Document 7OwgKz2r5GOadjxeMNny8BGMj

FILE NAME: Flooring (FLR) DATE: 1989 Nov 6 DOC#: FLR026 DOCUMENT DESCRIPTION: Unpublished Report - Vinyl Asbestos Floor Tile Study Routine Buffing and Stripping Operations A. F. MEYER AND ASSOCIATES, INC VINYL ASBESTOS FLOOR T1LE STUDY ROUTINE BUFF1NG AND STRIPP1NG OPERATIONS FOR W RC-TV W ASHINGTON NOVEMBER 6, 1989 A. F. MEYER AND ASSOCIATES, INC. ACKNOWLEDGEMENT THIS REPORT WAS PREPARED BY JOHN B. LOVE. CONTRIBUTORS TO THE REPORT INCLUDED: REYNOLDS RENSHAW (AFMA) TOM DAGENHART AND MONICA M. MCCLOY (R. J. LEE GROUP). THE COOPERATION AND ASSISTANCE OF WRC-TV WASHINGTON, SOUTHERN INSULATION, AND THE MONTGOMERY COUNTY PUBUC SCHOOLS IN THE STUDY COVERED BY THIS REPORT IS MUCH APPRECIATED. A. F. MEYER AND ASSOCIA its, INC. TABLE OF CONTENTS SECTION /T IT L E PAGE # 1. INTRODUCTION: ....................................................................................................................................... 1 2. PROCEDURES USED: ................................. 1 3. SAMPUNG PROTOCOL AND ANALYTICAL METHODS: ................................................................... 2 4. UMITS FOR AIRBORNE ASBESTO S:..................................................................................................... 2 5. RESULTS OF S A M P U N G :......................................................................................................................... 2 6. C O N C LU SIO N S :......................................................................................................................................... 3 7. RECO M M ENDATIO NS:...................................... 4 ATTACHMENTS: 1. TABLES OF RESULTS 2. HARD COPIES OF LABORATORY ANALYSISREPORTS A. F. MEYER AND ASSOCIATES, INC. 1. INTRO DUCTION: Per your request, on October 19, 1989 A. F. Meyer and Associates. Inc. (AFMA) performed a limited study to determine asbestos fiber release, if any, from routine buffing and stripping of vinyl asbestos floor tiles. The study was performed by John B. Love and Reynolds B. Renshaw in classroom 18 at the Sligo Middle School in Montgomery County, Maryland. Southern Insulation, a licensed asbestos abatement firm performed the buffing and stripping operations. Samples of the 9' x 9` vinyl floor tiles Indicated they contained 5% chrysotile asbestos in the tiles themselves and 10% chrysotile , asbestos in th e mastic used to adhere the tiles to the concrete floor of the school. This study is very limited and must not be construed as being all inclusive as to asbestos exposures encountered by custodial and maintenance staff, students, teachers, and the general public in schools generated from routine buffing and stripping of asbestos-containing floor ties. It was intended to provide an indication of whether or not there Is a potential to release asbestos fibers from the tiles during buffing or stripping. It was also intended to provide a foundation for further investigation if warranted based on its outcome. 2. PROCEDURES USED: The approximate size of classroom 18 was 30 feet by 28 feet (840 square feet). This part of the school was unoccupied at the time of the study. Prior to the buffing and stripping operations, the classroom was totally isolated from the rest of the school by constructing a containment consisting of tw o layers of 6 mil plastic sheeting on the walls and a three-stage decontamination facility connected to the area. A high efficiency particulate air (HEPA) exhaust unit was placed inside the dassroom. The exhaust unit was operated at a low setting so as not to provide rapid air exchange and filtration. The purpose of the unit was to create a slight negative pressure differential relative to adjacent areas of the school so fiber release would not occur outside the contained