ST-HL-AE-4073, Annual Radiological Environ Operating Rept 1991

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Annual Radiological Environ Operating Rept 1991
ML20095K054
Person / Time
Site: South Texas  STP Nuclear Operating Company icon.png
Issue date: 12/31/1991
From: Jump W
HOUSTON LIGHTING & POWER CO.
To:
NRC OFFICE OF INFORMATION RESOURCES MANAGEMENT (IRM)
References
ST-HL-AE-4073, NUDOCS 9205040293
Download: ML20095K054 (68)


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The Light c o m p a n y South 1 ct as 1*rojn t 1;lu tric Generating

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' . .Ilus Station

. _ _289 llouston Lighting & I,ow er._.,_. __ . _ _ . . . _ _ . . _ . . _ _ _ _ .%dsworth, Tenas 774 April 30, 1992 ST-liL-AE-4 07 3 File No. G07 10CFR50.73 U. S. Nuclear Regulatory Commiscion Attention Document Control Do'x Washington, DC 20555 South Texas project Units 1 & 2 Docket Nos. STN 50-498 & 50-499 Annual Radioloaical Environmental Onoratino Rooprt for 1991 Pursuant to the South Texas Project (STP) Technical Specification 6.9.1.3, attached is a copy of the Annual Radiological Environmental Operating Report for the calendar year 1991.

If you should have any questions on this matter please contact Mr. H. W. Bergendahl at (512) 972-7779.

h< vet .- s William J. Jdp Manager, Nuclear Licensing MKJ/lf Attachments: Annual Rr11ological Environmenta)

Operating Report for 1991

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RREP\92112002.1&2 A Subsidiary of Houston Industries Inn a,; orated 9205040293 911231 PDR ADOCK 05000498 [6Af F- pay lll

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I llouston Lighting & l'ower Company South Texas Project Elutric Generaiing Station S -HL- E- 4 Page 2 cc t -

  • Regional Adminis' Mte t, Region IV Rufus S. Scott Nuclear Regulate- d?Amission Associate General Counsel 611 Ryan Plaza Dr <e, Suite 400 Houston Lighting & Power Company Arlington, TX 76011 P. O. Box 61867 Houston, TX 77208 ,

o George Dick, Project Manager U.S. Nuclear Regulatory Commission INPO '

Washington, DC 20555 Records Center 1100 circle 75 Parkway o J. I. Topia Atlanta, GA 30339-3064 Senior Resident Inspectcr c/o U. S. Nuclear Regulatory- Dr. Joseph M. Hendrie Commission 50 Bellport Lane P- O. Box 910 Bellport, NY 11713 Bay City, TX 77414

  • D. K. Lacker J. R. Newman, Esquire Bureau of Radiation Control Newman & Holtzinger, P.C. Texas Department of Ilealth j 1615lb Street, N.W. 1100 West 49th Street Washington, DC 20036 Austin, TX 78756-3189 D. E. Ward /T. M. Puckett Central Power and Light Company P. O. Box 2121 Corpus Christi, TX 78403

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J. C. Lanier/M. B. Leo City of Austin Electric Utility Department P.O. Box 1088 Austin, Th 78767 '

K. J. Fiedler/M. T. Hardt City Public Service Board P. O. Box 1771 San Antonio, TX 78296 t

  • NOTE: The above copies distributed without attachments except if noted by asterik (*).

Revised 10/11/91 L4/NRC/

l South Texas Project Electric Generating Station AnnualRadiological EnvironmentalOperating Report 19 91 k* ..n.

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, , .; , ,y ,4 ED =- , ;, y.' YL EXCELLENCE THROUGH SERVICE, TEAMWORK, PRIDE

ANNUAL RADIOLOGICAL ENVIRONMENTAL OPERATING REPORT FOR SOUTH TEXAS PROJECT ELECTRIC GENERATING STATION

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1991 PREPARED BY:

RADIOLOGICAL LABORATORY TECHNICAL SERVICES DEPARTMENT HOUSTON LIGHTING & POWER COMPANY APRIL 1992 i

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TABLE OF CONTENTS SECTION Executive Summary ............................................. 1-1 Site and Area Description ..................................... 2-1 Program Description ........................................... 3-1 Analysis of Results_and Trends ................................. 4-1

. Land Use Census ................................................ 5-1 Quality Assurance .............................................. 6-1 Addendum of Tables ............................................. 7-1

-Table 1 - Radiological Environmental Monitoring

  • P r o g ra m . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . p . 7 - 1 Table 2 - Sample Submission Code Information i List ...................................... p. 7-7 Table 3 - Sample Media Codes ........................ p. 7-14 Table 4 - Sample _ Collection and Analysis Deviations ................................ p. 7-15 Table 5 - 1991 Annual Radiological Environmental operating Report Summary . . . . . . . . . . . . . . . . . . p. 7-16 Table 6 - Performance Summary for Program Controls .................................. p. 7-46

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EXECUTIVE

SUMMARY

The 1991 Radiological Environmental Operating Report provides_the  ;

results of data collected and analyzed for the Radiological  ;

Environmental Monitoring Program (REMP) during 1991. 3 The objective of the REMP is to verify that the South Texas Project .

Electric Generating Station (STPEGS) is operating within its design parameters and to assure effluent release into the environment do not result in a significant dose to individuals off-site. This '

objective is accomplished by thoroughly evaluating known and  ;

predictable relationships between the plant and the environment  !

while performing additional evaluations where unique relationships ,

exist. Approximately 2,000 analyses of air, water, soils, sediments, vegetation, and meat products woro performed during 1991.-

No nuclides of interest or elevated levels of radioactivity were measured in' samples taken from the environment around the plant site. This has special significance since the- analysis sensitivities were significantly lower than required. The tritium ,

level measured on-site in the Main Cooling Reservoir (McR) was one third the predicted concentration.

A special study was performed in 1991 to evaluate the behavior of radionuclides in liquid offluents released into the McR. This study showed that the majority of the Cobalt-60 in the M"7 is fixed to the bottom sediments and is not expected to migrate off-site to the river. Calculations show that the dose from the Cobalt-60 to

  • a hypocnetical person living on-site and consuming water end fish i from the MCR was one thousandth of the exposure from natural resources. >

In conclusion, the dath shows no radioactive material originating from STPEGS has been deposited in the environment arount. the site and the doses calculated based on measured -ef fluents in 1991 indicate that STPEGS operations continue to have no adverse effect on the general public or the environment.

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SITE & AREA DISCRIPTION

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SITE AND AREA DESCRIPTION The South Texas Project Electric Generating Station (STPEGS) is located in rural southwest Matagorda County approximately 12 miles south of Bay City and 90 miles southwest of Houston. Matagorda County has a population of approximately 38,000. The site is approximately 11 miles north of Matagorda Bay / Gulf of Mexico and lies on the west bank of the Colorado River.

Within a ten-mile radius of STPEGS there are several ccmmunities of a few hundred people or less. Matagorda, being the c.xception, is located 8 miles southwest of the site and has a population of nearly 2,000. The nearest full-time residence is in the west-southwest sector approximately 2.4 miles from the containment buildings. The nearest development is Selkirk Island / Exotic Island which represents approximately 500 homesites and is located 4 miles southeast of the containment buildings. These developments are primarily utilized for recreational purposes or retirement investment. The nearest population center, as defined in 10CFR20 is the city of Victoria, Texas, which had a population of 55,076 in 1990. Victoria's nearest corporate boundary is 59 miles west of the site.

STPEGS consists of two 1250 megawatt Westinghouse Corporation pressurized water reactors (PWR). Unit 1 received a low-power testing license on August 21, 1987, obtained initial criticality on March 8, 1988 and was declared commercially operational by HL&P management on August 25, 1988. Unit 2 received a low-power testing license on December 16, 1988, obtained initial criticality on March 12, 1989 and was declared commercially operational on June 19, 1989.

The units are situated on an approximately 12,300-acre site. A 10 mile radius map and site area map can be found in the Program _

Description section of this report for reference. Si.:ty-five (65) acres are modified or occupied by the plant and plant facilities ,

while approximately 7,000 acres make up the aboveground cooling reservoir. Numerous smaller bodies of water on-site include the essential cooling pond, Kelly Lake and a number of drainage ditches, sloughs and depressions. The majority of the land east of the cooling reservoir and bounded by the Colorado River is leased for cattle grazing. Approximately 1700 acres remain in a more natural state as a lowland habitat. The surrounding area is characterized by coastal plain with farmland and pasture predominating. The local relief of the area is characterized by flat land, approximately 23 feet above sea level.

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I The economic base for this area is agricultural related.

Consequently, the majority of the land in the vicinity of the site l' is_ utilized for the production of five major agricultural crops:

beef, rice, milo, soybeans and cotton. In addition to the agriculture industry, there is commercial fishing in the lower Colorado River, East and West Matagorda Days, Intercoastal Canal and the Gulf of Mexico. Currently shrimp, oysters, and etab are the target commercial fish while fin fishes have been less important commercially in recent years.

Although the surrounding area is heavily cultivated, significant amounts of woodlands, thicket, brush, fields, marsh and open water exist to support wildlife. The area lies in the southern region of the central flyway and hosts an abundance of migratory birds )

while the local estuary environments provide the necessary habitat .

for a variety of fish types to complete their life cycles. The I area-is well suited for recreational hunting and fishing.

The climate of the region is subtropical maritime, with continental influc 'ce, and is characterized by short mild winters and long hot and humid summers. The winter season's average temperature is 55'F and'the summer's average is 80*F, with an annual monthly average of 68'F. Rainfall is usually abundant throughout the year with a yearly average of 42 inches. The prevailing wind direction is from south-southeast from spring through fall, shifting to north-northeast-during the winter monthr,.

