tritium 1.4 +/-

1.41 2.31 pCi/g 110 0.0127 BMRC Final Status Survey 2014 11 13 S2-02 Americium-241 0.04 +/-

0.181 0.314 pCi/g 2.1 0.0190 0.0079 BMRC Final Status Survey 2014 11 13 S2-02 Carbon-14

-0.255 +/-

0.705 1.67 pCi/g 12

-0.0213 BMRC Final Status Survey 2014 11 13 S2-02 Cesium-137 0.001 +/-

0.087 0.163 pCi/g 11 0.0001 BMRC Final Status Survey 2014 11 13 S2-02 Cobalt-60 0.001 +/-

0.091 0.185 pCi/g 3.8 0.0003 BMRC Final Status Survey 2014 11 13 S2-02 Europium-152 0 +/-

0.144 0.259 pCi/g 6.9 0.0000 BMRC Final Status Survey 2014 11 13 S2-02 Europium-154 0.048 +/-

0.088 0.181 pCi/g 8

0.0060 BMRC Final Status Survey 2014 11 13 S2-02 Nickel-63

-0.119 +/-

0.699 2.153 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 11 13 S2-02 Plutonium-238 0.02 +/-

0.041 0.063 pCi/g 2.5 0.0080 BMRC Final Status Survey 2014 11 13 S2-02 Pu-239/240

-0.006 +/-

0.017 0.032 pCi/g 2.3

-0.0026 BMRC Final Status Survey 2014 11 13 S2-02 Silver-108M 0.021 +/-

0.029 0.169 pCi/g 8.2 0.0026 BMRC Final Status Survey 2014 11 13 S2-02 Strontium-90

-0.0195 +/-

0.075 0.192 pCi/g 1.7

-0.0115 BMRC Final Status Survey 2014 11 13 S2-02 Tritium 0.809 +/-

1.41 2.42 pCi/g 110 0.0074 BMRC Final Status Survey 2014 11 13 S2-02-DUPAmericium-241 0.004 +/-

0.169 0.299 pCi/g 2.1 0.0019 0.0435 BMRC Final Status Survey 2014 11 13 S2-02-DUPCarbon-14 0.649 +/-

0.993 1.71 pCi/g 12 0.0541 BMRC Final Status Survey 2014 11 13 S2-02-DUPCesium-137 0 +/-

0.094 0.175 pCi/g 11 0.0000 BMRC Final Status Survey 2014 11 13 S2-02-DUPCobalt-60 0.039 +/-

0.062 0.172 pCi/g 3.8 0.0103 BMRC Final Status Survey 2014 11 13 S2-02-DUPEuropium-152 0 +/-

0.004 0.265 pCi/g 6.9 0.0000 BMRC Final Status Survey 2014 11 13 S2-02-DUPEuropium-154

-0.017 +/-

0.103 0.181 pCi/g 8

-0.0021 BMRC Final Status Survey 2014 11 13 S2-02-DUPNickel-63 0.123 +/-

0.567 1.378 pCi/g 2100 0.0001 BMRC Final Status Survey 2014 11 13 S2-02-DUPPlutonium-238 0.026 +/-

0.029 0.043 pCi/g 2.5 0.0104 BMRC Final Status Survey 2014 11 13 S2-02-DUPPu-239/240

-0.009 +/-

0.015 0.029 pCi/g 2.3

-0.0039 BMRC Final Status Survey 2014 11 13 S2-02-DUPSilver-108M

-0.002 +/-

0.07 0.133 pCi/g 8.2

-0.0002 BMRC Final Status Survey 2014 11 13 S2-02-DUPStrontium-90

-0.0457 +/-

0.059 0.162 pCi/g 1.7

-0.0269 BMRC Final Status Survey 2014 11 13 S2-02-DUPTritium 0 +/-

1.42 2.6 pCi/g 110 0.0000 BMRC Final Status Survey 2014 11 14 S2-01 Americium-241 0.109 +/-

0.305 0.525 pCi/g 2.1 0.0519 0.0140 BMRC Final Status Survey 2014 11 14 S2-01 Carbon-14 0.229 +/-

0.318 0.535 pCi/g 12 0.0191 BMRC Final Status Survey 2014 11 14 S2-01 Cesium-137 0.027 +/-

0.054 0.093 pCi/g 11 0.0025 BMRC Final Status Survey 2014 11 14 S2-01 Cobalt-60

-0.01 +/-

0.392 0.048 pCi/g 3.8

-0.0026 BMRC Final Status Survey 2014 11 14 S2-01 Europium-152 0.055 +/-

0.147 0.252 pCi/g 6.9 0.0080 BMRC Final Status Survey 2014 11 14 S2-01 Europium-154 0.029 +/-

0.092 0.159 pCi/g 8

0.0036 BMRC Final Status Survey 2014 11 14 S2-01 Nickel-63 2.208 +/-

1.39 3.419 pCi/g 2100 0.0011 BMRC Final Status Survey 2014 11 14 S2-01 Plutonium-238

-0.026 +/-

0.031 0.065 pCi/g 2.5

-0.0104 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 7 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BMRC Final Status Survey 2014 11 14 S2-01 Pu-239/240 0.004 +/-

0.01 0.019 pCi/g 2.3 0.0017 BMRC Final Status Survey 2014 11 14 S2-01 Silver-108M

-0.024 +/-

0.067 0.117 pCi/g 8.2

-0.0029 BMRC Final Status Survey 2014 11 14 S2-01 Strontium-90

-0.101 +/-

0.092 0.251 pCi/g 1.7

-0.0594 BMRC Final Status Survey 2014 11 14 S2-01 Tritium 0.172 +/-

1.64 2.95 pCi/g 110 0.0016 BMRC Final Status Survey 2014 11 14 S2-02 Americium-241 0.234 +/-

0.334 0.553 pCi/g 2.1 0.1114 0.2381 BMRC Final Status Survey 2014 11 14 S2-02 Carbon-14 0.727 +/-

0.378 0.555 pCi/g 12 0.0606 BMRC Final Status Survey 2014 11 14 S2-02 Cesium-137 0.032 +/-

0.06 0.102 pCi/g 11 0.0029 BMRC Final Status Survey 2014 11 14 S2-02 Cobalt-60

-0.003 +/-

0.11 0.11 pCi/g 3.8

-0.0008 BMRC Final Status Survey 2014 11 14 S2-02 Europium-152

-0.005 +/-

0.218 0.277 pCi/g 6.9

-0.0007 BMRC Final Status Survey 2014 11 14 S2-02 Europium-154

-0.028 +/-

0.104 0.178 pCi/g 8

-0.0035 BMRC Final Status Survey 2014 11 14 S2-02 Nickel-63 1.562 +/-

1.393 3.766 pCi/g 2100 0.0007 BMRC Final Status Survey 2014 11 14 S2-02 Plutonium-238 0.018 +/-

0.038 0.071 pCi/g 2.5 0.0072 BMRC Final Status Survey 2014 11 14 S2-02 Pu-239/240 0.008 +/-

0.021 0.042 pCi/g 2.3 0.0035 BMRC Final Status Survey 2014 11 14 S2-02 Silver-108M 0.003 +/-

0.06 0.109 pCi/g 8.2 0.0004 BMRC Final Status Survey 2014 11 14 S2-02 Strontium-90 0.07 +/-

0.114 0.254 pCi/g 1.7 0.0412 BMRC Final Status Survey 2014 11 14 S2-02 Tritium 1.68 +/-

1.75 2.87 pCi/g 110 0.0153 BMRC Final Status Survey 2014 11 14 S2-03 Americium-241 0.023 +/-

0.152 0.267 pCi/g 2.1 0.0110 0.0052 BMRC Final Status Survey 2014 11 14 S2-03 Carbon-14