dassroom. After total isolation of the area and prior to performing the floor maintenance, ail surfaces within the dassroom were pre-deaned via wet methods using amended water. All floor maintenance supplies (l.e. buffing/stripper solutions and pads) were provided by Channel 4 and Montgomery County janitorial staff. Buffing and stripping procedures were discussed at length with maintenance staff prior to conducting the study. For the purposes of this study the following buffing and stripping methods were employed: M ETHO D 1 - BUFFING Buff with standard red buffing pad and standard buffing solution. (Duration - approximately 45 minutes). M ETHO D 2 - STRIPPING Strip floor using standard stripping mixture mopped on and standard black stripping pad. Mop with dean water twice afterwards. (Duration - approximately 70 minutes). M ETHO D 3 - STRIPPING Strip floor using a fine mist spray of stripper solution and standard black stripping pad. Mop with dean water twice afterwards. (Duration approximately 70 minutes). During all floor maintenance operations, persons performing the work wore full-body protective (Tyvek) suits and full-face respirators equipped with filters designed for protection against airborne asbestos dust/fibers. Workers and survey persons, using appropriate procedures, entered and exited the work area through the decontamination facility. Once all buffing and stripping operations were complete and the study concluded, the floor was mopped and waxed to ensure any remaining dust or fibers would not become airborne once the containment was dismantled and the area re-occupied. 1 A. F. MEYER AND ASSOCIATES, INC. 3. SAMPLING PROTOCOL AND ANALYTICAL METHODS: Bulk samples were collected from the water used during pre-cleaning, the water and stripper mix m opped up after the final stripping method, the buffing (red) and stripping (black) pads used, and from the residual dust remaining on the tiles after the final stripping and mopping method. General area air samples were collected in the classroom prior to the buffing and stripping work, during each method used, and under aggressive sampling conditions using a leaf blower after the final stripping and mopping method and before re-waxing the floor. Two samples were collected during each sampling period, one located approximately two feet from the floor and the other approximating breathing zone level, or five feet above the floor. One eight-hour air sample was collected from the workers' breathing zone. Two general area air samples were collected outside the contained classroom at the entrance to the decontamination facility. General air samples were collected with high volume line operated sampling pumps at a flow rate of 8.5 - 8.7 liters per minute (Ipm). The worker breathing zone air sample was collected using a battery operated personal sampling pump at a flow rate of 2.4 Ipm. All sampling pumps were calibrated before and after each sampling period. Bulk samples were analyzed using Polarized Light Microscopy (PLM) and Transmission Electron Microscopy (TEM). Air samples obtained from inside the classroom prior to, during, and after the buffing and stripping operations were collected on 0.45 micron pore size mixed cellulose ester membrane filters with 50 mm non-conductive extension cowls. These samples were analyzed using Transmission Electron M icroscopy (TEM) . The outside general area and worker breathing zone air samples were collected on 0.8 micron pore size mixed cellulose ester membrane filters with 50 mm non-conductive extension cowls. These samples were analyzed using Phase Contrast Microscopy (PCM). The general area samples outside the contained classroom were also analyzed by TEM. (For specific methods of analyses used please see the attached tables). 