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PROGRAM DESCRIPTION

Stations identified on the maps can be referenced to station information found in Table 2. Figure 2 is a zone map used to identify mobile sample stations (e.g. active / inactive agricultural areas, wildlife etc.). Zone stations are not specified in Table

2. The zone station number is determined in the following manner when referencing Figure 2:

o The first character of the station number is "Z" to identify it as a zone station.

o The accond character is the direction coordinate numboru 1-8.

o The third character is the distance from site numbers 1-6.

Figure 3 is a map of the MCR divided into five regions. Region I is located closest to the effluent release point into the MCR and Region V the most distant. -The Ecn is also divided into hundreds of grids (not shown) that have been cross referenced to their respective latitude and longitude coordinates. These grids can be evaluated as distinct sample locations or combined with other grids making up an MCR region.

Procram Statug Ninety-nine p(rcent of the collection and analysis requirements found. in Table 1 were completed in 1991. ~ The seven prefram requirementa not completed are discussed in Table 4, Femple Collection- and Analysis Deviations. All required analysis sensitivities were met and no measurements resulted in a non-routine report. j t.

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i Critical pathway analysis requires that samples be taken from aquatic, atmospheric, and terrestrial environments. Samples of various media are selected to obtain data for evaluation of potuatial radiation dose to man. Sample types are based on established pathways and through experience gained at existing

, nuclear facilities. A special study was also performed by Houston

' ighting & Power in conjunction with Texas A&M University to evaluate site-specific wildlife sample types. Sample locations were determined af ter considering site meteorolNy, Colorado River hydrology, local demography and land use. Sampling locations were further evaluated and modified according to field and analysis I experience. i Sampling locationt. may be referred to as an " indicator" or l

" control" station. Indicator stations are locations on- or off- I site that are assumed to be influenced by plant discharges during -l plant operation. Control stations are locations where plant influence is not expected. Though most samples analyzed are i accompanied by a control samole, it should be noted that this  !

practice is not always possible or meaningful with all media types. '

Fluctuations in the concentration of radionuclides and direct radiation exposure at indicator stations will ultimately be evaluated with respect to analogous fluctuations at control stations. Indicator stations will also be compared and evaluated I relative to characteristics identified during the preoperational

, REMP and meteorological conditions.

Proctram ImDiementation l The minimum collection and analysis requiremants are described in Table 1, Radiological Environmental Monitoring Program. Additional samples from same or alternate locations may be collected and additional analytical analyses may be performed. Other operating  !

requirements, including analysis sensitivity sad non-routine operating, are described in the off-site Dose Calculation Manual (ODCM). All requirements are monitored and controlled for compliance.

Table 2 gives the locat2 on description for the sample station, vector and media type sampled. The table is enhanced to differentiate between designated control locations, on-site indicator locations and off-site indicator locations. Table 3 is a listing of media code descriptions used in Table 2.

A number of maps and sample collection location methods are used to implement the program. Figura 1 includes two maps that identify permanent sample stations. One map includes stations in a 10-mile radius while the other is limited to on-site stations.

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PROGRAM DESCRIPTION Objectives The South Texas Project Electric Generating Station initiated a comprehensive and fully implemented preoperational Radiological Environmental Monitoring Program (REMP) on July 1985. That program terminated on March 7, 1988 fulfilling the following objectives outlined in the NRC Regulatory Guide 4.1.

o Personnel training.

o Evaluation of procedures, equipment and techniques, o Identification of probable critical pathways to be monitored after the plant was in operation.

o Measurement of background levels and their variations along anticipated critical pathways.

Since March 8, 1988, the REMP's operational objective has been to verify-that the South Texas Project Electric Generating Station is operating within its design - parameters and to assure offluent releases into the environment do not result in a significant dose to individuals off-site. In doing so, the evaluation of sensitive environmental analyses will confirm a controlled and predictable plant operation that results in an insignificant impact on the environment.

p_esian Philosophy ,

The REMP was designed and implemented by Houston Lighting & Power.

The overall program design is written to meet the intent of the NRC November 1979 Branch Technical Position, An Accentqble Radioloolcal Div,ironmental Monitorina Procran. The REMP'n quality assurance program has been written to parallel the program described in NRC Regulatory Guide 4.15, 911ality Assurance _ for_ Radiolocical Monitorina Prm ram.. Furthermore, the REMP design and operating philosophy parallels the EPA / Health Physics Society Committee Report, Vooradina Environmental Radiatign . Deta, HFSR-2(1980) recommendation that, "if possible, -the impicmentation of all program aspects should be under the direction of one organization rather than fragmented into areas of separate group responsibilities so that continuity and overall understanding are

, maintained." The report also states that reliable results and interpretations come from programs formulated and implemented by

[ individur.ls who are - knowledgeable in all facets of the program.

Lastly, the report maintains that all aspects of the REMP have equal priorities and share primary objectives. In practice, sample selection and appropriate collection techniques heve been viewed as important as the employment of state-of-the-art detection equipment and data analysis methods. -

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ANALYSIS OF RESULTS & TRENDS - 1 L 1..-..:..._..__..__.__._-_.._____.___.____.._-_.._.____.._-._.__.__2___..-_____

ANALYSIS OF RESULTS AND TRENDS Annual Radiolocical Environmental OperaidDg.. Report Summary Table 5, 1991 Annual Radiological Environmental Operating Report Summary, is a digest of the REMP analytical data. All environmental analyses have been included in this evaluation including additional analyses not required by the minimal program. ' The summary has been formatted to resemble an NRC and industry standard. Modifications were made for the sole purpose of reading ease. The type of media is printed at the top 1cft of each page, , and the units of measurement are printed at the top right. The  : left-hand column contains the radionuclide followed by the total number of analyses of the radionuclide and the number of non-routine measurements in the second column. For the purpose of this report, "non-routine" is a result exceeding the values listed in , Table A-53 of the ODCM, Reporting Levels for Radioactivity Concentrations in Environmental Samples. The next column lists the average achieved Iower Limit of Detection - (LLD) for each analysis type and the LLD requirement. The limits are found in Table A-52 of the ODCM, Detection Capabilities for Environmental Sample Analysis. Those sampling stations which could conceivably- be . affected by the operation of STPEGS are identified as " Indicators." Results data are reported using two significant digits in order to , establish consistency in the report and to parallel established  ; conventions in similar reports. A. set of statistical parameters are calculated for each radionuclide for each media. The parameter, includes separate analyses for (1) the indicator stations, (2) the station having the highest annual mean concentration, and (3) the control stations. For each of these groups of data, the following is calculated: o The mean value (including negative values and values below the LLD). o The fraction of analyses that the results were greater than 3 times the random error. , o .The lowest and highest calculated concentration. Typically, the achieved LLDs are significantly lower than the required limits. As an example, LLDs for gross beta in water will average a factor of five below the requirement while the LLD for gross beta in air particulate will be orders of magnitude below the l- -committed level. In - the case of I-131 in drinking water, no committed LLD is indicated. The reasoning is drinking water in the vicinity of STPEGS originates from deep wells in which I-131, with its 8.04-day half-life along with the slow migration of surface water to the aquifer, dose not constitute a pathway. 4-1 j

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Similarly, there would also be no I-131 LLD indicated for stored grains (e.g. rice, soy bean, etc.) because of the long periods betwenn samplo harvest, sample collection and sample analyses. In summary, positive measurements (e.g. tritium in the MCR and Co-60 in the MCR bottom sediments) were within anticipated rangen. There were no positive measurements of nuclides of interest from samples collected of f-site. There were no non-routine measurementa and all the achieved average LLDs were less than the committed censitivities. Trggnd,Jna and Dnia_ DterpJetett. ign Data has been analyzed from a historical perspective as well as in comparison to critical variables such as wind direction. Figure 4 is a historical comparison of average monthly beta activity from three on-site indicator stations and a single control station for air particulate samples. The control data trends identically to on-site data in preoperational and operational years. This analysis demonstrates that plant operations is not resulting in impact on particulate contamination even at the most strategically located monitoring stations. Figure 5 shows the annual gross beta in air particulate samples in relationship to wind direction. The bar illustrates the mean value and associated il standard deviation. This graph also shows no significant difference between indicator stations and the control. The graph clearly shows that key indicator stations (#15 and #16) are not influenced by the plant although they are located in clore proximity to the plant and in a leeward location. Direct gamma radiation as measured by TLD is depicted in Figure 6. Again, the data from strategically located stations #15 and #16, shows no influence from plant operations. Figure 7 illustrates the tritium concentration in surface waters for eight quarterly composite samples. Stations #226 and #227 are off-site control and indicator stations, respectively. The remaining stations are on-site indicators with #216 representing the MCR and the others representing adjacent ditches and sloughs. The tritium concentration in the MCR is increasing at a predictable rate and will reach equilibrium at a level below the predicted 21,000 pCi/L stated in the Updated Final Safety Analysis Report (UFSAR). Tritium enters the sloughs and ditches by way of the MCR relief well system. The activity at these locations is considerably less than in the MCR cnd is variable depending on how much run-off (rain) has occurred. With the exception of a single analysis resulting in a Co-60 concentration of <1 pCi/L for an MCR sample no other nuclide of interest has been identified in any 4-2 ) 1

h surface water sample. This particular analysis was 30 times more sensitive than the required analysis sensitivity. Future trend.ing will include Co-60 in the MCR bottom sediments. Typically, the concentration levels range from nondetectable in MCR ilegion V to a few hundred pC1/Kg (dry weight) in MCR Region I (Figure 3). The majority of the co-60 La found in MCR Regions I and II. Co-60 has not been detected in on-site slough or ditches, or in off-site waterway bottom sediment sample. 4 w 4-3 l

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OI-Figure 7 HISTORICP' COMPRRISON OF TRITIUM RCTIVITY IN SURFRCE HRTER 1987 - 1991 25003 Fredicted Equitabrium Concentration in the f*CR (FSAR) 26000 - t_ et - m X - 15000 - A _j ym f~ + -