-0.237 +/-

0.293 0.563 pCi/g 12

-0.0198 BMRC Final Status Survey 2014 11 14 S2-03 Cesium-137 0 +/-

0.052 0.105 pCi/g 11 0.0000 BMRC Final Status Survey 2014 11 14 S2-03 Cobalt-60

-0.018 +/-

0.736 0.212 pCi/g 3.8

-0.0047 BMRC Final Status Survey 2014 11 14 S2-03 Europium-152 0.091 +/-

0.157 0.233 pCi/g 6.9 0.0132 BMRC Final Status Survey 2014 11 14 S2-03 Europium-154

-0.03 +/-

0.108 0.188 pCi/g 8

-0.0038 BMRC Final Status Survey 2014 11 14 S2-03 Nickel-63 0.053 +/-

1.302 3.912 pCi/g 2100 0.0000 BMRC Final Status Survey 2014 11 14 S2-03 Plutonium-238 0.032 +/-

0.034 0.056 pCi/g 2.5 0.0128 BMRC Final Status Survey 2014 11 14 S2-03 Pu-239/240 0.012 +/-

0.014 0.021 pCi/g 2.3 0.0052 BMRC Final Status Survey 2014 11 14 S2-03 Silver-108M

-0.016 +/-

0.098 0.177 pCi/g 8.2

-0.0020 BMRC Final Status Survey 2014 11 14 S2-03 Strontium-90

-0.0142 +/-

0.075 0.187 pCi/g 1.7

-0.0084 BMRC Final Status Survey 2014 11 14 S2-03 Tritium 0.176 +/-

1.67 3.01 pCi/g 110 0.0016 BMRC Final Status Survey 2014 11 14 S2-04 Americium-241

-0.013 +/-

0.368 0.482 pCi/g 2.1

-0.0062 0.1225 BMRC Final Status Survey 2014 11 14 S2-04 Carbon-14 1.22 +/-

0.424 0.544 pCi/g 12 0.1017 BMRC Final Status Survey 2014 11 14 S2-04 Cesium-137 0.038 +/-

0.054 0.09 pCi/g 11 0.0035 BMRC Final Status Survey 2014 11 14 S2-04 Cobalt-60 0.061 +/-

0.06 0.096 pCi/g 3.8 0.0161 BMRC Final Status Survey 2014 11 14 S2-04 Europium-152

-0.033 +/-

0.119 0.206 pCi/g 6.9

-0.0048 BMRC Final Status Survey 2014 11 14 S2-04 Europium-154 0.031 +/-

0.062 0.172 pCi/g 8

0.0039 BMRC Final Status Survey 2014 11 14 S2-04 Nickel-63 0.031 +/-

0.632 0.913 pCi/g 2100 0.0000 BMRC Final Status Survey 2014 11 14 S2-04 Plutonium-238

-0.017 +/-

0.031 0.067 pCi/g 2.5

-0.0068 BMRC Final Status Survey 2014 11 14 S2-04 Pu-239/240 0.006 +/-

0.018 0.036 pCi/g 2.3 0.0026 BMRC Final Status Survey 2014 11 14 S2-04 Silver-108M 0.038 +/-

0.038 0.097 pCi/g 8.2 0.0046 BMRC Final Status Survey 2014 11 14 S2-04 Strontium-90

-0.0021 +/-

0.081 0.199 pCi/g 1.7

-0.0012 BMRC Final Status Survey 2014 11 14 S2-04 Tritium 1.01 +/-

1.89 3.26 pCi/g 110 0.0092 BMRC Final Status Survey 2014 11 15 S2-01 Americium-241 0.07 +/-

0.139 0.236 pCi/g 2.1 0.0333 0.1092 BMRC Final Status Survey 2014 11 15 S2-01 Carbon-14

-0.106 +/-

0.292 0.542 pCi/g 12

-0.0088 BMRC Final Status Survey 2014 11 15 S2-01 Cesium-137 0 +/-

0.096 0.178 pCi/g 11 0.0000 BMRC Final Status Survey 2014 11 15 S2-01 Cobalt-60

-0.046 +/-

0.22 0.183 pCi/g 3.8

-0.0121 BMRC Final Status Survey 2014 11 15 S2-01 Europium-152 0.114 +/-

0.14 0.216 pCi/g 6.9 0.0165 BMRC Final Status Survey 2014 11 15 S2-01 Europium-154 0.045 +/-

0.085 0.144 pCi/g 8

0.0056 BMRC Final Status Survey 2014 11 15 S2-01 Nickel-63 1.047 +/-

1.367 3.851 pCi/g 2100 0.0005 BMRC Final Status Survey 2014 11 15 S2-01 Plutonium-238 0.003 +/-

0.034 0.066 pCi/g 2.5 0.0012 BMRC Final Status Survey 2014 11 15 S2-01 Pu-239/240

-0.011 +/-

0.016 0.041 pCi/g 2.3

-0.0048 BMRC Final Status Survey 2014 11 15 S2-01 Silver-108M 0.01 +/-

0.055 0.105 pCi/g 8.2 0.0012 BMRC Final Status Survey 2014 11 15 S2-01 Strontium-90 0.121 +/-

0.101 0.204 pCi/g 1.7 0.0712 BMRC Final Status Survey 2014 11 15 S2-01 Tritium 0.584 +/-

1.49 2.59 pCi/g 110 0.0053 BMRC Final Status Survey 2014 11 15 S2-02 Americium-241 0.012 +/-

0.296 0.526 pCi/g 2.1 0.0057 0.1804 BMRC Final Status Survey 2014 11 15 S2-02 Carbon-14

-0.257 +/-

0.28 0.542 pCi/g 12

-0.0214 BMRC Final Status Survey 2014 11 15 S2-02 Cesium-137 0.013 +/-

0.06 0.107 pCi/g 11 0.0012 BMRC Final Status Survey 2014 11 15 S2-02 Cobalt-60

-0.036 +/-

0.117 0.122 pCi/g 3.8

-0.0095 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 8 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BMRC Final Status Survey 2014 11 15 S2-02 Europium-152 0.043 +/-

0.084 0.214 pCi/g 6.9 0.0062 BMRC Final Status Survey 2014 11 15 S2-02 Europium-154 0.068 +/-

0.086 0.14 pCi/g 8

0.0085 BMRC Final Status Survey 2014 11 15 S2-02 Nickel-63 1.622 +/-

1.334 3.361 pCi/g 2100 0.0008 BMRC Final Status Survey 2014 11 15 S2-02 Plutonium-238

-0.004 +/-

0.024 0.052 pCi/g 2.5

-0.0016 BMRC Final Status Survey 2014 11 15 S2-02 Pu-239/240 0.005 +/-

0.014 0.029 pCi/g 2.3 0.0022 BMRC Final Status Survey 2014 11 15 S2-02 Silver-108M 0 +/-

0.031 0.061 pCi/g 8.2 0.0000 BMRC Final Status Survey 2014 11 15 S2-02 Strontium-90 0.304 +/-

0.132 0.209 pCi/g 1.7 0.1788 BMRC Final Status Survey 2014 11 15 S2-02 Tritium 1.04 +/-

1.48 2.49 pCi/g 110 0.0095 BMRC Final Status Survey 2014 12 08 S2-01 Americium-241 0 +/-

0.173 0.305 pCi/g 2.1 0.0000 0.0487 BMRC Final Status Survey 2014 12 08 S2-01 Carbon-14

-0.065 +/-

0.398 0.738 pCi/g 12

-0.0054 BMRC Final Status Survey 2014 12 08 S2-01 Cesium-137 0.018 +/-

0.074 0.134 pCi/g 11 0.0016 BMRC Final Status Survey 2014 12 08 S2-01 Cobalt-60

-0.018 +/-

0.721 0.083 pCi/g 3.8

-0.0047 BMRC Final Status Survey 2014 12 08 S2-01 Europium-152 0.072 +/-

0.134 0.226 pCi/g 6.9 0.0104 BMRC Final Status Survey 2014 12 08 S2-01 Europium-154 0.028 +/-