4. LIM ITS FOR AIRBORNE ASBESTOS: a. Except for abatement activities, there are no exposure standards for non-occu pattonal settings. b. There are standards for general air quality after completion of an abatement or response action and before re-occupation of the areas involved. These standards are based on the analysis of a minimum of five samples collected within the work area after abatement Is complete. Samples analyzed using phase contrast microscopy must all demonstrate concentrations less than 0.01 fibers per cubic centimeter (f/cc). Samples analyzed using Transmission Electron Microscopy (TEM) must have an average of less than 70 structures per square millimeter or not be statistically significantly different (higher) than 5 samples collected from outside the contained work area. c. The EPA's Worker Protection Rule 40 CFR Part 76 3.121 has been extended to employees of local education agencies who perform operations, maintenance, and repair (O & M) activities involving asbestos-containing material. Under the n ie , the permissible exposure limit for asbestos based on an eight-hour time weighted average is 02 fibers per cubic centimeter (f/c c ) with an action level of 0.1 f/cc. 5. RESULTS OF SAM PLING : a. Analysis results of the sample collected from the water used during pre-deaning Indicated asbestos was present Results of the sample collected from the stripper and water mix after the stripping operations showed dose to two times that of the water used during predeaning. In both instances, asbestos structures detected were ail less than 10 micrometers In length. Consequently, the reported concentration of structures greater than 10 micrometers In both samples was less than 122.7 million structures per liter (MILL STR/L). b. Analysis results of the bulk sample collected from the residue on the buffing (red) pad indicated a trace of chrysotile asbestos. 9 A. F. MEYER AND ASSOCIATES, INC. c. Analysis results of the bulk sample collected from the residue on the stripping (black) pad indicated 1% chrysotile asbestos. d. Analysis results of the bulk sample collected from the remaining residue on the floors after the final stripping method indicated a trace of chrysotile asbestos. e. Results of the air sample collected from the workers breathing zone yielded a concentration of 0.013 fibers per cubic centimeter as an eight-hour time weighted average. f. General area air samples collected inside the contained dassroom before any buffing or stripping operations were performed (background) indicated airborne fiber densities of 30.5 and 45.8 structures per mm* (0.01 and 0.015 structures per cc). g. General area air samples collected Inside the work area during buffing operations performed showed airborne fiber densities of 15.3 and 45.8 structures per mm* (<0.01 and 0.015 structures per cc). h. General area air samples collected within the contained dassroom during the first stripping operation (Method #2) showed airborne fiber densities of 91.6 and 229.0 structures per mm* (0.029 and 0.072 structures per cc). i. Genera/ area air samples collected within the contained dassroom during the second stripping operation (Method #3} yielded airborne fiber densities of 236,167.6 and 276,316.1 structures per mm5 (77.5 and 89.2 structures per cc). It should be noted that these samples couid not be analyzed by standard TEM analysis because of excessive loading on the filters. The samples were prepared by low-temperature plasma ashing and aqueous redeposition due to overloading of the filters. Complex asbestos structures consisting of multiple fibers may have disaggregated during sample preparation. Consequently, asbestos structure counts may be biased high. j. General area air samples collected using aggressive sampling techniques after the final stripping operation indicated airborne fiber densities of 137.4 and 183.2 structures per mm* (0.045 and 0.06 structures per cc). k. All asbestos sample analysis results are outlined in the attached Tables 1 and 2. 