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l l l l 1 LAND USE CENSUS l l

l 1 LAND USE CENSUS P_u roo s_eRe_s_i.gn The 1991 Land Use Census was performed in accordance with NRC Regulatory Guide 4.8, E_Ily_ir_onmental Tec_ht_1Lg_a] Support Specificatioes for Nuclear Power Plants, which states " enumeration by using infcemation from county agricultural agents or other reliable sources" is acceptable and fulfills tne annual census requirements. Si.' teen individuals were contacted in support of the census and a list et their names and affiliation are on file, f' The regulatory guide)ints define the census scope in relatively narrow terms (e.g. neares? resident, nearest garden, nearest milk cow, etc.), but where additional information vac dnsirable (e.g. change in agricultural practices or irrigation n 3ds), a broader scope was applied. The arnual land use census process serves as an opportunity to assess the REMP and determine if program modifications nre deemed necessary. This assures that the surveillance activities are relevant a::d baned on current conditions. I'. forma tion is obtained prirarily from local authorities via direct contact or phone conversations. Additional sources included contact with utility personnel and information obtained while performing routine REMP field activitinn. ~ The five-mile radius area surrounding STPEGS was also surveyed by car. The primary objective was to verify the nearest resident in the sixteen meteorologice sectors and alse obtain other relevant information. Results The 1991 Land Use Census was submitted as a reference for the most _ current revision to the ODCM and the Semiannual Effluent Report. Highlights of the land use census are as follows: o Broadleaf vegetation sampling is performed at: the site boundary in the three most sensitive sectors and at a control location in lieu of the garden census. Broadleaf vegetation samples also satisfy the collection requirement when milk samples are not available, o Agricultural and ranching practices remained unchanged in 1991. Irrigation practices remained consistent with past years depending primarily on the canal system originating at the Lower Colorado River Authority (LCRA) f acility in Bay City. Production acreage for soybean and milo was slightly down from 1990 in Matagorda County, while cotton was more widely planted. County-wide total grain acreage was consistent with past years. 5-1 l

o No commercial dairies are locateel in Matagorda County. Milk from a dedicated cow and used exclusively for famil;r consumption is not commonly practiced. No milk supply of this type was-located. o Commercial vogotable farms (truck farms) are not located-in Matagorda County. From time-to-time an individual resident may operate--a small-volume fruit and vegetable stand with locally grown produce such as corn, pecans, and watermelon. However, these- produce stands sometimes offer produce that ja not locally grown. o The Army Corps of Engineers (ACE) have completed the redirection -of the Lower Colorado River into West Matagorda Bay. This project also includes the construction o f -. a diversion dam just south of the intercoastal canal on the Colorado River and the development of recreational area along the mouth of the Colorado River. The targeted completion date for the dam construction is late 1992. Permanent water quality and habitat changes are expected in the Lower Colorado River and Matagorda Bay once the project is completed. For example, 5,000 acres of wetland habitat is predicted to be created over the next few decades in Matagorda Bay. No definitive information was provided that might suggest g an impacc on the reservoir makeup schedule. However, it is speculated that the proposed dam will reduce tidal' flow and decrease salinity in region of the Colorado River near STPEGS's intake structure. t o The 1991 Land Use Census identifies the nearest resident in nine of the sixteen sectors within the five-mile radius' of STPEGS. Two additional sectors are also included because of the residents' close proximity to the five-mile radius reference. No changes are noted from the 1990 Land Use Census. Distance E_ectqr (annrox. miles) Location ESE 3.5 Selkirk Island SE , 3.5 Selkirk Island

         -SW            4.5              Citrus Grove                           r WSW           2.5              FM 521 W             4.5              FM 1095 WNW           4.0             Ashby-Buckey Road
         'NNW           3.5             Reynolds Ranch off FM 1468 N-            3.5            Reynolds Ranch off FM 1468 NW'           4.5            Wondirk Road E             5.5              FM 521 ENE           5.2              FM 2668 1

5-2 l

o There has been little change in the number of home sites (full time residents) within the five-: nile radius since the 1990 suryny. The number 'of home sites are approxinately 2001; and over 150 of t hese are located on Selkirk Island, four miles east of STPEGS. Matagorda County population was approximately 38,000 in 1991; virtually unchanged from the 1990 census. 1990 Op.gn Item A drainage ditch originating immediately northeast of the protected area on-site was identified in 1990 and added to the collection program. Changes to Part B of the ODCM reflecting this change have been approved. This item is now closed.

   , ,,-.. : ,    .;'ecommenda (;i ons The          ,

and Use Census did not produce any new information that 11t in changes to the REMP. The existing surveillance

        .             .ts continue to be effective in assessing the radiolog4. cal ital quality of STPEGS environs.

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                                                                                                                             -a QUALrrY ASSqq
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l (CALITY ASSURANCE Desion The quality assurance program for the Radiological Environmental Monitoring Program has been designed to meet the intent of - Regulatory Guides 4.15 Part- C and 4.1. EPA documents 600/7-77-088, 600/8-78-008, and 600/4-79-019 were also consulted in the overall program design. Quality is measured and assessed by four distinct methods:

1. Houston Lighting & Power Nuclear Assurance Department o Performs periodic surveillance of specific REMP activities throughout the year o Performs an annual comprehensive audit of the REMP o Provides for are independent technical review by a tecanical specialist
2. Radiological Laboratory Quality Assurance Program o Routine instrument control ch'ecks including calibrations and calibration verification b- o Initial and annual testing and analysis o Intralaboratory quality control analyses o Quarterly internal assessments
3. Interlaboratory Measurement Assurance Programs o Participation in the U.S. Environmental Protection Agency's Intercomparison Studies Program o Participation in the U.S. Citizens for Energy Awareness / National Institute of Standards-and Technology (USCEA/NIST) Measurnment Assurance Program for the Nuclear Industry o Participation in the Battelle Pacific Northwest Laboratories' Measurement Assurance Program.

o Participation-in an interutility measurement assurance program. 6-1

4. Periodic reviews by outside o (e.g. NRC, ANI, INPO, etc.) rganizations or agencies o

  • Perform programmatic content and assure license compleffectiveness reviews in order to establish tne degrc.iance and Results with select operational guidelinof es.

compliance 5 The program hasassessment process determined influence on sufficient depth the radiological to the radiological accurately monitorenvironmental program complies provisions to initiate with licensing quality and of the the plant's i environment. The departures from the requirem corrective regulatoryaction to requirements. The or limit radiologicalSix performance objectives weents are effective. prevent accuracy surveillance program. turnaroun,d , analytical scheduled precision, re identified They to ensure a successf include analytical u l quality controlcollection analysis percent and analysissensitivity, ca.mpl e criteria vary from 95-100 samples analyzed. compliance and the criteria depending on% complianm which is an Performance, goal performance results are objectives nave actual beenlimits of control availableattempt to weight Controls. found in '"wje The 6, summarized and . The identification Palformarce the performance and objectives has resulted in a high control of th for ?rogram Summary er quality program.e peru aance l Radioanalytical of capabilities w \ REMP.environmental media acceptable similar toerethe demonstrated by periodic testi ( specificallyTwo designed ng laboratory to measure measurementanalysis required by the the capabilities Battelleare the USEPA Interl b environmentalassurance programs Pa a radioanalytical oratory Com Testing Program. cific Northwest Laboratories 'parison Program and these programs is The Direct Radiation has been applied. illustrated in Figurca 8criteria acceptance for accuracy performance in a dradio n through 11 A 15% difference from the known is priWhere the criteria has licablo) not bprecision (where app the accuracy criteria was not e. m nted t in red. een met the percent

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Figure 8 4 I RL PERFORMANCE IN THE EPR INTERCOMPRRISON PROGRAM BY TEST CRTEGORY C 3 1991 o set C 45g

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Ttti I hI 3v " iba \n%i South Texas Project Electric Generating Station AnnualRadiological

                                                                                                          ~

EnvironmentalOperating Report 19 91 ADDENDUM OF TABLES l

                                                                                                              -)
  --- ~       -  . - . -   ,                   .- .                    ,. .. -                                           ;.     . . ;.                 3       ;,.
                                                                           ? TABLE.1' '

RADIOLOGICAL ENVIRONMENTAL MONITORING PROGRAM.

                                                                                  ' Collection                                    Analysis Exposure Pathway'                                 .

Routine, Nominal 1 . Minimum NominalLNumber;of-and/or, .. Sampling Collection Analysis Analysis 3 Sample: Media Sample 1 Locations' Mode Frequency Figure . Type' Frequency "I

                                             ~

Direct Radiation Total' Stations ' 40' Continuous .Q uarterly D1 Er D2 GammaL Quarterly (TLDs) . 16 Stations'locatedLin sixteen sectors approximately 1 mile , from. containment; 16" Stations;1ocated'in sixteen sectors 4-6 miles from ' containment.' . 6 Stations located in;special' 1 interest.areasf(e.g.' school, .i population center) within a . 14-mile radius of containment. 2' Control Stations:.11ocated in .i areas of-minimal wind 'I directioni(W, ENE)v10-15' miles from containment. i Airborne , Total' Stations:' il Continuous Weekly D1 & D2 Weekly.

. a. Radiciodine &. (5); ,
                                                                                                                                                     ~

Particulates 3 Stations located at the exclusion zone, approximately 1-mile from~ containment in'the ' N, NNW,cand'NWfsectors.- 1 Station locatedlin Bay City, i 14 miles from containment. ~ 1 Control Station located in.'a i minimal' wind' direction (W).11 ~ ,

b. Soils (7)- . Grab Annually D1 & D2 Gamma- l 5 Same'as-air stations. Isotopic l

7-l'

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TABLE 1
                               ~ RADIOLOGICAL ENVIRONMENTAL' MONITORING PROGRAM i

Co:Llection Analysis ~ Exposure Pathway 7 . . _ . , Routine . Nominal ~ Minimum and/or Nominal 1Numberfof- Sampling _ Collection Analysis Analysis:; ..; . Sample Media Sample . . Locations- ' Mode' Frequency Figure Type Frequency " 2 Stations.locatedLadjacent-to farms within15 miles of containment Waterborne' Total Stations: 21

a. Surface (7) . ..