0.049 0.181 pCi/g 8

0.0035 BMRC Final Status Survey 2014 12 08 S2-01 Nickel-63 1.317 +/-

1.282 3.405 pCi/g 2100 0.0006 BMRC Final Status Survey 2014 12 08 S2-01 Plutonium-238 0.005 +/-

0.019 0.034 pCi/g 2.5 0.0020 BMRC Final Status Survey 2014 12 08 S2-01 Pu-239/240 0 +/-

0.009 0.019 pCi/g 2.3 0.0000 BMRC Final Status Survey 2014 12 08 S2-01 Silver-108M 0.181 +/-

0.069 0.138 pCi/g 8.2 0.0221 BMRC Final Status Survey 2014 12 08 S2-01 Strontium-90 0.0395 +/-

0.099 0.227 pCi/g 1.7 0.0232 BMRC Final Status Survey 2014 12 08 S2-01 Tritium

-0.512 +/-

1.8 3.33 pCi/g 110

-0.0047 BMRC Final Status Survey 2014 12 09 S2-01 Americium-241

-0.087 +/-

0.31 0.538 pCi/g 2.1

-0.0414

-0.0790 BMRC Final Status Survey 2014 12 09 S2-01 Carbon-14 0.211 +/-

0.415 0.717 pCi/g 12 0.0176 BMRC Final Status Survey 2014 12 09 S2-01 Cesium-137 0.021 +/-

0.056 0.098 pCi/g 11 0.0019 BMRC Final Status Survey 2014 12 09 S2-01 Cobalt-60 0.013 +/-

0.06 0.112 pCi/g 3.8 0.0034 BMRC Final Status Survey 2014 12 09 S2-01 Europium-152

-0.033 +/-

0.169 0.292 pCi/g 6.9

-0.0048 BMRC Final Status Survey 2014 12 09 S2-01 Europium-154

-0.002 +/-

0.193 0.201 pCi/g 8

-0.0003 BMRC Final Status Survey 2014 12 09 S2-01 Nickel-63

-0.537 +/-

1.159 3.57 pCi/g 2100

-0.0003 BMRC Final Status Survey 2014 12 09 S2-01 Plutonium-238 0.009 +/-

0.027 0.048 pCi/g 2.5 0.0036 BMRC Final Status Survey 2014 12 09 S2-01 Pu-239/240 0.009 +/-

0.015 0.026 pCi/g 2.3 0.0039 BMRC Final Status Survey 2014 12 09 S2-01 Silver-108M 0.047 +/-

0.042 0.1 pCi/g 8.2 0.0057 BMRC Final Status Survey 2014 12 09 S2-01 Strontium-90

-0.12 +/-

0.094 0.268 pCi/g 1.7

-0.0706 BMRC Final Status Survey 2014 12 09 S2-01 Tritium 0.24 +/-

1.75 3.12 pCi/g 110 0.0022 BMRC Final Status Survey 2014 12 10 S2-01 Americium-241 0.058 +/-

0.126 0.216 pCi/g 2.1 0.0276

-0.0192 BMRC Final Status Survey 2014 12 10 S2-01 Carbon-14 0.38 +/-

0.433 0.715 pCi/g 12 0.0317 BMRC Final Status Survey 2014 12 10 S2-01 Cesium-137

-0.012 +/-

0.081 0.132 pCi/g 11

-0.0011 BMRC Final Status Survey 2014 12 10 S2-01 Cobalt-60

-0.017 +/-

2.158 0.167 pCi/g 3.8

-0.0045 BMRC Final Status Survey 2014 12 10 S2-01 Europium-152

-0.01 +/-

0.295 0.22 pCi/g 6.9

-0.0014 BMRC Final Status Survey 2014 12 10 S2-01 Europium-154 0.016 +/-

0.085 0.15 pCi/g 8

0.0020 BMRC Final Status Survey 2014 12 10 S2-01 Nickel-63 0.964 +/-

1.104 2.541 pCi/g 2100 0.0005 BMRC Final Status Survey 2014 12 10 S2-01 Plutonium-238

-0.012 +/-

0.032 0.061 pCi/g 2.5

-0.0048 BMRC Final Status Survey 2014 12 10 S2-01 Pu-239/240 0.003 +/-

0.009 0.018 pCi/g 2.3 0.0013 BMRC Final Status Survey 2014 12 10 S2-01 Silver-108M

-0.01 +/-

0.084 0.153 pCi/g 8.2

-0.0012 BMRC Final Status Survey 2014 12 10 S2-01 Strontium-90

-0.119 +/-

0.095 0.268 pCi/g 1.7

-0.0700 BMRC Final Status Survey 2014 12 10 S2-01 Tritium 0.0903 +/-

1.64 2.93 pCi/g 110 0.0008 BMRC Final Status Survey 2014 12 10 S2-02 Americium-241 0.183 +/-

0.287 0.478 pCi/g 2.1 0.0871 0.0225 BMRC Final Status Survey 2014 12 10 S2-02 Carbon-14 0.278 +/-

0.428 0.726 pCi/g 12 0.0232 BMRC Final Status Survey 2014 12 10 S2-02 Cesium-137

-0.014 +/-

0.053 0.093 pCi/g 11

-0.0013 BMRC Final Status Survey 2014 12 10 S2-02 Cobalt-60

-0.001 +/-

0.067 0.094 pCi/g 3.8

-0.0003 BMRC Final Status Survey 2014 12 10 S2-02 Europium-152 0 +/-

0.153 0.267 pCi/g 6.9 0.0000 BMRC Final Status Survey 2014 12 10 S2-02 Europium-154 0.028 +/-

0.089 0.153 pCi/g 8

0.0035 BMRC Final Status Survey 2014 12 10 S2-02 Nickel-63

-0.3 +/-

1.074 2.994 pCi/g 2100

-0.0001 BMRC Final Status Survey 2014 12 10 S2-02 Plutonium-238 0.027 +/-

0.03 0.048 pCi/g 2.5 0.0108 BMRC Final Status Survey 2014 12 10 S2-02 Pu-239/240

-0.006 +/-

0.014 0.032 pCi/g 2.3

-0.0026 BMRC Final Status Survey 2014 12 10 S2-02 Silver-108M 0.036 +/-

0.055 0.093 pCi/g 8.2 0.0044 BMRC Final Status Survey 2014 12 10 S2-02 Strontium-90

-0.168 +/-

0.095 0.265 pCi/g 1.7

-0.0988 BMRC Final Status Survey 2014 12 10 S2-02 Tritium

-0.375 +/-

1.66 3.04 pCi/g 110

-0.0034 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 9 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BMRC Final Status Survey 2014 12 10 S2-02-DUPAmericium-241 0.038 +/-

0.142 0.245 pCi/g 2.1 0.0181 0.1001 BMRC Final Status Survey 2014 12 10 S2-02-DUPCarbon-14 0.278 +/-

0.427 0.725 pCi/g 12 0.0232 BMRC Final Status Survey 2014 12 10 S2-02-DUPCesium-137 0.013 +/-

0.049 0.092 pCi/g 11 0.0012 BMRC Final Status Survey 2014 12 10 S2-02-DUPCobalt-60 0.003 +/-

0.061 0.128 pCi/g 3.8 0.0008 BMRC Final Status Survey 2014 12 10 S2-02-DUPEuropium-152 0.024 +/-

0.111 0.196 pCi/g 6.9 0.0035 BMRC Final Status Survey 2014 12 10 S2-02-DUPEuropium-154 0.013 +/-

0.023 0.163 pCi/g 8

0.0016 BMRC Final Status Survey 2014 12 10 S2-02-DUPNickel-63 2.948 +/-

1.468 3.776 pCi/g 2100 0.0014 BMRC Final Status Survey 2014 12 10 S2-02-DUPPlutonium-238 0.014 +/-