6. C O N C L U S IO N S : a. Again, this study has limitations and cannot be used to definitively quantify general occupant and maintenance staff exposure levels to asbestos from floor tile maintenance activities In ail situations. It applies only to conditions encountered and techniques used at the time of sampling. b. Concentrations found in the workers breathing zone during this study did not exceed the existing permissible exposure limit nor the action level outlined in the EPA's Worker Protection Rule. The sampling and analytical method required for worker exposure monitoring detects all fibers with characteristics of asbestos fibers and which are greaier than 5 microns in length. Levels found however, do warrant consideration when assessing overall asbestos exposures to employees involved in routine operations, maintenance and repair activities. c. Airborne asbestos fiber densities or concentrations found in the general air within classroom 18 prior to the buffing and stripping operations did not exceed filter background levels (70 s/mm*) when analyzed using TEM. -d. General area air samples collected during buffing operations did not exceed filter background levels 'when analyzed using TEM. A. F. MEYER AND ASSOCIATES, INC. e. General area air samples collected during stripping operations and under aggressive sampling techniques after all stripping was done did significantly exceed filter background levels when analyzed using TEM. It appears that airborne asbestos structure densities started to increase dunng the first stripping method (stripping mixture mopped on and using standard black stripping pad) and elevated tremendously during the second stripping method (fine mist spray of stripper solution and using standard black stripping pad). Aggressive sampling conducted after the second or final stripping method and after the floor was mopped showed that airborne asbestos structure densities returned to levels near those experienced during the first stripping method. This leads us to believe that stripping asbestos-containing floor ties using semi-wet techniques has a far greater potential for releasing airborne asbestos than stripping methods employing wet or very wet methods. It should be noted that of the general area air samples collected Inside the classroom during these operations, nearly all asbestos structures found were less than 5 microns in length. f. Based on the air sampling, it is the opinion of this study that asbestos fibers or structures were released from the floor tiles and became airborne during the stripping operations performed. The levels found were above levels considered acceptable for determining the completion of a response or abatement action and before re-occupancy of such affected areas. g. The degree of health risk associated with the levels of airborne asbestos found cannot be accurately ascertained without further investigation and exposure monitoring. 7. RECOM M ENDATIONS: a. Consistent with EPA's guidance document 560/5-85-024 Guidance for Controlling AsbestosContaining Materials in Buildings (`Purple Book*) paragraph 3.3.3, avoid removing, sanding or stripping floor tiles containing asbestos. If tiles are removed, do not sand asbestos backing material remaining on the floor. !b. Implement interim policies in regards to the above until such time that further investigation is performed and more scientific data becomes available or untD specific guidance is issued by the appropriate regulatory agencies. c. ff asbestos-containing floor tiles must be stripped, use only