1 1 Station'. located =in reservoir Composite Monthly' D1 & D2 Gamma-' Monthly at point.of. reservoir blowdown (grab, if Isotopic , to Colorado' River, composite Tritium. Quarterly 1 Control' Station located not Composite above the site on the Colorado available) River.not1 influenced by plant: discharge.: , 1 Station approximately 2 miles downstream from-blowdown entrance into' Colorado River. - 1 Station' located near Site. . Grab Quarterly Gamma- ,According , boundary:inLthe.-Little Robbins Isotopic to Sloughe . Tritium collec-i 1 Station. located near Site ' tion-boundary inLthe1Enst Fork of frequency > Little-Robbins 1 Slough. +

l' Station located near Site- ,

, boundary'injthe, West: Branch of the' colorado. River . 1 Stationilocated:in drainage ditch. north.of reservoir that empties'into the Colorado River upstream of the reservoir makeup. pumping ' facility. j i 7-2  !

u . i, TLDLE 1 RADIOLOGICAL EWIRONMENTAL MONITORING P7.OGRAM Collection Analysis Routine Nominal Minimum Exposure Pathway Analysis Analysis Nominal ud3or of Sampling Collection and/or Sample L_ cations Mode Frequency Fimare Type ' Frequency i Sample Media l

o. Ground (2) quarterly D1 Gamma- According 1 Station located at well Grab Isotopic to upgradient from the reservoir Tritium collec-in the shallow aquifer.

tion 1 Station located at well frequency l downgradient in the shallow aquifer.

c. Portable Water (9) Monthly D2 Gamma- Monthly 1 Station located on site. Grab Isotopic 1 Control Station at Bay City Gross Tritium Quarterly Composite
d. Eediment (10) Grab Semi- D1 & D2 Gamma- According 1 Station located near site annually Isotopic tc boundary in the Little Robbins collec-Slongh. tion

( ) 1 Station located near site frequency l boundary in the East Branch of the Little Robbins Slough. j 1 Station located near Site in the West Branch of the Colorado River. 1 Control Station located above the site on the Colorado River not influenced by plant discharge. 7-3

                                                                                                                 ,      w.           , --          ,,

TABLE l'- RADIOLOGICAL ENVIRONMENTAL MONITORING'PRosRAM: , d

                                                              -Collection'                                          Analysis                          ;

Exposure' Pathway- _ .

                                                                       > Routine        Nominal                       "8 Minimum and/or'.                 - Nominal Number:of1                 Sampling. Collection               Analysis Analysis:                       -

Sample Media. FrequencyL Figure

                                   - Sample Locations                     Mode                               Type:        Frequency.

[ 1 Station' located'approxim-'~ ately'2 miles' downstream from 4 blowdown entrance into1the g Colorado' River.- . 1 Station. located in; reservoir at' point of reservoir: blowdown

                                                                                                                                                   .i to-Colorado River.-

1 Station-located in' reservoir near circulating l water. < discharge. ' 1 Station located in' thel , Colorado, River where. drainage , ditch: empties intoLit north of -i the reservoir makeup pumping ^ facility.. 1 Station ~ located in'the Colorado' River where the i  ! reservoirispillway discharge ' channel empties into it. , 1 Station' located _in: drainage;

  • ditch originating'NE'of pro-  !

tected area thatLcrosses Hwy l ~t 521 south'of maintenance road  ! and empties into Kelly Lake.

                                 -                                                                                                                    l (a soil' sample maybe_taken in:

lieu'of sediment sample during i dry conditions)..  ;

                                                                                                                                                   -t Ingestion        Total Stations: 10                                                                            l.                           ,

a... Milk --------------------Limited source of sample'in' vicinity of STPEGS------------  ! (Attemots will be'made to obtain samples when available) t _ 7 -- 4 ,

                             ,s            ,-    _. ,                            ,                 -.

__ . ~ .

l::1 MTABLE11 RADIOLOGICAL ENVIRONNENTAL MONITORING PROGRAM , Col:.ection L Analysis

                             ' Exposure Pathway               . .

ERoutine Nominal = Minimum and/or Nominal Number of- Sampling Collection Analysis Analysis-Sample' Media. -Sample' Locations Mode Frequency Figure Type. Frequency Grab Semi-: -D-3' Gamma- According monthly. Isotopic ta) when on collec-pasture, Low tion monthly Level frequency at I-131 other times i

b. Broadleaf (4) "

Vegetation 3 Stations located at the ' Grab Monthly D1 & D2 Gamma- According exclusion zone,Lapproximately during Isotopic . to .; l' mile from: containment,.in growing collec-the'N' NW, and NNW sectors.

                                                       ,                                                 season                                tion:               3 1' Control Station located in.                           (when                              frequency available) a minimal wind direction (W),
                                                                                                                                                       ~

11 miles from containment.

c. Agricultural ------No :samplef stations have been identified' in the vicinity of the Site.----- '
                                    . Products           Presentlytno: agricultural land is irrigated by water intoLwhich. liquid                                  '

l plant wastes will.be discharged. Agricultural products will be considered if.these conditions change.- '

d. Terrestrial & (3).

Aquatic 1 Sample. representing Grab Sample in D3 Gamma- According Animals commercially and/or'recrea-- season cnr Isotopic to- t (edible tionally important' species in semi-' collec-portions) vicinity of;STPEGS that'maybe- ' annually tion.  : influenced by plant operation' if they frequency  ;

                                                 *1 Samole of same.or analogous                         are not                                                    :

species in aren'notLinfluenced ' seasonal j by STPEGS. t I

                                                                                                                                                                   \

7-5 T

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I TABLE 1 RADIOLOGICAL ENVIRONMENTAL MONITORING PROGR7di Analysis Collection Routine Nominal Minimum Exposure Pathway Collection Analysis Analysis and/or Nominal Number of Sampling Frequency Sample Locations Mode Frequency Figure Type Sample Media 1 Sample of same or analogous l species in the reservoir. l Grab Quarterly D1 & D2 Gamma- According

e. Pasture Grass (2) Isotopic to 1 Station. located at the (when exclusion zone, in any of the cattle are collec-three sectors (N, NW, NNW). on tion pasture) frequency 1 Control Station located 11 milcc W.
f. nomestic Meat (1) 1 Sample represents domestic stock fed on crops exclusively grown within 10 miles of containment.

7-6 i . . , ,

TABLE 2 SAMPLE SUBMISSION CODE INFORMATION LIST STATION MEDIA CODE FIG CODE VECTOR LOCATION DESCRIPTION DR AI AP VB 1 001 1 mile N Exclusion Zone - FM 521 VP SO DR 1 002 1 mile NNE Exclusion Zone - FM 521 DR 1 003 1 mile NE Exclusion Zone - FM 521 DR 1 004 1 mile ENE Exclusion Zone - FM 521 DR 1 005 1 mile E STPEGS Visitor Center - FM 521 DR AI AP SO 1 006 3.5 miles ESE Site near reservoir makeup pumping facility DR 1 007 3.5 miles SE Site on Dike DR 1 008 0.5 mile SSE Site on Dike DR 1 009 0.25 mile S Site on Dike DR 1 010 0.25 mile SSW Site on Dike DR 1 011 0.5 mile SW Site on Dike DR 1 012 1 mile WSW Site on Dike DR 1 013 1 mile W Exclusion Zone - FM 521 DR . 1 014 1 mile WNW Exclusion Zone - FM 521 DR AI AP VB 1 015 1 mile NW Exclusion Zone - FM 521 SO VP DR AI AP VB 1 016 1 mile NNW Exclusion Zone - FM 521 SO VP DR- 2 017 6 miles N Buckeye - FM 1468

 + This station f..sy be used to obtain the required aquatic suples in the vicinity of STPEGS that may be influenceu by plant operations.

A This station is not found on one of the figures.

  • Control Station Media codes typed in bold satisfy collection requirement described in Table 1.

Station codes printed in bold identify offsite locations. 7-7

TABLE 2 SAMPLE SUBMISSION CODE INFORMATION LIST STATION HEDIA CODE FIG CODE VECTOR LOCATION DESCRIPTION DR AI AP SO 2 018 5.5 miles NNE Hoescht celanese Plant - FM 3057 DR 2 019 5 miles NE FM 2668 DR 2 020 5 miles ENE FM 2668 DR 2 021 5 miles E FM 521 DR 1 022 7 miles ESE Cain Chemical Plant, TX 60 DR 1 *023 16 miles ENE Intersection of FM 521 and FM 2540 DR 1 024 4 miles SSE Site on Dike DR 1 025 4 miles S Site on Dike DR 1 026 4 miles SSW Site on Dike DR 1 027 2.5 miles SW Site on Dike DR 1 028 5 miles WSW FM 1095

                                                                                                                                                                                                                         ~

DR SO 1 029 4.5 miles W FM 1095 DR 1 030 6 miles UNW Tres Palacios Oaks, FM 2853 DR 1 031 5.6 miles NW Wilson Creek Road DR 1 032 3.5 miles NNW FM 1468 DR AI AP SO 1 033 14 miles NNE Bay City DR 1 034 8 miles ENE Wadsworth

                                                        & This station may be used to obtain the required acustic samples in the vicinity of STPECS that may be influenced by plant operations.
                                                        & This station is not found on one of the figures.
  • Control Station Media codes typed in bold satisfy collection requirement described in Table 1.