0.022 0.038 pCi/g 2.5 0.0056 BMRC Final Status Survey 2014 12 10 S2-02-DUPPu-239/240

-0.01 +/-

0.008 0.022 pCi/g 2.3

-0.0043 BMRC Final Status Survey 2014 12 10 S2-02-DUPSilver-108M 0.034 +/-

0.043 0.124 pCi/g 8.2 0.0041 BMRC Final Status Survey 2014 12 10 S2-02-DUPStrontium-90 0.086 +/-

0.118 0.257 pCi/g 1.7 0.0506 BMRC Final Status Survey 2014 12 10 S2-02-DUPTritium

-0.622 +/-

1.9 3.52 pCi/g 110

-0.0057 BMRC Final Status Survey 2014 12 12 S2-01 Americium-241

-0.005 +/-

0.193 0.288 pCi/g 2.1

-0.0024

-0.0180 BMRC Final Status Survey 2014 12 12 S2-01 Carbon-14 0.064 +/-

0.403 0.722 pCi/g 12 0.0053 BMRC Final Status Survey 2014 12 12 S2-01 Cesium-137

-0.017 +/-

0.083 0.151 pCi/g 11

-0.0015 BMRC Final Status Survey 2014 12 12 S2-01 Cobalt-60 0.018 +/-

0.117 0.222 pCi/g 3.8 0.0047 BMRC Final Status Survey 2014 12 12 S2-01 Europium-152 0.011 +/-

0.11 0.2 pCi/g 6.9 0.0016 BMRC Final Status Survey 2014 12 12 S2-01 Europium-154 0.06 +/-

0.098 0.164 pCi/g 8

0.0075 BMRC Final Status Survey 2014 12 12 S2-01 Nickel-63 11.897 +/-

2.175 3.559 pCi/g 2100 0.0057 BMRC Final Status Survey 2014 12 12 S2-01 Plutonium-238 0.049 +/-

0.05 0.08 pCi/g 2.5 0.0196 BMRC Final Status Survey 2014 12 12 S2-01 Pu-239/240 0.002 +/-

0.021 0.044 pCi/g 2.3 0.0009 BMRC Final Status Survey 2014 12 12 S2-01 Silver-108M 0 +/-

0.085 0.161 pCi/g 8.2 0.0000 BMRC Final Status Survey 2014 12 12 S2-01 Strontium-90

-0.0993 +/-

0.056 0.111 pCi/g 1.7

-0.0584 BMRC Final Status Survey 2014 12 12 S2-01 Tritium

-0.106 +/-

1.14 2.08 pCi/g 110

-0.0010 BMRC Final Status Survey 2014 12 12 S2-02 Americium-241

-0.067 +/-

0.175 0.296 pCi/g 2.1

-0.0319

-0.0271 BMRC Final Status Survey 2014 12 12 S2-02 Carbon-14

-0.164 +/-

0.364 0.695 pCi/g 12

-0.0137 BMRC Final Status Survey 2014 12 12 S2-02 Cesium-137 0.025 +/-

0.078 0.14 pCi/g 11 0.0023 BMRC Final Status Survey 2014 12 12 S2-02 Cobalt-60

-0.047 +/-

0.366 0.191 pCi/g 3.8

-0.0124 BMRC Final Status Survey 2014 12 12 S2-02 Europium-152

-0.003 +/-

29.46 0.262 pCi/g 6.9

-0.0004 BMRC Final Status Survey 2014 12 12 S2-02 Europium-154

-0.019 +/-

0.113 0.194 pCi/g 8

-0.0024 BMRC Final Status Survey 2014 12 12 S2-02 Nickel-63 0.491 +/-

1.004 2.23 pCi/g 2100 0.0002 BMRC Final Status Survey 2014 12 12 S2-02 Plutonium-238

-0.005 +/-

0.021 0.042 pCi/g 2.5

-0.0020 BMRC Final Status Survey 2014 12 12 S2-02 Pu-239/240

-0.002 +/-

0.014 0.029 pCi/g 2.3

-0.0009 BMRC Final Status Survey 2014 12 12 S2-02 Silver-108M 0.006 +/-

0.097 0.179 pCi/g 8.2 0.0007 BMRC Final Status Survey 2014 12 12 S2-02 Strontium-90 0.0412 +/-

0.061 0.111 pCi/g 1.7 0.0242 BMRC Final Status Survey 2014 12 12 S2-02 Tritium 0.996 +/-

1.84 3.16 pCi/g 110 0.0091 BMRC Final Status Survey 2014 12 23 S2-01 Americium-241 0 +/-

0.062 0.645 pCi/g 2.1 0.0000 0.0948 BMRC Final Status Survey 2014 12 23 S2-01 Carbon-14 0.171 +/-

0.349 0.6 pCi/g 12 0.0143 BMRC Final Status Survey 2014 12 23 S2-01 Cesium-137 0 +/-

0.058 0.145 pCi/g 11 0.0000 BMRC Final Status Survey 2014 12 23 S2-01 Cobalt-60 0.054 +/-

0.111 0.109 pCi/g 3.8 0.0142 BMRC Final Status Survey 2014 12 23 S2-01 Europium-152 0.227 +/-

0.202 0.239 pCi/g 6.9 0.0329 BMRC Final Status Survey 2014 12 23 S2-01 Europium-154 0.126 +/-

0.06 0.212 pCi/g 8

0.0158 BMRC Final Status Survey 2014 12 23 S2-01 Nickel-63 1.294 +/-

1.569 5.288 pCi/g 2100 0.0006 BMRC Final Status Survey 2014 12 23 S2-01 Plutonium-238 0.013 +/-

0.019 0.032 pCi/g 2.5 0.0052 BMRC Final Status Survey 2014 12 23 S2-01 Pu-239/240 0.007 +/-

0.009 0.015 pCi/g 2.3 0.0030 BMRC Final Status Survey 2014 12 23 S2-01 Silver-108M 0.096 +/-

0.066 0.126 pCi/g 8.2 0.0117 BMRC Final Status Survey 2014 12 23 S2-01 Strontium-90 0.037 +/-

0.083 0.19 pCi/g 1.7 0.0218 BMRC Final Status Survey 2014 12 23 S2-01 Tritium

-2.71 +/-

2.01 3.92 pCi/g 110

-0.0246 BMRC Final Status Survey 2014 12 23 S2-02 Americium-241 0 +/-

0.067 0.301 pCi/g 2.1 0.0000 0.1102 BMRC Final Status Survey 2014 12 23 S2-02 Carbon-14 0.413 +/-

0.37 0.598 pCi/g 12 0.0344 BMRC Final Status Survey 2014 12 23 S2-02 Cesium-137

-0.036 +/-

0.154 0.179 pCi/g 11

-0.0033 BMRC Final Status Survey 2014 12 23 S2-02 Cobalt-60 0.05 +/-

0.061 0.093 pCi/g 3.8 0.0132 BMRC Final Status Survey 2014 12 23 S2-02 Europium-152 0.17 +/-

0.141 0.162 pCi/g 6.9 0.0246 BMRC Final Status Survey 2014 12 23 S2-02 Europium-154 0.084 +/-

0.11 0.197 pCi/g 8

0.0105 BMRC Final Status Survey 2014 12 23 S2-02 Nickel-63 0.57 +/-

1.345 4.077 pCi/g 2100 0.0003 BMRC Final Status Survey 2014 12 23 S2-02 Plutonium-238 0.017 +/-

0.015 0.023 pCi/g 2.5 0.0068 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 10 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BMRC Final Status Survey 2014 12 23 S2-02 Pu-239/240 0.004 +/-

0.009 0.017 pCi/g 2.3 0.0017 BMRC Final Status Survey 2014 12 23 S2-02 Silver-108M 0.076 +/-

0.082 0.088 pCi/g 8.2 0.0093 BMRC Final Status Survey 2014 12 23 S2-02 Strontium-90 0.039 +/-