wet stripping methods. Institute appropriate engineering controls, work practices, air monitoring, and employee protection programs. Assess exposures to workers during stripping and consider these exposures in overall exposure assessments of employees involved in routine operations, maintenance, and repair activities. d. Considerable attention should be lent to the potential for fiber release during asbestoscontaining floor tile maintenance operations. EPA's involvement and participation is imperative in affording an adequate assessment of exposure potentials. Appropriate regulatory guidance for local education agencies must be disseminated at the earliest possible date. ATTACHMENT 1 TABLES OF RESULTS Asbestos Air Sampling Results Sligo Middle School, Montgomery County, Msrytsnd WRC-TV Washington TABLE #1 t r a n s m is s io n elec tr o n m ic r o sc o py ( t e w SAMPLE 8 JLC410198901 JLC410198902 JLC4101989O4 JLC410198905 JLC4101989O6 JIC4 10198907 JLC410I98908 JLC4101989OV JLC4101989I0 JLC410198912 JIC 4 1 0 1 9 8 9 I3 JIC410198914 SAMPLE DATE 10/19/89 10/19/89 10/19/89 10/19/89 10/19/89 10/19/89 10/19/89 10/19/89 10/19/89 10/19/89 10/19/89 10/19/89 SAMPLE LOCATION P ra -a a m p la - b a ckg ro u n d cla s s ro o m 18 P r e -a a n p le b a ckg ro u n d c la s s ro o m 18 Work a re a - M ethod # 1 8 5 ' Work a re a - M ethod 81 8 5* Work a re a - Method 82 8 2* Work a re a - M ethod 82 8 5* C lean ara a o u ts id e decon entrance Work a ra a - Method 83 8 2* Work a ra a * Method 83 8 5* Clean are a - o u ts id e decon entrance P o s t- s tr ip pro-wax aggressive 8 2* P o s t- a tr ip - pra-w ax aggraaslva 8 5* SAMPLE VOLUME IN LITERS 1199.8 1218.0 1199.8 1218.0 1199.8 1218.0 1479.0 1174.0 1192.0 1662.0 1 1 6 6 .0 1183.0 TEH ANALYSIS OF AIRI FIBER DENSITY IN S /l 4 5 .8 30.5 4 5 .8 15.3 9 1 .6 229.0 122.1 236,167.6 276,316.1 30.5 183.2 137.4 PHASE CONTRAST MICROSCOPY (K N > SAMPLE # SAMPLE DATE AMPLE LOCATION JLC41019890B JLC410198911 JLC410198912 JLC410198919 10/19/89 10/19/89 10/19/89 10/19/89 Clean araa Personal Clean area la n k - o u ts id e dscon entrance workers b re a th in g tone - o u ts id e decon entrance SAMPLE VOLUME IN LITERS 1479.0 1152.0 1662.0 PCM ANALYSIS OF AINU FIBER DENSITY IN F/M 17.8 39.5 22.5 NFO < Lea th a n NFO No F ib e r s O b s e rv e d S/MN2 S t r u c t u r e s p a r s q u a re a t I t (m e te r F/MH2 - f i b e r s p e r square a l l l l a a t a r F/CC F ib e rs p e r c it r ic c e n tim e te r S/CC S t r u c t u re a p e r cU> ANALYSIS: A i r sam ples w e re a n a ly z e d u s in g T ra n s m is s io n E le c t r o n M ic ro s c o p y (TEN) EPA le v e l I I (TANATE, < M ic ro s c o p y (PCM) NIOSH 7400 A (a s m o d ifie d b y QSHA/EPA c o u n t in g r u l e s ) . Samples were analyze a ccre dite d la b o ra to ry . * These sam ples were pre pa red b y lo w *te m p e ra tu re plasaia ashing and aqueous rs d e p o s ltlo n due to o v e rlo a d in g o f o r lg l s tru c tu re s c o n s is tin g o f a s j lt lp l e f i b e r s may have d is a g g re g a te d d u rin g sam ple p r e p a r a tio n . C o n se q u e n tly, asbeat high. Asbestos Bulk and Water Sampling Results Sligo Middle School, Montgomery County, Maryland WRC-TV Washington TABLE # 2 BUt K SAMPLES SAMPLE 0 JLC410188901 JLC4101889O1 JLC4101B8902 JIC410188902 SAMPLE DATE 10/10/89 1 0 /1 8 /0 9 10/10/89 10/18/69 SAMPLE LOCATION Red f l o o r t i l e - c la s s ro o o m 18 Red f l o o r t i l e m a s tic Tan f l o o r t i l e - c l te a ro o m 18 Tan f lo o r t i l t m a a tic PCM ANALYSIS OF BULK SAMPLES EXPRESSED IM PERCENT ASBESTOS ANALYTICAL 1 DESCRIPTION 5 .0 10.0 5 .0 5 .0 C h ry s o til C h r y s o t l1 C h ry s o til C h ry s o til SAMPLE # SAMPLE DATE JIC410198915 JlCA1019B916 JICA10198918 10/19/89 10/19/89 j 10/19/89 SAMPLE