Station codes printed in bold identify offsite locations. 7-8

TABLE-2 SAMPLE SUBMISSION CODE INFORMATION LIST STATION MEDIA CODE FIG CODE VECTOR LOCATION DESCRIPTION DR AI AP SO 1 035 8.5 miles SSE Matagorda DR 1 036 10 miles WSW College Port DR AI AP VB 1

  • 0 3 ', 11 miles W Palacios Substation VP SO DR 1 038 11 miles NW Blessing DR AI AP SO 1 039 9 miles NW El Maton DR 1 040 4.5 miles SW Citrus Grove DR 1 041 2.6 miles ESE Site on Dike DR 1 042 8.2 miles NW FM 459 at Tidehaven Intermediate School WG 1 205 4 miles SE Well #446A, .5 Mile north of reservoir blowdown canal (30' deep)

WG 1 206 4 miles SE Well #446, .5 Mile north of reservoir blowdown canal (75' deep) WG 1 *207 1.5 miles W Well #603A, .25 mile west cf TX 521 (75' deep) WG 1 *208 1.5 miles W Well #603B, .25 mile west of TX 521 (150' deep) WS 1 209 2 miles E i:elly Lake WD & 210 On Site App. roved drinking water supply from STPEGS WS SS' 1 211 3.5 miles S Site, E. Branch Little Robbins Slough

  + This station may be used to obtain the required aquatic sarnples in the vicinity of STPECS that may be influenced by ptant operations.

4 This station is not found on one af the figures.

  • Control Station tae dia codes typed in twid satisfy collectic,n requirement described in Table 1.

S'ation codes printed in bold identify offsite locations. 7-9

i TABLE 2

 ^

SAMPLE SUBMISSION CODE INFORMATION LIFT STATION MEDIA CODE FIG CODE VECTOR LOCATION DESCRIPTION WS SS 1 212 3.5 miles S Little Robbins Slough WS SS 1 213 3 miles SE Site, W. Branch Colorado River 1 214+ 2 miles E Makeup Water Discharge ~ (Reservoir) 1 215+ 1 mile SW Site, Reservoir - Circulating water discharge WS 1 2166 3 miles SSE Site, Reservoir - blowdown

                                                                      &                217+              Region 1 (mouth of Color' ado River to marker 1)

WS F1 F2 F3 & 218+ Region 2 (marker #1 to CC marker #27) 4 219+ Region 3 (marker #27 to Highway 521 overpass) CC 4 *220+ Region 4 (Highway 521 overpass to Bay City Dam) SS F1 F2 F3 4 *221 Region 5 (Above Bay City WS Dam) F1 F2 F3 CC 4 222+ >10 miles West Matagorda Bay CS OY 1 223+ >10 miles East Matagorda Bay 1 224+ >10 miles West Intercoastal Canal

                 + This station nay bc used to obtain the required aquatic saltples in the vicinity of STPEGS that may be influetrd by plant operations,
                & This station is r.ot found tm one of the figures.
  • Control Station Media codes typed in bold satisfy collection requirement descritxd in table 1.

Station redes printed in tntd identify offsite locations. 7-10

TABLE 2 I i SAMPLE SUBMISSION CODE INFORMATION LIST STATION MEDIA CODE FIG CODE VECTOR LOCATION DESCRIPTION 1 225+ >10 miles East Intercoastal Canal WS 1 *226 5.5 miles NNE Colorado River at Hoescht Celanese Plant WS 88 1 227 6 miles SE West bank of Colorado -- River 1.5 miles downstream of STPEGS across from channel marker #22 WD & *228 14 miles NNE Bay City Public water supply WS 1 229 1 mile SE Drainage ditch north of reservoir that emptica I into 'the Colorado River upstream of the reservoir makeup pumping facility SS 1 230 3.5 miles ESE Colorado River at point where drainage ditch (station #229) empties into it SO & 231 11 miles W Soil in vegetation plot at station #37 SO 1 232 9 miles NW Farmland behind statisn

                                                                                                    #39 F1 F2 F3 CC              1         233+            4.3 miles SE            Colorado River where SS WS                                                                      blowdown discharge channel empties into it SO                        1        234             1 mile NW               Farm across from station                             "
                                                                                                     #15 4 This station may be used to obtain the required aquatic sacples in the vicinity of STPESS that may be influenced by plant operations.
                          & This station is not found on one of the figures.
  • Control station Media codes typed in bold satisf y collection requirement described in Table 1.

Station codes printed in bold identi f y of f r,ite locatior.s. 7-11

TABLE 2 I SAMPLE BUEMISSION CODE INFORMATION LIST S'I ATION MEDIA CODE FIG CODE VECTOR LOCATION DESCRIPTION

                                                                                                                                                              ~

WG 1 235 3.8 miles S Well B-3 directly south from reservoir 4 236 STPEGS Protected Area WS 1 237 3.7 miles SE Blcwdown discharge channel from reservoir , WG A 238 3.7 miles S Reservoir relief well WG 1 *239 1 mile NW Well B-1B, near REMP sampling station #15 WS SO SS 1 240 1 mile E Drainage ditch originating NE of protected area that crossos Hwy 521 south of main entrance road and empties into Kelly Lake 1 241 <1 r.ile S Reservoir - Circulating water intake SS WS 1 *242 >10 miles NNE Colorado River where it intersects Highway 35 WS 1 243 >10 miles N Colorado River upstream of Bay City Dam at the LCRA pumping station F1 F2 F3 CC 3 300+ <1 mile S STPEGS Main Cooling Reservoir

                                     + This statice may be used to obtain the required aquatic saeples in the vicinity of S! PEGS that may be influer**d by plant cperations.

4 This station is not found on one of the figures.

  • Control Station Media codes typed in bold satisfy collection requirenent described in table 1.

Station codes printed in bold identif y of f site locationc. 7-12

TABLE 2 SAMPLE SUBMISSION CODE INFORMATION LIST

  • STATION MEDIA CODE FIG CODE VECTOR LOCATION DESCRIPTION SS F1 F2 F3 4 301-6316 Grids located in main CC cooling reservoir. One SS shall be taken at any of the grids 304, 305, 312-314, 323-326 and another one at any of the grids 364-566 or 584-586.

I

   + This station may be used to obtain the required aquatic samples in the vicinity of STPEGS that may be influenred by plant operations.

A This station is not found on one of the figures.

  • Control Station i Media codes typed in bold satisfy collection requirement described in Tote 1.

l Station codes printed in bold identify offsite locations. l l 7-13

TABLE 3 SAMPLE MEDIA CODES AI Airborne Radiciodine M5 Eggs AP Airborne Particulate M6 Game Dear AS (Ash Sludge) Ash tank M7 Alligator as (Water portion of.AS) M8 Rabbit BE Wild Blackberries N1 Pecans B1 Resident Dabbler Duck N2 Acorns B2 Resident Diver Duck OY Oyster B3 Migratory Dabbler Duck RA Rooted Aquatic B4 Migratory Diver Duck Vegetation B5 Goose SB Soybean B6 Dove SO Soil B7 Quail SS Shoreline Sediment B8 Pigeon UR Urine CC Crustacean Crab VB Broadleaf Vegetation CS Crustacean Shrimp L1 Banana Leaves DR Direct radiation L2 Cana Leaves FD Food' L3 Lettuce F1 Fish - Piscivorous L4 Turnip Greens F2 Fish - Crustacean & L5 Cabbage Insect Feeders L6 Collard Greens F3 Fish - Plantivores & VC Corn Detritus Feeders VP Pasture Grass MC Cow Milk VR Rice MG Goat Milk VS Grain Sorghum ML (Mixed Liquid) WD Drinking Water

     = Aeration Tank                    WG Ground Water al   (Water portion of ML)             WR Rain Water M1   Beef Meat                         US Surface Water M2- Poultry Meat M3 ' Wild Swine M4   Domestic Swine 7-14

g TABLE 4 BAMPLE COLLECTION AND ANALYSIS DEVIATIONS Location # Deviation l Media and/or Prescribed and/or Item Code Bample # REMP Activity Deficiency Comments 1 WG #255 quarterly sample collection / 4th qtr sample The sample location gamma isotopic and tritium not collected was unaccessible due analysis 2 to local floodinc. WG #239 quarterly sample collection / 3rd qtr sample The pump did not gamma isotopic and tritium not collected o$erate sufficiently analysis to collect a well sample. 3 WG #239 quarterly sample collection / 4th qtr sample The sample location gamma isotopic and tritium not collected was unaccessible due analysis to local floodina. 4 AI #016 monthly sampla collection / G10387 gamma isotopic analysis data rejected, results not Electrical and/or mechanical abnormal-reported ity or failure associated with the sampler. 5 AP 4016 B10397 weekly sample collection /. gross beta analysis data rejected, Electrical and/or results not mechanical abnormal-reported ity or failure associated with the sampler. 6 AI #001 monthly sample collection / G10923 gamma isotopic analysis data rejected, Electrical and/or [ results not mechanical abnormal-reported ity or failure associated with the sampler. 7 AP #001 B10933 weekly sample collection / gross beta analysis data rejected, Electrical and/or results not mechanical abnormal-reported ity or failure associated with the samnler. 7-15

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                                                                                               @          ea         e-         N           e-        O                 4           N            N          e e- 8 O          O         O           O           O             O             O            O          O 3w*                                 8           8          8           4           4          8         8           8                                       8                       8 N

et

-) r at w- w- wo we wo w- wO wO wo we 8

wo 8 woO wO 8

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                       *C K               CA kJ        O uJ             hs   O tu              su         w     Ow              esa         he    Ow                    aaJ   Q to         O iaJ            w 0

o H

                                           +

w eA. w

                                                        + 03      O.

w tA. w

                                                                              + t/1 o.

tu M. O. w en.

  • M ha e O.

tu N. O. ** tu .

                                                                                                                                                  + e.-

w . O. Su N. kJ eA. e tu eA. O. W N.