0.119 0.277 pCi/g 1.7 0.0229 BMRC Final Status Survey 2014 12 23 S2-02 Tritium

-1.13 +/-

1.82 3.4 pCi/g 110

-0.0103 BMRC Final Status Survey 2014 12 29 S2-01 Americium-241 0.102 +/-

0.467 0.588 pCi/g 2.1 0.0486 0.1197 BMRC Final Status Survey 2014 12 29 S2-01 Carbon-14 0.403 +/-

0.351 0.566 pCi/g 12 0.0336 BMRC Final Status Survey 2014 12 29 S2-01 Cesium-137 0.024 +/-

0.062 0.07 pCi/g 11 0.0022 BMRC Final Status Survey 2014 12 29 S2-01 Cobalt-60 0.054 +/-

0.039 0.04 pCi/g 3.8 0.0142 BMRC Final Status Survey 2014 12 29 S2-01 Europium-152 0.108 +/-

0.153 0.27 pCi/g 6.9 0.0157 BMRC Final Status Survey 2014 12 29 S2-01 Europium-154

-0.021 +/-

0.132 0.162 pCi/g 8

-0.0026 BMRC Final Status Survey 2014 12 29 S2-01 Nickel-63

-0.844 +/-

1.255 4.159 pCi/g 2100

-0.0004 BMRC Final Status Survey 2014 12 29 S2-01 Plutonium-238

-0.008 +/-

0.011 0.026 pCi/g 2.5

-0.0032 BMRC Final Status Survey 2014 12 29 S2-01 Pu-239/240 0 +/-

0.007 0.004 pCi/g 2.3 0.0000 BMRC Final Status Survey 2014 12 29 S2-01 Silver-108M 0.017 +/-

0.029 0.106 pCi/g 8.2 0.0021 BMRC Final Status Survey 2014 12 29 S2-01 Strontium-90 0.055 +/-

0.123 0.281 pCi/g 1.7 0.0324 BMRC Final Status Survey 2014 12 29 S2-01 Tritium

-2.5 +/-

1.85 3.61 pCi/g 110

-0.0227 BMRC Final Status Survey 2014 12 29 S2-02 Americium-241 0 +/-

0.115 0.303 pCi/g 2.1 0.0000 0.0822 BMRC Final Status Survey 2014 12 29 S2-02 Carbon-14 0.615 +/-

0.377 0.576 pCi/g 12 0.0513 BMRC Final Status Survey 2014 12 29 S2-02 Cesium-137 0.016 +/-

0.068 0.088 pCi/g 11 0.0015 BMRC Final Status Survey 2014 12 29 S2-02 Cobalt-60 0.032 +/-

0.056 0.097 pCi/g 3.8 0.0084 BMRC Final Status Survey 2014 12 29 S2-02 Europium-152 0.034 +/-

0.194 0.249 pCi/g 6.9 0.0049 BMRC Final Status Survey 2014 12 29 S2-02 Europium-154 0.171 +/-

0.118 0.175 pCi/g 8

0.0214 BMRC Final Status Survey 2014 12 29 S2-02 Nickel-63

-0.346 +/-

1.232 3.801 pCi/g 2100

-0.0002 BMRC Final Status Survey 2014 12 29 S2-02 Plutonium-238 0.001 +/-

0.025 0.048 pCi/g 2.5 0.0004 BMRC Final Status Survey 2014 12 29 S2-02 Pu-239/240 0.003 +/-

0.011 0.023 pCi/g 2.3 0.0013 BMRC Final Status Survey 2014 12 29 S2-02 Silver-108M 0.129 +/-

0.074 0.121 pCi/g 8.2 0.0157 BMRC Final Status Survey 2014 12 29 S2-02 Strontium-90

-0.0014 +/-

0.089 0.216 pCi/g 1.7

-0.0008 BMRC Final Status Survey 2014 12 29 S2-02 Tritium

-2.38 +/-

1.71 3.34 pCi/g 110

-0.0216 BMRC Final Status Survey 2015 01 05 S2-01 Americium-241 0 +/-

0.168 0.604 pCi/g 2.1 0.0000 0.0429 BMRC Final Status Survey 2015 01 05 S2-01 Carbon-14 0.162 +/-

0.309 0.53 pCi/g 12 0.0135 BMRC Final Status Survey 2015 01 05 S2-01 Cesium-137 0.051 +/-

0.069 0.073 pCi/g 11 0.0046 BMRC Final Status Survey 2015 01 05 S2-01 Cobalt-60 0.044 +/-

0.083 0.085 pCi/g 3.8 0.0116 BMRC Final Status Survey 2015 01 05 S2-01 Europium-152 0.192 +/-

0.252 0.235 pCi/g 6.9 0.0278 BMRC Final Status Survey 2015 01 05 S2-01 Europium-154 0.149 +/-

0.088 0.215 pCi/g 8

0.0186 BMRC Final Status Survey 2015 01 05 S2-01 Nickel-63 0.575 +/-

1.32 3.914 pCi/g 2100 0.0003 BMRC Final Status Survey 2015 01 05 S2-01 Plutonium-238 0.008 +/-

0.024 0.045 pCi/g 2.5 0.0032 BMRC Final Status Survey 2015 01 05 S2-01 Pu-239/240 0.005 +/-

0.012 0.02 pCi/g 2.3 0.0022 BMRC Final Status Survey 2015 01 05 S2-01 Silver-108M 0.044 +/-

0.032 0.12 pCi/g 8.2 0.0054 BMRC Final Status Survey 2015 01 05 S2-01 Strontium-90

-0.0527 +/-

0.079 0.209 pCi/g 1.7

-0.0310 BMRC Final Status Survey 2015 01 05 S2-01 Tritium

-1.46 +/-

1.73 3.27 pCi/g 110

-0.0133 BMRC Final Status Survey 2016 01 07 S2-01 Americium-241 0 +/-

0.065 0.316 pCi/g 2.1 0.0000 0.0220 BMRC Final Status Survey 2016 01 07 S2-01 Carbon-14

-0.074 +/-

0.336 0.613 pCi/g 12

-0.0062 BMRC Final Status Survey 2016 01 07 S2-01 Cesium-137

-0.018 +/-

0.097 0.116 pCi/g 11

-0.0016 BMRC Final Status Survey 2016 01 07 S2-01 Cobalt-60 0 +/-

0.015 0.171 pCi/g 3.8 0.0000 BMRC Final Status Survey 2016 01 07 S2-01 Europium-152 0.14 +/-

0.247 0.24 pCi/g 6.9 0.0203 BMRC Final Status Survey 2016 01 07 S2-01 Europium-154 0.097 +/-

0.075 0.171 pCi/g 8

0.0121 BMRC Final Status Survey 2016 01 07 S2-01 Nickel-63 0.159 +/-

1.269 3.796 pCi/g 2100 0.0001 BMRC Final Status Survey 2016 01 07 S2-01 Plutonium-238 0.042 +/-

0.027 0.039 pCi/g 2.5 0.0168 BMRC Final Status Survey 2016 01 07 S2-01 Pu-239/240

-0.003 +/-

0.009 0.019 pCi/g 2.3

-0.0013 BMRC Final Status Survey 2016 01 07 S2-01 Silver-108M 0.02 +/-

0.026 0.163 pCi/g 8.2 0.0024 BMRC Final Status Survey 2016 01 07 S2-01 Strontium-90