LOCATION B lack pad used d u rin g M ethod #2 Red ped used d u r in g M ethod #1 R e s id u a l fust on f l o o r a f t e r M ethod 03 U A ANALYSIS OF BULK SAMPLES ANALYTICAL EXPRESSED IN PERCENT ASBESTOS DESCRIPTION 1 Trace Trace C h ry s o til C h ry s o til C h ry s o til UATER SAMPLES SAHrLE 0 J lC A I0 1 9 8 9 0 3 Jl CA10198917 SAMPLE 0ATE 1 0 /1 9 /0 9 1 0 /1 9 /8 9 SAMPLE LOCATION Water used d u rin g Water used d u rin g fin a l s trip p in g p re -c le a n in g flo o r c le a n in g M ethod 03 a fte r TOTAL STRUCTURE CONCENTRATION ( M ill STR/L) 9666.4 14491.6 <10UM STRIK (N ILI <122. <122. < - Less Than ANALYSIS: > * G re a te r Than NFO No F ib e rs O b se rve d HILL STR/L M i l l i o n S tru c tu re s p e r L i t e r W ater samples were a n a ly z e d u s in g T r a n s a c t io n E le c tr o n M ic ro s c o p y (TEN) EPA atethod 6 0 0 /4 -0 3 u s in g P o la r iz e d L ig h t/ D is p e r s io n S t a in in g (PLH) AO CFR P a rt 763 App.A to S u b p a rt F, and T ra r EPA L e v e l I I , a s e m i-q u a n ta !iv e a d a p ta tio n . Samples were a n a ly z e d b y R. J . Lee G roup, and ) ATTACHMENT 2 HARD COPIES OF LABORATORY ANALYSIS REPORTS ssjuxurvup A. F. NEYER ANO ASSOCIATES, 6849 OLD DC*1X1 CM ORIVE MCLEAN, VIRGINIA 22101 ATTN: JOHN LOVE INC. The Meterais Characterization Specialists LABORATORY REPORT '>,-- REPORT DATE: OCTOBER 1 7 7 1 9 8 9 SAMPLES RECEIVED OCTOBER 18, 1989 RJ LEE JOS NO: AOU910016 PURCHASE ORDER NO: VRC-TV (W ITTE N AUTHORITY) ANALYSIS: ASBESTOS IN BULK SAMPLES METHOD: PLM (POLARIZED LIGHT MICROSCOPY/DISPERSION STAINING) 40 CFR PART 763 APP. A TO SUBPART F SAMPLE IDENTIFICATION CLIENT RJ LEE CHRYSOTILE ASBESTOS (VOLUME X) AMPHIBOLE ASBESTOS (VOLUME X) JLC4 10188901 TILE JLC4 10188901 MASTIC JLC4 10188902 TILE JLC4 10188902 MASTIC 54986 54987 54988 54989 5 1 10 5 ND1 5 ND1 NON-ASBESTOS FIBERS (VOLUME X ) PHYSICAL DESCRIPTION OF RED-BROUN SOLID (T IL E ? ) RLACX MASTIC TAN TILE BLACt MASTIC LABORATORY ANALYST c h fr. DATE: EPA A c c r d it a t io n Nurtser 3410; NIST NVLAP P a r t ic ip a n t Nuifeer 1208-3 PLEASE SEE ESSENTIAL HOTES ON REVERSE S10E OF REPORT 9^ TOM DAGENHAr I, N.S. LABORATORY MANAGER, ____________ NVLAP SIGNATORY R J L e e G r m ip 17m Matonia C7aracnzation Specialists Invoice Number. Dcosa 350 Hochbarg Road M o n ro avllla, PA 15146 (412) 325-1778 Fax (412) 733-1799 Billid: '*c *tv 4001 ME5KASXA AVE., N.U. UASHIH6T0H, O.C. 20016 ATTN: I1CX NELSON 2424 5th S tra a t IO B arkalay, CA 94710 (415) 486-6319 Fax (415) 486-0927 Ship to: * * and associates, imc. 6849 OLD DOMINION OtIVE MCLEAN, YlKfilNIA 22101 ATTN: JOHN LOVE TELEPHONE: 710-734-9093 D ate OCT. 19, 1989 D ate R eport Sent OCT. 19, 1989 P roject# A0U91OO16 Term s IET 30 OATS d iem PO# URC'TY V endor# P ita s * RJ Lee Group, Inc. P.O. Box 278, Monroeville, PA 15146 r e tu r n o n * (1 ) copy o f th is in r o ie t * ith p a y m e n t to ensure p ro p e r c re d it F00988 Kj Leeuroup The Materials Charactensation Specialists LABORATORT REPORT > *n n t i m i A .F . TER t ASSOCIATES, 68A9 OLD DOMINION DRIVE MCLEAN, VIRGINIA 22101 703-670-2131 JOHN LOVE INC. ANALYSIS: ASBESTOS IN UATER RJ LEE GROUP JOB MLKBER: CLIENT JOB NUMBER: PURCHASE ORDER NUMBER: SAMPLE RECEIPT BATE: REPORT DATE: ATV-910020A VAT STUDY SLIGO ELEN. OCTOBER 20, 1989 OCTOBER 28, 1989 METHOD : TRANSMISSION ELECTRON MICROSCOPY, EPA METHOD 6O0/A-B3-OA3 RJ LEE GR. SAMPLE f CLIENT SAMPLE * 55013 55016 NOT APPL. JLCA101989-03 J L C A 1 0 1 9 8 9 -17 NOT APPLICABLE SAMPLE INFORMATION SAMPLE I NONE GIVEN NONE GIVEN FILTER BLANK FILTER AREA m) 201 201 201 FILTERED VOLUME (ML) UATER CLARITY 0.1 CLOUDY 0.1 CLOUDY 0 HOT APPLICABLE v fh rw J ,^ h t . sample preparator f " T H r * * 'c . A-. 