         #+            M                  @6                                                        t> @                                          e-**                                                                  ^

g w . e . N. N. M. N. e.- O. e.= . . N. *e* Om e e.a e . e.- . . O'.*.- 4. N. 4. O. *=.*e* x 4w Mw . w Mw N. w -w as w ew ew w .- w w 4 w Mw .e. h4 e a e e N. . N.

0.
  • w E

E n gn N >-

                       **                                                                                                                                                                                              tu in 3

O m. hJ I 2 7 MJ tu W hJ w H >= 0 0 E 2 2 2 2 3x

                       **7**                           2                                            2            2                                                             2           2                      4.J w k O         8'*

1& 4 ** W to en y^ e m w4 kK @ d% .D 8% W^ @ ,% & s* b 8% w tA &^ 4* ^ Wm W^ e W^ cr. ** O

                                         = e-         =., NO      es O       ** O        e.* O      *= E3      ** S3       edO        ed O        ** O          *d     O        - et)       6 63        *O        .sm'
                                                                                                                                                                                                                    =   sk s                                       * - * *    * = * =     = e-        -N            -N      = e-        *e         - e-
  • e- -N -N --e- "32 the O.

em MN M

                                                      *EN         en N      MN           MN          EN        "E N       to N        MN          MN           to N            ENM          EN        MN          Oa
 >     Q                       aE
                                  -       c,          -e w 24a cw at c

l

                                                                                  ,.a,    cw 4a
                                                                                                      ,w 4       , 4t w     c-M cw 4

cw 4r cw h 4w ,e w M cw M t.J

                                                                                                                                                                                                                  .a O      o M                                     O            e-          O         O            O          e-         e-         O           O          O             O             e.-           .-         O           O ,akt WO z-        e.-

h. M5

   & &                                                                                                                                                                                                            ** O C3 H 4 ht                                  e e%         ,% ,%      ,% e       ,% n        ee          ee         ea         m ,%        en         e ,%          ,%,%           mn           ,% ,%      s% ,%

w" gg M e e o e e - O O O - - e O O w ta h 4 2 NO e-+

                                                      .O O
                                                           +

NO e- + NO e- e

                                                                                        . ,i o e-     e NO e-     i NO e- +       N.

e +O NO

                                                                                                                                     +- +        N e-  O.

NO w* s NO e- e NO e- + No e- + X *=

                                                                                                                                                                                                                  +-
                      .O**                      ut         he          uJ         u.J         to         tu          w            J        taJ        kJ               tu          w            w          kJ          M M 9                                              e*                     G)         @           4                                4                            B)                     e*      2 2
                                         % 4A.        % M.       % .        % Ch.                   %          N          N O.        % M.       N to
                                                                                                                                                                           =  % .          N    *. N .         WG M                     ^

w O w O M O N O 4 %0 O O O. O e O N O O O NO O O M O N O e- ;z: == 3 e-4 a*u e- 8 8 8 1 3 3 S 3 3 4 3 3 3 3 0 2 we wN wo w e- wo we wo wo we wo wo wo wo O w H y,y 8 w =C

                      >- 2 m

O

  • O e--

O

                                                           +     e-O
                                                                       +    0+

O

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O N O, N+ O v8 N+ e- + O 0+ O e- + O

                                                                                                                                                                             ** +

O O+ O N+ O MJ w aC 4 O taJ O tu O4J Ow O taa uJ w O O tu O tu O taJ O tu ha O U tas + IA + e- e e O. Q O. 4 e e e- + e- e O. w 63 O. . w

                     == E                                              en.  + iA.       uJ M.                                                                          N.                  + O.      tu N.

S

                                                  *
  • kJ tu taa kJ e taJ - . Lu . gah Lak h3 4 ==

C3 f e w 2 . Om . e.= N. M. . e.- O. o.- .N. *.*e* O.*.= v . e.- ==. ea o.ne. N. N. m. 3 *=.e- w O ** 4w M.

                                                          %*      3w       Mw                w     e-      m*

to. w

                                                                                                                          **==       *= w        N,    .

e.- w %t w e* w M, = u y e s N. e e - e

  • h4 M ct O yM S .et 4
k. 7
                                                                                                                                                                                                                 >     M ou         == O               00           NM          O         Oe          O e-        O **       O **        O .-       O **        C *-                        O e+         Om         e    e-           >*

D'd E == OO OO O OO OO OO OO OO OO 00 s '5"1O*- OO OO O'* O N. m g Q w>= + + + + + e + + + + + + ++ + + + + + + + + + e + + + + U Lak aU WW W tu w tu kJ LaJ w ww w taJ w ha us W W WJ tu ha tu w w uk he w I. D D u ,taJ f>. O. e- .e 80 0 Las kJ

                             -                       EO. O.         .      O. a.       O. O.       a3. tA.               0%.e.       a). 4A. 23. O.        wr. eAa       N. tA.       .#. O. M. iA.      su tu           *= 4         NM           4        N e-        N e-        e- e=      MM         *=.=        e-==       MM             M e-          N e-        53 e-       ==*==       03 )

y O "C

                                                                                                                                                                                                                 > et h          Aw O                                                                                                                                                                                     OE kJ 2

O O  % s e a M 62 tu p-M

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o .e4 Ma2 A >- g y >- - w J x Ow u c < -) w 2O& O O O O O O O O O O O O O O - w .- ut

             *d     ( O'         Q      %            %          %          %           %           %          %          %           %          %              %             %           %           %                 Q Q            2     'rs    th           o'='       tA         m           4A          m          W          to          tA         4A            W              W           tA          4A J O' 4           N            **         N          N           N           N          N          N           N          N             N              N           N           N           eC w Q      ec = w
                    .- x wO x

0 2

p. hJ O O .=

ee aC >= es O ( W *C

                    .A                                                                 N                                                                                                             O l
             -3     M uJ                                        e-4 M           M-          4          O          CO          O          to            LA             to          O?          -t
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                                                                                                                                                .O.           O.             O.

e. J p- +a e- . e e *A. . # 4 aC e- e M. e en en c & O O C 5- J3 84 4

  • Q 2 m Z = u U Z w U U N N 2 m a X

i i l l i l l l

_ .. . . - . - - - - - . ~ . . . .- - . , . . - - . - - . . . - tn - ~n n - , , . , n .=. e. - . . , n .= M g M. g* en+ e8+ e5 e5 .5 .8+ e5 .5 45 .8+ ,o 8

                                                                                                                                                                                                    +

e8+ ,05 w O 8 E.  % R. * .  % . W . R. W . M M. ,4en W *- e M *e *= > N *==  % .=. M p, aw< we E C 1 o* O e. i O t O t O t O t O t O N. t O t O t O t O t s a e O O e e e e N O e O O e

                                    **                          wo          wo         wo                    wo                      wo                          -wo+                         wO        wo o

M 8r m

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                                                                                       + .       O. M.

N O. e. Ow O.**. e O. %t.

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O O. e O. . e-O. en. O.M. eN O. M -

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3. w. M.we. 3. ,, . W..e. E. .N. e. .
p. N
                                                                   .w                            N. w.       M. w.

M

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                                                                                        . .                                                                        .                          N.

o to em M na O

c. a e

na e

r. .

O mm e am N O m e. e c Q 4 en C MC .* O MO en O y e + + M O. N O. N O. + .* O. we O. N O. + **O. en C. - '+ M Ca

                                             = w               % M.              E.        )". N 4     ,4         , M.          ,,  3. .     %       E.          E       % .

W M. t.. , M. Kwu N ** en =# .= 4 4 >=. ** =t EO t I en O O @. O O O O O O . O O O O swg t t t .t t t 4 8 5 5 1 8 3 52 2< wN O we O wO O we w e- wO O we we wo O w .= w- wo O wo O z t.s M+ e e e + e O. - O. O+ e O. .= O. .= + e O. - O. O+ O+

                                             <E                                  w o. =w              m                ow                                 w                   Ow                   tu  Ow         Ow                                            i O.                                         O+ .w                            O.          O. w                    O. ,us        O.              o. w                       O. a)       ++
                                                                                                                                                                                                                   +.                                           r
                                             >-                       t. O.

w N. w t. w en. La O. + en. w o. w so. w -t. i w an. w . w w E M w N. N N O.. @ e. .e. e M. N. to vs *=

4. e N. M N. e.* O. M ad. N. ge. en. .e.+

e. g . . g .* w e .w O, w Mw ew e- w @w en w yw in e .= w *= w ** w =>.

                                                                                                                                                                                                                                               ~
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e. =O.
                                                                                                                                                                                                                                          > = >

O O M 3 3 to 3 M. M M M2

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                               .            >= 0 6-M W-         p w

wt M M M 96 58 44 p w

                                                                                                                                                                                            .95         #-

W M W Ea t.d eC v . .e.s. eg e. qe e, e em et s% e e. c. en =, .ef n .,e. .n

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  • e) =- N w@ @@ ## nn @ en - en
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J O E .n EO WO O O eO O EMN *c4 EO &M E $ => a.* a N N N N N -N =N N O=

 >-                g                              aX                                           .,N 0h          EM.      .-E%          EM           g) M              ED        er %   N                                                     n.#
                .                                     -        N. wh       en. %. nn. wM          w                      w                          .w            w             w        00.vh     >=. w  %   f%. v                   sw a       N VI , M                                                   M           *"".       .=       4-           =t        4            wt            M               *#           .*             M         M          M                            w     .*

O s. . M ~ z A M-.O m .0 e4 M -a A' H w g - M na c en. wa

                                                                                     -e   e.

a p. ae a= e O p ,% O O ee N s% #s O e .c. = e% a O e% n O u wM h 8 0. M 0 N o. e N o. e N

                                                                                               -   O.       N e O.

NO

                                                                                                                      -+

NO e + NO e + N

                                                                                                                                                                 -    O.