-0.026 +/-

0.109 0.272 pCi/g 1.7

-0.0153 BMRC Final Status Survey 2016 01 07 S2-01 Tritium

-0.588 +/-

1.79 3.27 pCi/g 110

-0.0053 BRMC Final Status Survey 2015 01 29 S2-01 Strontium-90

-0.016 +/-

0.091

-0.206 pCi/g 2.1

-0.0076

-0.5377 BRMC Final Status Survey 2015 01 29 S2-01 Americium-241 0 +/-

0.07

-0.333 pCi/g 12 0.0000 BRMC Final Status Survey 2015 01 29 S2-01 Cesium-137

-0.018 +/-

0.108

-0.131 pCi/g 11

-0.0016 BRMC Final Status Survey 2015 01 29 S2-01 Cobalt-60 0.078 +/-

0.045

-0.084 pCi/g 3.8 0.0205 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 11 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDA Units DCGL Fraction SOF BRMC Final Status Survey 2015 01 29 S2-01 Europium-152 0.142 +/-

0.103

-0.283 pCi/g 6.9 0.0206 BRMC Final Status Survey 2015 01 29 S2-01 Europium-154 0.102 +/-

0.079

-0.184 pCi/g 8

0.0128 BRMC Final Status Survey 2015 01 29 S2-01 Silver-108M 0 +/-

0.028

-0.169 pCi/g 2100 0.0000 BRMC Final Status Survey 2015 01 29 S2-01 Plutonium-238 0.011 +/-

0.023

-0.041 pCi/g 2.5 0.0044 BRMC Final Status Survey 2015 01 29 S2-01 Pu-239/240 0.01 +/-

0.012

-0.019 pCi/g 2.3 0.0043 BRMC Final Status Survey 2015 01 29 S2-01 Carbon-14

-0.532 +/-

0.391

-0.746 pCi/g 8.2

-0.0649 BRMC Final Status Survey 2015 01 29 S2-01 Nickel-63

-0.882 +/-

0.935

-2.627 pCi/g 1.7

-0.5188 BRMC Final Status Survey 2015 01 29 S2-01 Tritium

-0.811 +/-

1.34

-2.52 pCi/g 110

-0.0074 BRMC Final Status Survey 2015 01 29 S2-01-dup Strontium-90

-0.0369 +/-

0.076

-0.177 pCi/g 2.1

-0.0176 0.2003 BRMC Final Status Survey 2015 01 29 S2-01-dup Americium-241 0 +/-

0.278

-0.672 pCi/g 12 0.0000 BRMC Final Status Survey 2015 01 29 S2-01-dup Cesium-137 0 +/-

0.012

-0.147 pCi/g 11 0.0000 BRMC Final Status Survey 2015 01 29 S2-01-dup Cobalt-60 0 +/-

0.022

-0.133 pCi/g 3.8 0.0000 BRMC Final Status Survey 2015 01 29 S2-01-dup Europium-152 0 +/-

0.048

-0.275 pCi/g 6.9 0.0000 BRMC Final Status Survey 2015 01 29 S2-01-dup Europium-154 0 +/-

0.043

-0.221 pCi/g 8

0.0000 BRMC Final Status Survey 2015 01 29 S2-01-dup Silver-108M 0.053 +/-

0.095

-0.098 pCi/g 2100 0.0000 BRMC Final Status Survey 2015 01 29 S2-01-dup Plutonium-238

-0.001 +/-

0.015

-0.031 pCi/g 2.5

-0.0004 BRMC Final Status Survey 2015 01 29 S2-01-dup Pu-239/240 0.006 +/-

0.009

-0.014 pCi/g 2.3 0.0026 BRMC Final Status Survey 2015 01 29 S2-01-dup Carbon-14

-0.298 +/-

0.379

-0.703 pCi/g 8.2

-0.0363 BRMC Final Status Survey 2015 01 29 S2-01-dup Nickel-63 0.432 +/-

1.283

-3.95 pCi/g 1.7 0.2541 BRMC Final Status Survey 2015 01 29 S2-01-dup Tritium

-0.237 +/-

1.79

-3.25 pCi/g 110

-0.0022 Fraction is the Result/DCGL. SOF = Sum of the Fractions Page 12 of 12 Appendix H2 - Class 2 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDC Units DCGL Fraction SOF BMRC Final Status Survey 2014 11 01 S3-01 Americium-241

-0.12 +/-

0.427 0.704 pCi/g 2.1

-0.05714

-0.018 BMRC Final Status Survey 2014 11 01 S3-01 Carbon-14

-0.043 +/-

0.388 0.716 pCi/g 12

-0.00358 BMRC Final Status Survey 2014 11 01 S3-01 Cesium-137 0.052 +/-

0.063 0.103 pCi/g 11 0.004727 BMRC Final Status Survey 2014 11 01 S3-01 Cobalt-60 0.023 +/-

0.065 0.12 pCi/g 3.8 0.006053 BMRC Final Status Survey 2014 11 01 S3-01 Europium-152

-0.001 +/-

0.214 0.287 pCi/g 6.9

-0.00014 BMRC Final Status Survey 2014 11 01 S3-01 Europium-154

-0.046 +/-

0.123 0.21 pCi/g 8

-0.00575 BMRC Final Status Survey 2014 11 01 S3-01 Nickel-63

-0.103 +/-

1.267 3.773 pCi/g 2100

-4.9E-05 BMRC Final Status Survey 2014 11 01 S3-01 Plutonium-238

-0.006 +/-

0.031 0.064 pCi/g 2.5

-0.0024 BMRC Final Status Survey 2014 11 01 S3-01 Pu-239/240

-0.001 +/-

0.015 0.035 pCi/g 2.3

-0.00043 BMRC Final Status Survey 2014 11 01 S3-01 Silver-108M 0 +/-

0.05 0.095 pCi/g 8.2 0

BMRC Final Status Survey 2014 11 01 S3-01 Strontium-90 0.0632 +/-

0.062 0.129 pCi/g 1.7 0.037176 BMRC Final Status Survey 2014 11 01 S3-01 Tritium 0.394 +/-

0.994 1.71 pCi/g 110 0.003582 BMRC Final Status Survey 2014 11 01 S3-02 Americium-241 0.004 +/-

0.16 0.286 pCi/g 2.1 0.001905 0.18832 BMRC Final Status Survey 2014 11 01 S3-02 Carbon-14

-0.379 +/-

0.349 0.707 pCi/g 12

-0.03158 BMRC Final Status Survey 2014 11 01 S3-02 Cesium-137 0.12 +/-

0.108 0.165 pCi/g 11 0.010909 BMRC Final Status Survey 2014 11 01 S3-02 Cobalt-60 0.041 +/-

0.088 0.163 pCi/g 3.8 0.010789 BMRC Final Status Survey 2014 11 01 S3-02 Europium-152

-0.028 +/-

0.196 0.243 pCi/g 6.9

-0.00406 BMRC Final Status Survey 2014 11 01 S3-02 Europium-154

-0.019 +/-

0.101 0.178 pCi/g 8

-0.00238 BMRC Final Status Survey 2014 11 01 S3-02 Nickel-63 0.991 +/-

1.25 3.169 pCi/g 2100 0.000472 BMRC Final Status Survey 2014 11 01 S3-02 Plutonium-238 0.013 +/-

0.049 0.093 pCi/g 2.5 0.0052 BMRC Final Status Survey 2014 11 01 S3-02 Pu-239/240

-0.012 +/-

0.023 0.058 pCi/g 2.3

-0.00522 BMRC Final Status Survey 2014 11 01 S3-02 Silver-108M

-0.053 +/-

0.112 0.192 pCi/g 8.2

-0.00646 BMRC Final Status Survey 2014 11 01 S3-02 Strontium-90 0.343 +/-

0.144 0.228 pCi/g 1.7 0.201765 BMRC Final Status Survey 2014 11 01 S3-02 Tritium 0.768 +/-

0.952 1.59 pCi/g 110 0.006982 BMRC Final Status Survey 2014 11 04 S3-01 Americium-241

-0.03 +/-

0.391 0.594 pCi/g 2.1

-0.01429 0.05844 BMRC Final Status Survey 2014 11 04 S3-01 Carbon-14 0 +/-

0.379 0.693 pCi/g 12 0

BMRC Final Status Survey 2014 11 04 S3-01 Cesium-137 0.073 +/-

0.064 0.099 pCi/g 11 0.006636 BMRC Final Status Survey 2014 11 04 S3-01 Cobalt-60 0.037 +/-