7 ^ cC ^ 2 TEH OPERATOR-ANALTST / PAGE 1 OF 3 LABCRAT CRT MANAGER DATE KJ LeeCjroup The Meterais Characterization Specialists LABORATORY REPORT A . F. METER l ASSOCIATES, &A9 OLD DOMINION DRIVE MCLEAN, VIRGINIA 22101 703-670-2131 JOHN LOVE !MC. RJ LEE GR. JOS MIMER : CLIENT JOS NUMBER: PURCHASE ORDER MLMER: SAMPLE RECEIPT DATE: REPORT DATE: ANALYSIS: ASBESTOS IN HATER METHOD: TRANSMISSION ELECTRON MICROSCOPY, EPA METHOD 6 0 0 /4 -8 3 -0 4 3 ATU-910020A VAT STLOY SLIGO ELEN. OCTOBER 20, 1989 OCTOBER 2B, 1989 ANALYTICAL INFORMATION AREA OF GRID OPENING : 0.00655 sa MM TEN ACCELERATING POTENTIAL: 100 XV TEN: PHILIPS CX12 DETECTION L IM IT : A ENERGY DISPERSIVE X-RAT ANALYZER: EDAX 9800 PLUS (STRUCTURES PER TEN GRID OPENINGS) ASBESTOS STRUCTURES DETECTED TOTAL > 10 UM GRID FILTER AREA WITH ASPECT RATIO > 3 : 1 STRUCTURE STRUCTURE TYPE RJ LEE GR. CLIENT OPENINGS ANALYZED CONCENTRATION CONCENTRATION OF SAMPLE * SAMPLE * SCANNED (SO w o < 10 .0 UM > 10 .0 UM TOTAL (MILL STR/L) (MILL STR/L) ASBESTOS 55013 JLCA101989-03 2 0.0131 63 0 63 9666.4 < 122.7 CHRYSOTILE 55016 JLC4101989-17 1 0.0066 57 0 57 17491.6 < 122.7 CHRYSOTILE NOT APPL. NOT APPLICABLE 10 0.0655 0 0 0 NOT APPL. NOT APPL. NONE DETECTED PAGE 2 OF 3 Kj Leeuroup The M itertats Characterization Specialists LABORATORY REPORT A .F . MEYER l ASSOCIATES, 6849 OLD DOMINION DRIVE MCLEAN, VIRG INIA 22101 703-670*2131 JOHN LOVE IMC, RJ LEE GR. JOB NUMBER: CLIENT JOB NUMBER: PURCHASE ORDER NUMBER: SAMPLE RECEIPT DATE: REPORT DATE: ANALYSIS: ASBESTOS IM WATER METHOD: TRAMS* I SSJON ELECTRON MICROSCOPY, EPA NETHQO 6 0 0 /4 -6 3 -0 4 3 ATU-910Q20A VAT STUDY SL ISO ELEM. OCTOBER 2 0 , 1989 OCTOBER 2 8 , 1989 ESSENTIAL NOTES AMO DISCLAIMERS 1 . TEM ANALYTICAL DATA GENERALLY VALID TO ONLY ONE SIGNIFICANT FIGURE. 2 . THE ASBESTOS MINERALS SOUGHT IN EACH SAMPLE INCLUDE CHRYSOTILE (CllNOCHRYSOTILE, ORTHOCHRYSOTILE AND PARACHRYSOTILE), AMOSITE (GRUNERITE AMD QJMNINGTONJTE), CSOCIDOLITE (RIEBECKITE), ANTHQPHYLLITE CANTHOPHYLLITE AND MAGNESIO-ANTHOPHYLL1TE), TREMOLITE AMD ACTIHOLITE. NAMES GIVEN IN PARENTHESES INDICATE THE PROPER NINERALOGICAL TERM FOR ASBESTOS VARIETIES KNOWN BT AN IMPRECISE NAME. DEFINITIONS USES FOR THE AKPHIBOLES ARE THOSE OF THE IHTERHATIOHAL NINERALOGICAL ASSOCIATION (1 9 7 B ). 3 . ASBESTOS STRUCTURES INCLUDED IN THE STRUCTURE CONCENTRATION INCLUDE FtBERS, BUNDLES, CLUMPS AND MATRICES. SEE DEFINITIONS IN AHERA REGULATIONS. 4 . THE MLMSER OF STRUCTURES USED IN CALCULATING DETECTION LIM ITS MAY VARY DEPENDING UPON THE CLEANLINESS OF FIELD AND SEALED BLANKS AND THE CLEAMLIMESS OF LABORATORY BLANCS CONTEMPORANEOUS WITH THESE SAWLES. 5 . ASBESTOS STRUCTURES GREATER THAN TEN MICRCWTERS (UN} IN LENGTH ARE REPORTED SEPARATELT BECAUSE THESE ARE THE IMPORTANT STRUCTURES IN THE EPA GUIDELINES. PAGE 3 OF 3 ce a ?- 'cruioui ParkTMv M a n a s VA 22110 703/368-2BBC 3/358-7761--A X RJLeeGroup The Materials Characterization Specialists LABORATORY REPORT HUM A. f . METER AND ASSOCIATES. 6&49 OLD DOMINION DRIVE MCLEAN, V IR G IN IA 22101 ATTN: .JOHN LOVE INC. ANALYSIS: ASSESTOS IN BULK SAMPLES METHOD: PLM (POLARIZES LIGHT MICROSCOPY/DISPERSION STAINING) REPORT DATE: OCTOBER 24, 1989 SAMPLES RECEIVED: OCTOBER 20, 1989 RJ LEE JO i MO: ATU910020C PURCHASE ORDER MO: WRC-TV (WRITTEN AUTHORITY) AO CFR PART 763 APP. A TO SUBPART f SAMPLE IDENTIFICATION CLIENT RJ LEE CHRYSOTILE ASBESTOS (VOLUME X) AMPHIBOLE ASBESTOS (VOLUME X) NON-ASBESTOS FIBERS (VOLUME X) JLC4 10198915 55014 MD1 JLC4 10198916 55015 ND1 JLC4 10198918 55017 MD1 ND1 90 SYNTHETIC FIBERS ND1 90 SYNTHETIC FIBERS MD1 20 CELLULOSE 10 SYNTHETIC FIBERS PHYSICAL DESCRIPTION OF SAMPLE RED FIBROUS MATERIAL BUCK FIBROUS MATERIAL; GRAY CEMENT GRAY DUST WITH FIBERS LABORATORY ANALYST 0<r DATE: jj. iif f EPA A c c r e d i t i t i o n N u rte r 3410; NIST NVLAP P i r t i c i p a n t N u it * r 1208*3 PLEASE SEE ESSENTIAL