NO

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NO

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NO e + .E.== m4 bu W tal laJ taJ tal w W L.) Std ud W f#. -

                                            *e                                                                  .tas        40          v*        -

C. e0 N2

                                                               % M.        % N.       % N.      % M.        % =.      N            % .           % .              %           % M.           N M.      % M.       N N.                   4.s O M                              *%

ud en N O o O N. O a) O 90 O

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O O

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O. N O O O E3 O 4 Ee> == f) amO 2 4 8 i. t t t t t t t i S $ 0 wO wO wO wO wO wO w H 8 w =m

                                            *- 2 s

C w *= N+ o 0+ O w *= O+ O w (".3 e + 3 w **

                                                                                                            *= O.     .- +

O e3e w e=

                                                                                                                                                *=       o.      - O O+

w8 e+ *- + O

                                                                                                                                                                                                       ** +

O e + O .J 0- *C < uw - OW Ow

                                                                            +4 Ow 4        O.

w O. gd. p o. n w.sj . is Ow D Ow

                                                                                                                                                                  +W         O.

tes Ow o. su O. w

                                                                                                                                                                                                                                           .O  w W N.

e

                                            ==. E              + O.

w ua W en. W *#. Las . Las J. - tas naa w M. u* GO. W M. * *.

                                                                                                                                                                                                                                           . w O

2 80. N ==.W. M.*.= 0. e.= w=. 0 en. .. - e.a en. en. st. C 4. N. b.a. N. C4 - . . . . .= w 0 . * - O, w w M,-w w ** w ,d w Mw w w .* w *= w Mw U

               . y.                                                       o.=  _

e.= .  %.F %- N.. M. . e jw

              -Q       .

gM

                                                                                                                                                                                                                                         .a D=

4 .C < t= 2 M

                   .1                       =* O              NM          O          O ** -    O **         O **      O **         C *~         O *=             O .=        O .=           O **       OM         C **                         >=

P E a= OO O CO DO OO 00 OO OO OO OO OO DO OO N. 2

            - g"E                           ==>-               + +         + a        + +       + +         + +        + +          ++            + +             + +         ++             + +        ++         ++                    Uw ww               w   ww                           x D

au w ae s. . .M. E. bu . ww O. in. ww O. m. ww so. m. 40 w ww C. .n. M. in. w 40w ww in. in. . . .n. 80 e. en.

                                                                                                                                                                                                                                      .- w, w N             w            MM          M          N wa      N **         .=e=      MM           N w=          e- &            MM          Me             N.*        N w=       M e--                  to g             Q                                                                                                                                                                                        <
                                                                                                                                                                                                                                         >=<'

k M . .J w LaJ c = 9* H 3  % "Ow"i m M www sa m

                  @,                                 x                                                                                                                                                                                   .a.A *=
                                 . D, =    Mm- 2.* w g                '**
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6 O wOm N  %  %  %  %  %  %  %  %  % *%  % ' mW O

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                                                                                                                                                                                                       -          4.0                     < u.

a f' . W.C - e - - e e - e- .- - T,') tu O

                                           .aC
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mU 1- .M & O O Y4

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M - .= in. an. in. o. e. i.e o .- e 9 4 O s.t >= M. e. e t - . e C W O e *> C N t D 2 e S e a e l Q Z E w Q U 1 4 V t b N J

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b U W eQ e- ea g) e-o 4 o ea  % s. o o e-o N o o

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o b *O a o o o o o 8 8 8 8 8 8 8 8 8 8 8 8 8 awe

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o. 8 o. w o. wr o. .w, 8. wa. o o. .w.
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a e e o. e.- e o. e.- m. N. N. N. O

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4

o. o.

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TABLE 5 1991 ANNUAL RADIOLOGICAL ENVIRONMENTAL OPERATING PJPORT

SUMMARY

MEDIUM: Sediraent UNITS: pCi/Kg dry wt LOCATION WITM MIG #EST ANNUAL MEAN CONTROL LOCATIOWS ANALYSIS TOTAL ANALYSES / LO.ER LIMIT INDICATOR L OCATIONS TYPE NONROUTIME OF DETECT!'04

  • MEAN ( f ) ** LOCATION $ MEAN ( f ) ** MEA * ( f ) **

INFCRMAft0N RANCE RANCE MEASUREMENTS F uGE l I-t31 89/ 0 1.7E+02 -1.?E+02 ( 0/ 87 ) 3.5 miles S 3.9E+C1 ( 0/ 2) -9.4E+01 ( 0/ 23 (-8.4E+03 - 9.1E+01) (#211) (-1.2E*01 - 9.1E*01) (-1.3E+02 ~ 5.9E*01) Cs-134 89/ 0 1 3E+01 -2.3E+02 ( 0/ 57 ) MCR Regien I -1.5E+01 ( 0/ 1} -2.9E+02 ( 0/ 2) 1.iE+02 (-4.4E+02 ~ 1.5E+01) (#355) (-1.5E+01 ~ 1.5E+01) (-3.4E+02 ~ 2.4E+02) 6.8E+01 ( 76 / 87 ) MCR a sion It! 2.3E+02 ( 1/ 1) 4.9E+01 ( 2/ 2) Cs-137 89/ 0 1.5E+01 ( 1.9E+01 - 7.8E+01) 1.8E+02 (-1.3E+01 - 2.5E+02) (#475) C 2.3D 02 - 2.3E+C2) 1.4E+01 2.3E+01 ( 47 / 87 ) mcR Region I 1.3E+02 ( 2/ 23 6.5E-01 ( 0/ 23 un-54 89/ 0 ( 3.2E 9.9E-01) (-7.?E+00 - 1.4E+02) (#326) ( 1.2E+02 - 1.4E+02)

                                                                   -8.9E+00 ( 0/ 87 )          MCR Aegion i           2.4E+01 ( 0/     1)     -3.6E+01 (    0/ 2)

Fe-59 89/ 0 3.0E+01 (-3.8E+01 ~ 3.5E+01) (-1.1E+02 - 2.4E+01) , (#408) ( 2.4E+01 - 2.4E*01) 89/ 0 1.4E+01 7.1E+01 ( 60 / 87 ) MCR Region 1 3.2E+02 ( 1/ 1) -9.6E+00 ( 0/ 2) Co-55 (-3.2E+01 - 3.2E+02) (#403) C 3.2E+02 - 3.2E+02) (-1.2E+01 ~7.4E4 30) I -6.2E+00 ( 0/ 2) Co-60 89/ 0 1.2E+01 1.3E+02 ( 65 / 87 ) Mct Region I 7.4E+02 ( 2/ 2) (-7.8E+00 - 7.7E+02) (#326) ( 7.0E+02 - 7.7E+02) (-7.8E+00 ~ 4.6E*001 2n-65 89/ 0 2.7E+01 -1.4E+22 ( 0/ 87 ) MCR Regim It -3.6E-01 ( 0/ 1) -2.2E+02 ( 0/ 2) (-3.2E+02 - 2.6E+01) (#471) (-3.6E+01 ~ 3.6E+01) (-2.8E*02 ~1.7E+C2) 2r-95 47/ 0 - 2.8E+01 1.3E+01 ( 0/ 45 ) 3.5 mites ESE 3.1E+01 ( 0/ 1) 1.4E+00 ( 0/ 21 (-7.9E+00 - 3.6E+01) (*230) ( 3.?E+01 - 3.1E+01) (-T.7E+00 - 1.0E+01) Nb-95 85/ 0 1.8E+01 -2.1E*01 ( 0/ 83 ) MCR Region I 2.1E+01 ( 0/ 1) -4.0E*01 ( 0/ 2) (-1.8E+02 - 2.1E+01) (f326) ( 2.1E+01 - 2.1E+01) (-5.0E+01 ~ 2.9E+01) Bs-140 89/ 0 1.3E+02 -5.5E+01 ( 0/ 87 ) MCR Region V 7.1E+01 ( 0/ 1) -5.4E*01 ~ 0/ 2) (-4.0E+03 - 1.0E+02) (#32) ( 7.1E+01 - 7.1E+01) (-1.1E+02 ~ 9.iE-01) La-140 71/ 0 4.6E +01 -1.8t+01 ( 0/ 69 ) 2 miles E 4.8E+01 ( 0/ 2) -4.0E+01 ( 0/ 2) (-1.6E+03 - 6.0E+01) (#209) ( 4.7E*01 - 4.9E*01) (-4.8E+01 ~ 3.2E+01) Ag-110M 7/ 0 1.4E401 1.4E+01 ( 3/ 7) MCR Region ! 2.2E+01 ( 0/ 1) ( 3.8E+00 - 2.2E+01) (#325) ( Z.2E+01 - 2.2E+01) l

                      * #vERAGE I*E ASUPED LLD AND TABLE C-2 VALUES. (--- USED WEN THERE 15 No trou!PE*OT.)
                     ** FRACTION OF DETECTABLE MEASUREMENTS AT SPEctFnED LOCATICES 15 INDICATED IN Pi8!NTRESES. ( f )

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TABLE 5 1991 ANNUAL RADIOLOGICAL ENVIRONMENTA'h GPERATING REPORT SUEMY MEDIUM: Goose UNITS: pCi/Kg wet wt ANALYSIS TOTAL ANALYSES / LOWER LIMIT INDICATOR LOLATIONS LOCATION nt!TH RICNEST ANNUAL ME*N CONTROL LOCATIONS TYPE N0sROUTINE OF DETECTION