0.057 0.1 pCi/g 3.8 0.009737 BMRC Final Status Survey 2014 11 04 S3-01 Europium-152 0.055 +/-

0.104 0.224 pCi/g 6.9 0.007971 BMRC Final Status Survey 2014 11 04 S3-01 Europium-154

-0.008 +/-

0.067 0.12 pCi/g 8

-0.001 BMRC Final Status Survey 2014 11 04 S3-01 Nickel-63 0.947 +/-

1.222 3.03 pCi/g 2100 0.000451 BMRC Final Status Survey 2014 11 04 S3-01 Plutonium-238

-0.006 +/-

0.025 0.053 pCi/g 2.5

-0.0024 BMRC Final Status Survey 2014 11 04 S3-01 Pu-239/240 0.005 +/-

0.015 0.03 pCi/g 2.3 0.002174 BMRC Final Status Survey 2014 11 04 S3-01 Silver-108M

-0.031 +/-

0.069 0.118 pCi/g 8.2

-0.00378 BMRC Final Status Survey 2014 11 04 S3-01 Strontium-90 0.089 +/-

0.101 0.215 pCi/g 1.7 0.052353 BMRC Final Status Survey 2014 11 04 S3-01 Tritium 0.0647 +/-

0.798 1.4 pCi/g 110 0.000588 BMRC Final Status Survey 2015 02 07 S3-01 Americium-241 0.057 +/-

0.114 0.192 pCi/g 2.1 0.027 0.114 BMRC Final Status Survey 2015 02 07 S3-01 Carbon-14

-0.100 +/-

0.220 0.470 pCi/g 12

-0.008 BMRC Final Status Survey 2015 02 07 S3-01 Cesium-137 0.021 +/-

0.048 0.084 pCi/g 11 0.002 BMRC Final Status Survey 2015 02 07 S3-01 Cobalt-60 0.000 +/-

0.012 0.045 pCi/g 3.8 0.000 BMRC Final Status Survey 2015 02 07 S3-01 Europium-152 0.038 +/-

0.081 0.196 pCi/g 6.9 0.006 BMRC Final Status Survey 2015 02 07 S3-01 Europium-154 0.024 +/-

0.141 1.080 pCi/g 8

0.003 BMRC Final Status Survey 2015 02 07 S3-01 Nickel-63 0.160 +/-

2.800 6.290 pCi/g 2100 0.000 BMRC Final Status Survey 2015 02 07 S3-01 Plutonium-238 0.001 +/-

0.023 0.068 pCi/g 2.5 0.000 BMRC Final Status Survey 2015 02 07 S3-01 Plutonium-239/24 0.009 +/-

0.021 0.048 pCi/g 2.3 0.004 BMRC Final Status Survey 2015 02 07 S3-01 Silver-108m 0.006 +/-

0.028 0.062 pCi/g 8.2 0.001 BMRC Final Status Survey 2015 02 07 S3-01 Total Beta Stront 0.131 +/-

0.131 0.213 pCi/g 1.7 0.077 BMRC Final Status Survey 2015 02 07 S3-01 Tritium 0.345 +/-

0.561 0.942 pCi/g 110 0.003 BMRC Final Status Survey 2015 02 07 S3-02 Americium-241 0.051 +/-

0.120 0.204 pCi/g 2.1 0.024 0.112 BMRC Final Status Survey 2015 02 07 S3-02 Carbon-14

-0.076 +/-

0.220 0.476 pCi/g 12

-0.006 BMRC Final Status Survey 2015 02 07 S3-02 Cesium-137 0.031 +/-

0.060 0.103 pCi/g 11 0.003 BMRC Final Status Survey 2015 02 07 S3-02 Cobalt-60 0.006 +/-

0.038 0.128 pCi/g 3.8 0.002 BMRC Final Status Survey 2015 02 07 S3-02 Europium-152 0.016 +/-

0.129 0.234 pCi/g 6.9 0.002 BMRC Final Status Survey 2015 02 07 S3-02 Europium-154 0.039 +/-

0.114 0.741 pCi/g 8

0.005 BMRC Final Status Survey 2015 02 07 S3-02 Nickel-63 0.391 +/-

2.700 6.070 pCi/g 2100 0.000 BMRC Final Status Survey 2015 02 07 S3-02 Plutonium-238 0.020 +/-

0.037 0.071 pCi/g 2.5 0.008 BMRC Final Status Survey 2015 02 07 S3-02 Plutonium-239/24 0.015 +/-

0.030 0.059 pCi/g 2.3 0.007 BMRC Final Status Survey 2015 02 07 S3-02 Silver-108m 0.009 +/-

0.048 0.086 pCi/g 8.2 0.001 BMRC Final Status Survey 2015 02 07 S3-02 Total Beta Stront 0.115 +/-

0.129 0.212 pCi/g 1.7 0.068 BMRC Final Status Survey 2015 02 07 S3-02 Tritium

-0.048 +/-

0.524 0.937 pCi/g 110 0.000 Page 1 of 2 Appendix H3 - Class 3 Stockpile Soil Analyses

Client Project Sample ID Parameter Results Sigma MDC Units DCGL Fraction SOF BMRC Final Status Survey 2015 02 07 S3-03 Americium-241

-0.049 +/-

1.960 0.274 pCi/g 2.1

-0.023 0.075 BMRC Final Status Survey 2015 02 07 S3-03 Carbon-14

-0.154 +/-

0.210 0.463 pCi/g 12

-0.013 BMRC Final Status Survey 2015 02 07 S3-03 Cesium-137 0.020 +/-

0.056 0.099 pCi/g 11 0.002 BMRC Final Status Survey 2015 02 07 S3-03 Cobalt-60 0.005 +/-

0.023 0.130 pCi/g 3.8 0.001 BMRC Final Status Survey 2015 02 07 S3-03 Europium-152

-0.009 +/-

0.032 0.239 pCi/g 6.9

-0.001 BMRC Final Status Survey 2015 02 07 S3-03 Europium-154 0.005 +/-

0.021 0.792 pCi/g 8

0.001 BMRC Final Status Survey 2015 02 07 S3-03 Nickel-63

-0.144 +/-

2.700 6.140 pCi/g 2100 0.000 BMRC Final Status Survey 2015 02 07 S3-03 Plutonium-238 0.011 +/-

0.031 0.068 pCi/g 2.5 0.004 BMRC Final Status Survey 2015 02 07 S3-03 Plutonium-239/24

-0.002 +/-

0.004 0.048 pCi/g 2.3

-0.001 BMRC Final Status Survey 2015 02 07 S3-03 Silver-108m

-0.008 +/-

0.048 0.085 pCi/g 8.2

-0.001 BMRC Final Status Survey 2015 02 07 S3-03 Total Beta Stront 0.182 +/-

0.141 0.221 pCi/g 1.7 0.107 BMRC Final Status Survey 2015 02 07 S3-03 Tritium

-0.081 +/-

0.510 0.912 pCi/g 110

-0.001 BMRC Final Status Survey 2015 02 07 S3-04 Americium-241 0.070 +/-

0.109 0.181 pCi/g 2.1 0.033 0.264 BMRC Final Status Survey 2015 02 07 S3-04 Carbon-14 0.019 +/-

0.220 0.474 pCi/g 12 0.002 BMRC Final Status Survey 2015 02 07 S3-04 Cesium-137

-0.008 +/-

0.059 0.107 pCi/g 11

-0.001 BMRC Final Status Survey 2015 02 07 S3-04 Cobalt-60 0.004 +/-

0.014 0.107 pCi/g 3.8 0.001 BMRC Final Status Survey 2015 02 07 S3-04 Europium-152 0.135 +/-