  • MEAN ( f )
  • LOCATION MEAM ( f ) ** MEAW ( f ) **

MEASUREMENTS RANCE tur0RMA!!ON RANCE RANCE I-131 2/ 0 9.7E+01 -4.3E+01 ( 0/ 2) atCR Region I 6.9E+00 ( 0/ 1) no sarrotes (-9.3E+01 - 6.9E+00) (#355) ( 6.9E+00 - 6.9E+00) Cs-134 2/ 0 1.1E+01 -1.4E+0* ( 0/ 2) MCR Region I -7.5E-01 ( 0/ 1) re saeples 1.3E+02 (-2.7E+01 --7.5E-01) (#355) (-7.5E-01 ~7.5E-01) Cs-137 2/ 0 1.1E+01 -1.1E+00 ( 0/ 2) MCR Region 1 3.0E+00 ( 0/ 1) no sayles 1.5E+02 ( ' . 3E+00 - 3.0E+00) (#355) ( 3.0E+00 - 3.0E+00) l Mn-54 2, 0 1.1E+01 -1.9E+00 ( 0/ 2) MCR Region i 1.3E+00 ( 0/ 1) no sarples 1.3E+02 (-5.0E+00 - 1.3E+00) (d355) ( 1.3E+00 - 1.3E+00) Fe-59 2/ 0 3.2E+01 8.9E+00 ( 0/ 2) MCR Region I 9.9E+00 ( 0/ 1) no sartples 2.M +02 ( 7.9E+00 - 9.9E+09) (#411) ( 9.9E+00 - 9.9E+00) Co-58 2/ 0 1.2E+01 -6.3E+00 ( 0/ 2) MCR Region I -1.1E+00 ( 0/ 1) no serples 1.3E+02 (-1.1E+01 --1.1E+00) (#355) (-1.1E+00 ~ 1.1E+00) Co-60 2/ 0 1.2E+01 5.7E+00 f 0/ 2) MCR Region I 9.5E+00 ( 0/ 1) no saep!es 1.3E+02 ( 1.9E+00 - 9.5E+00) (#411) ( 9.5E+00 - 9.5E+00) 2n-65 2/ 0 2. 7E +01 -7.9E+00 ( 0/ 2) MCR Region I -4.9E+00 ( 0/ 1) no sanptes 2.6E+02 (-1.1E+01 --4.9E+00) (#355) (-4.9E+00 --4.9E+00) Zr-95 1/ 0 2.9E+01 -2.7E+01 ( 0/ 1) MCR Reglen I -2.7E+01 ( 0/ 1) no samles (-2.7E+01 ~-2.7E+01) (#411) (-2.7E+01 ~2.7E+01) Nb-95 2/ 0 1.8E+01 2.2E+00 ( 0/ 2) McR Region ! 4.9E+00 ( 0/ 1) ne senples (-4.2E-01 ~ 4.9E+00) (#355) ( 4.9E+00 - 4.9E+00) Ba-140 2/ 0 1.1E+02 -5.8E+01 ( 0/ 2) MCR Regici 1 -1.4E+01 ( 0/ 1) e sarples ( '.0E+02 ~ 1.4E+01) (#355) (-1.4E+01 ~ 1.4E*01) i La-140 2/ 0 3.7E+01 -3.VE+01 ( 0/ 2) NCR Region ! -7.4E+00 ( 0/ 1) no samles (-7.0E+01 ~7.4E+00) (#355) (-7.4E+00 --7.4E+06)

  • AVERACE MEASURED LLO AND TABLE C-2 YALUES. (--- USED WEN THERE IS NO REQUIREMENT.)
   ** FRACTION OF DETECTABLE MEASUREMENTS AT SPECIFIED LOCATIONS IS Im0lCATE0 IN PARENTHESES. ( f )

7-30

l l TABLE 5 1991 ANNUAL RADIOLOGICAL ENVIh0NMENTAL OPERATING REPORT

SUMMARY

MEDIUM: Dove UNITS: pCi/Kg wet vt IN0!CATOR LOCATIONS LOCATION WITH MIGNEST ANNUAL MEAN CONTROL LOCA!!ONS ANALYSIS TOTALANALYSES/ILOWERLIMIT TYPE NONROUTINE OF DETECTION

  • MEMI ( f ) *+ LOCATION MEAN ( t ) ** MEAN ( f ) "

INFORMAT!CN RANGE RANCE MEASUREMENTS RANGE 0-2 miles W-NW 1) no saeptes I-131 1/ 0 7.8E+n2 -3.0E+02 ( 0/ 1) -3.0E+02 ( 0/ (-3.0E+02 --3.0E+02) (#Z21) (-3.0E+02 ~ 3.0E+02) Cs-134 1/ 0 2.2E+01 -2.8E+0! ( 0/ 1) 0-2 miles W-HN -2.8E+01 ( 0/ 1) no servles 1.3E+02 (-2.8E+01 --2.8E+01) (#Z21) (-2.8E+01 ~ 2.8E+01) l

1) no sarples l Cs-137 1/ 0 3.1E+01 1.1E+01 ( 0/ 1) 0-7 miles W-NN 1.1E+Gi ( 0/

1.5E+02 ( 1.1E+01 - 1.1E+01) (#I21) -( 1.1E+01 - 1.1E+01) l

1) 0-2 miles W-NN -6.4E+00 ( 0/ 1) no saaptes Mn-54 1/ 0 2.6E+01 -6.4E+00 ( 0/

1.3E+02 (-6.4E+00 --6.4E+00) (#221) (-6.4E+00 --6.4E+00) l

1) 0 2 miles W-NN -1.3E+01 ( 0/ 1) no sarples Fe59 1/ 0 d.3E+01 -1.3E+01 r 0/

2.6E+02 '-1.3E+01 ~ 1.3E+01) (#I21) (-1.3Et01 --1.3E+01) Co-58 1/ 0 3.3E+01 1.4E+01 ( 0/ 11 0-2 miles W-NN 1.4E+01 ( 0/ 1) no sanctes 1.3E+02 ( 1.4L+01 - 1.4E+01) (#Z21) ( 1.4E+01 - 1.4E+01) 0-2 miles W-NN 4.5E+00 ( 0/ 1) no senples Co-60 1/ 0 3.0E+01 4.5E+00 ( 0/ 1)

                                                    * .3E+02       ( 4.5E+00 - 4.5E+00)               (#221)                ( 4.5E 4.5E+00) 0-2 miles W-NN         -2.2E+01 ( 0/       1)        no serples 2n-65             1/ 0                   6.3E+01      -2.2E*01 ( 0/           1) 2.6E+02        (-2.2E+01 -2.2E+01)                (fz21)                (-2.2E+01 --2.2E+01)
1) 0-2 miles W kN 3.0E+01 ( 0/ 1) no secutes 2r-95 1/ 0 7.2E+01 3.0E+01 ( 0/

( 3.0E+01 - 3.0E+C1) (#I21) { .t.0E+01 - 3.0E+01)

                                                                                                ~

8.2E+00 ( 0/ 1) 0-2 miles W-NN 8.2E+00 ( 0/ 1) no saccles hb-75 1/ 0 5.5E+01 ( 8.2E+00 - 8.2E+00) (sZ21) ( 8.2E+00 - 8.2E+00) 2.5E+01 ( 0/ 11 0-2 miles W-NN 2.5E+01 ( 0/ 1) no secole. Ba-140 1/ 0 8.0E+02 ( 2.!E+01 - 2.5E+01) (#Z21) ( 2.5E+01 - 2.5E+01) 0-2 miles W-NN -6.8E+01 ( 0/ 1) no saeptes Ls-140 1/ 0 2.6E+02 -6.8E+01 ( 0/ 1) j (-6.BE+01 --6.8E+01) (#221) (-6.8E+01 --6.8E+01)

  • AVERACE MEASURED LLD AND TABLE C-2 V~. LUES. (--- USED W EN THERE IS NO REQUIREMENT.)
            " FRACTION OF DETECTASiZ M'ASUREMENTS AT SPECIFIED LOCA; IONS IS INDICATED IM PARENTHESES. ( f) 7-31

U

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t 5~w M M. M.  %.  %. 2 W 4 M.  % M. M. M 14-O 2 t3

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TABLE 5 1997 ufNUAL RADIOLOGICAL ENVIRONMENTAL OPERATING REPORT

SUMMARY

MEDIUM: IIamersion Dose by TLD UNITS: mR/STO Quarter LOCATION WITM MICMEST ANNUAL MEAN CONTROL LOCATIONS TOTAL ANALYSES / LOWER LIM!i INDICATOR LOCATIONS ANALYS!$ NEAN ( f ) ** LOCATION MEAN ( f ) ** PEAN ( f ) ** TYPE NONROUTINE OF CEfECTION RANGE RANCE IPf0RNATICM RANCE MEASUREhENTS

  • 1.5E+01 (169 / 169 ) 1 mile W 1.9E+01 ( 8/ 8) 1.6E+01 ( 8/ 8)

Ganina 177/ 0 ( 1.4E+01 - 1.8E+01)

                                               -~       ( 1.2E+01 - 1.9E+01)            ;    (8013)                ( 1.8E+01 - 2.1E+01)

I i

  • AVERAGE MEASURED LLD AND TABLE C-2 "ALUES. (--- USED WEN THERE IS NO REQUI2EMENT.)
         ** FRACTION OF DETECTABLE MEASUREMENTS AT SPECIF tD LCCATIONS IS INDICATED IN PARENTFESES. C f )

7-45 l . .

l TALLE 6 PERFORMANCE

SUMMARY

FOR PROGRAM CONTROLS 4 Performance Performance Performance

                               ,            Obiective                        Goal 15% accuracy for          Meet performance c,bjective                                                                         95%

inter- and intra- 95% of the time Goal Met laboratory quality control samples 15% precision for Meet performances objective 99% replicate inter- and 95% of the time Goal Met intralaboratory quality control samples Analyze REMP samples Meet the LLD requirements 100% in order to meet 95% of the time Goal Met required LLDs Perform the analysis Meet performance objective 98% of REMP samplos within 100% of the time Goal Not Met 30 days of sample - receipt Collect and analyze Meet performance objective 99%

                                   "egpired samples as 95% of the time                                                          Goal Met                       ,

scheduled g Maintain a minimum of jMeet performance objective 100% 20% quality control 100% of t he time Goal Met sample load which will include fielc'. lduplicatesandsplits, rengent blanks, blincis, t etc. 7-46 l

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