0.202 0.239 pCi/g 6.9 0.020 BMRC Final Status Survey 2015 02 07 S3-04 Europium-154 0.033 +/-

0.069 0.696 pCi/g 8

0.004 BMRC Final Status Survey 2015 02 07 S3-04 Nickel-63 0.457 +/-

2.700 6.090 pCi/g 2100 0.000 BMRC Final Status Survey 2015 02 07 S3-04 Plutonium-238 0.012 +/-

0.028 0.058 pCi/g 2.5 0.005 BMRC Final Status Survey 2015 02 07 S3-04 Plutonium-239/24

-0.002 +/-

0.004 0.043 pCi/g 2.3

-0.001 BMRC Final Status Survey 2015 02 07 S3-04 Silver-108m 0.011 +/-

0.039 0.082 pCi/g 8.2 0.001 BMRC Final Status Survey 2015 02 07 S3-04 Total Beta Stront 0.332 +/-

0.174 0.258 pCi/g 1.7 0.195 BMRC Final Status Survey 2015 02 07 S3-04 Tritium 0.460 +/-

0.570 0.939 pCi/g 110 0.004 BMRC Final Status Survey 2015 02 07 S3-05 Americium-241

-0.050 +/-

2.140 0.306 pCi/g 2.1

-0.024 0.127 BMRC Final Status Survey 2015 02 07 S3-05 Carbon-14 0.101 +/-

0.220 0.466 pCi/g 12 0.008 BMRC Final Status Survey 2015 02 07 S3-05 Cesium-137

-0.006 +/-

0.095 0.140 pCi/g 11

-0.001 BMRC Final Status Survey 2015 02 07 S3-05 Cobalt-60

-0.008 +/-

0.121 0.161 pCi/g 3.8

-0.002 BMRC Final Status Survey 2015 02 07 S3-05 Europium-152 0.002 +/-

0.037 0.264 pCi/g 6.9 0.000 BMRC Final Status Survey 2015 02 07 S3-05 Europium-154

-0.008 +/-

0.504 0.952 pCi/g 8

-0.001 BMRC Final Status Survey 2015 02 07 S3-05 Nickel-63 2.180 +/-

2.900 6.360 pCi/g 2100 0.001 BMRC Final Status Survey 2015 02 07 S3-05 Plutonium-238 0.002 +/-

0.021 0.061 pCi/g 2.5 0.001 BMRC Final Status Survey 2015 02 07 S3-05 Plutonium-239/24

-0.004 +/-

0.005 0.052 pCi/g 2.3

-0.002 BMRC Final Status Survey 2015 02 07 S3-05 Silver-108m 0.009 +/-

0.050 0.090 pCi/g 8.2 0.001 BMRC Final Status Survey 2015 02 07 S3-05 Total Beta Stront 0.232 +/-

0.118 0.165 pCi/g 1.7 0.136 BMRC Final Status Survey 2015 02 07 S3-05 Tritium 0.828 +/-

0.615 0.965 pCi/g 110 0.008 BMRC Final Status Survey 2015 02 07 S3-06 Americium-241

-0.015 +/-

0.117 0.204 pCi/g 2.1

-0.007 0.108 BMRC Final Status Survey 2015 02 07 S3-06 Carbon-14 0.114 +/-

0.230 0.471 pCi/g 12 0.010 BMRC Final Status Survey 2015 02 07 S3-06 Cesium-137 0.000 +/-

0.014 0.072 pCi/g 11 0.000 BMRC Final Status Survey 2015 02 07 S3-06 Cobalt-60

-0.010 +/-

0.071 0.135 pCi/g 3.8

-0.003 BMRC Final Status Survey 2015 02 07 S3-06 Europium-152 0.084 +/-

0.154 0.175 pCi/g 6.9 0.012 BMRC Final Status Survey 2015 02 07 S3-06 Europium-154 0.076 +/-

0.163 0.750 pCi/g 8

0.009 BMRC Final Status Survey 2015 02 07 S3-06 Nickel-63

-0.140 +/-

2.700 6.200 pCi/g 2100 0.000 BMRC Final Status Survey 2015 02 07 S3-06 Plutonium-238

-0.010 +/-

0.009 0.069 pCi/g 2.5

-0.004 BMRC Final Status Survey 2015 02 07 S3-06 Plutonium-239/24

-0.004 +/-

0.006 0.055 pCi/g 2.3

-0.002 BMRC Final Status Survey 2015 02 07 S3-06 Silver-108m

-0.013 +/-

0.043 0.076 pCi/g 8.2

-0.002 BMRC Final Status Survey 2015 02 07 S3-06 Total Beta Stront 0.112 +/-

0.107 0.170 pCi/g 1.7 0.066 BMRC Final Status Survey 2015 02 07 S3-06 Tritium 3.080 +/-

0.802 0.937 pCi/g 110 0.028 BMRC Final Status Survey 2015 02 07 S3-07 Americium-241 0.137 +/-

0.163 0.267 pCi/g 2.1 0.065 0.178 BMRC Final Status Survey 2015 02 07 S3-07 Carbon-14 0.033 +/-

0.220 0.466 pCi/g 12 0.003 BMRC Final Status Survey 2015 02 07 S3-07 Cesium-137 0.000 +/-

0.067 0.125 pCi/g 11 0.000 BMRC Final Status Survey 2015 02 07 S3-07 Cobalt-60 0.042 +/-

0.053 0.115 pCi/g 3.8 0.011 BMRC Final Status Survey 2015 02 07 S3-07 Europium-152 0.124 +/-

0.234 0.290 pCi/g 6.9 0.018 BMRC Final Status Survey 2015 02 07 S3-07 Europium-154 0.042 +/-

0.096 0.917 pCi/g 8

0.005 BMRC Final Status Survey 2015 02 07 S3-07 Nickel-63

-0.769 +/-

2.600 6.090 pCi/g 2100 0.000 BMRC Final Status Survey 2015 02 07 S3-07 Plutonium-238 0.013 +/-

0.030 0.062 pCi/g 2.5 0.005 BMRC Final Status Survey 2015 02 07 S3-07 Plutonium-239/24

-0.004 +/-

0.005 0.053 pCi/g 2.3

-0.002 BMRC Final Status Survey 2015 02 07 S3-07 Silver-108m 0.016 +/-

0.051 0.091 pCi/g 8.2 0.002 BMRC Final Status Survey 2015 02 07 S3-07 Total Beta Stront 0.106 +/-

0.134 0.223 pCi/g 1.7 0.062 BMRC Final Status Survey 2015 02 07 S3-07 Tritium 0.946 +/-

0.612 0.938 pCi/g 110 0.009 Page 2 of 2 Appendix H3 - Class 3 Stockpile Soil Analyses

The State University of New York University at Buffalo Buffalo Materials Research Center Final Status Survey Report APPENDIX I -

VARIATIONS FROM THE DECOMMISSIONING PLAN

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Minor changes to the DP that do not change the original intent of the DP and which do not involve an unreviewed safety question may be approved by the Operating Committee, a sub-group of the RDSC, as defined in the BMRC Technical Specifications and this section. The licensee may make changes to the DP without prior NRC approval provided the proposed changes do not:

i.

Require Commission approval pursuant to 10 CFR 50.59; ii.

Use a statistical test other than the Sign test or WRS test for evaluation of the FSS; iii.

Increase the radioactivity level, relative to the applicable derived concentration guideline level, at which an investigation occurs; iv.

Reduce the coverage requirements for scan measurements; v.

Decrease an area classification (i.e., impacted to unimpacted; Class 1 to Class 2; Class 2 to Class 3; or Class 1 to Class 3);

vi.

Increase the Type I decision error; vii.

Increase the DCGLs and related MDCs (for both scan and fixed measurement methods); or viii.

Result in significant environmental impacts not previously reviewed.

Appendix I - Variations from the Decommissioning Plan



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