NOTES ON REVERSE SIDE OF REPORT TOM DAGENHART, N .S . LABORATORY MANAGER, NVLAP SIGNATORY The Materials Characterization Specialists LABORATORT REPORT A. F. T E R AM) ASSOCIATES, 6849 OLD OGMIMIOM OR. MCLEAN, VIRG IN IA 22101 ATTN: JOHN LOVE IWC. REPORT DATE: OCTOBER 24, 1989 SAMPLES RECEIVED: OCTOBER 20, 1989 RJ LEE JOS WO: ATU910C20B PURCHASE ORDER WO: JRC-TV (WRITTER AUTHORITY) ANALYSIS: FIBERS (>5 MICROMETERS LONG) ON MIXES CELLULOSE ESTER FILTERS tT(W B: PHASE CONTRAST MICROSCOPY (PCM) HI OSH 7400 A AS MODIFIED BT OSHA/EPA COUNTING RULES FILTER DIAMETER (MM): 25 SAMPLE IDENTIFICATION SAMPLE CLIENT RJ LEE (LITERS) FIELD AREA O W * 2 ): 0.00785 FIELDS COUNTED TOTAL FIBERS UNCORRECTED FIBER DENSITY CFIBERS/HM` 2 ) AIRBORNE FIBER CONCENTRATION (F!BERS/CM*3) NOTES JLC4101989O8 JIC410198911 JLC410198912 JLC410198919 55009 55010 55011 55012 1479 1152 1662 0 100 14 100 31 100 22.5 100 0 17.8 39.5 2 8 .7 0 .0 0.005 0.013 0.007 f tS T K l^ C tZ ' LABORATORY ANALYST NOTES: ccLzu sa DATE *7^ Q X o c ^ c T ' to /0AGEXHART, m. s . LABORATORY MANAGER FIBERS SMALLER THAN 0 .3 MICROMETERS IN DIAMETER ARE HOT DETECTED 8T PCM. PCM RELATIVE STAHDARD DEVIATIONS RANGE FROM 40X AT LOU FIBER DEHSITT TO 10X AT HIGH FIBER DENSI PCM DATA ARE NOT RELIABLE TO MORE THAN ONE SIGNIFICANT FIGURE. MEANS 8ELOW RELIABLE DETECTION LIM IT . e - /a ''inn Tm `'ice.Toon IW L T T i .C KJ JLeeuroup The M aterais Characterization Specialists AMALYS!S OF AIRBORNE AS8EST0S ON NIXED CELLULOSE ESTER FILTERS BY TRANSMISSION ELECTRON MICROSCOPY, EPA l EVEL I I METHOO CYAMATE, ET A L .( 1984) A .F . MEYER l ASSOCIATES, INC 6049 OU> DOMINION DRIVE MCLEAN, VIRG INIA 22101 7TB-670-2131 JOHN LOVE RJ LEE GS. JOS NUMBER: CLIENT JOS NUMBER: PURCHASE ORDER (AMBER: SAMPLE RECEIPT DATE: REPORT DATE: ATW-91002QA VAT STUDY SLIGO ELEN. OCTOBER 20, 1989 OCTOBER 27, 1989 RJ LEE GR. SAMPLE # a I ENT SAMPLE # 54998 54999 55000 55001 55002 55003 55004 55005 55006 55007 55008 JLC411989-01 JIC4101989-02 JLC4101989-04 JLC4101989-05 JLC4101989-06 JLC4101989-07 JLC4101989-O9 JLC4101989-10 JLC4101989-13 JLC 4101989-14 JLC4101989-20 SAMPLE INFORMATION SAMPLE DESCRIPTION NONE GIVEN NONE GIVEN NONE GIVEN NONE GIVEN NONE GIVEN NONE GIVEN NONE GIVEN NONE GIVEN NONE GIVEN NONE GIVEN BLANK AIR VOLUME (LITERS) CASSETTE DIAMETER (N O 1199.8 25 1218 25 1199.8 25 1218 25 1199.8 25 1218 25 1174 25 1192 25 1166 25 1183 25 0 25 cowl LENGTH (N O 50 50 50 50 50 50 50 50 SO 50 50 CONDUCTIVE COWL YES YES YES YES YES YES YES YES YES YES YES PAGE 1 OF 3 KJ Leeumup The M ateriato Characterization Sp ecialists ANALYSIS OF AIRBORNE ASBESTOS ON NIXED CELLULOSE ESTER FILTERS BY TRANSMISSION ELECTRON MICROSCOPY, EPA LEVEL I I METHOD (YAMATE, ET A L ., 1986) A .F . MEYER 6 ASSOCIATES, 6869 OLD DOMINION DRIVE ` MCLEAN, VIR G IN IA 22101 703-470-2131 JOHN LOVE INC. RJ LEE GR. JOS NUMBER: CLIENT JOS HUMBER: PURCHASE ORDER NIMBER: SAMPLE RECEIPT DATE: REPORT DATE: ATV-910020A VAT STUDY SLIGO ELEN. OCTOBER 20, 1989 OCTOBER 27, 1989 AREA OF GRID OPENING: 0.00655 SO m DETECTION LIM IT (FIBERS PER TEN GRID OPENINGS) ANALYTICAL INFORMATION TEN ACCELERATING POTENTIAL: 100 KV TEN: PHILIPS W 12 2 ENERCT DISPERSIVE X-RAY ANALYZER: EDAX 9800 PLUS ANALYTICAL RJ LEE GX. SENSITIVITY SAMPLE (STRUCT/CC) GRID OPENINGS SCANNED 56 998 0.0069 10 56999 0 .0 0 6 8 10 55000 0 .0 0 6 9 10 55001 0 .0 0 6 8 10 55002 0 .0 0 6 9 10 55003 0 .0 0 6 8 10 55006 NOT ANALYZED 0 55005 NOT ANALYZED 0 55006 0 .0 0 5 0 10 55007 0.0050 10 55008 NOT APPLICABLE 10 AREA ANALYZED (SO MM) 0.0655 0.0655 0.0655 0.0655 0.0655 0.0655 0.0000 0.0000 0.0655 0.0655 0.0655 ASBESTOS STRUCTURES DETECTED WITH ASPECT RATIO > 3 : 1 < 5 .0 UM 5 .0 UM TOTAL 3 0 3 1 1 2 3 0 3 0 1 1 6 0 6 16 1 15 0 0 0 0 0 0 11 1 12 8 1 9 0 0 0 STRUCTURE DENSITY (STR/SQ W ) STRUCTURE CONCENTRATION (STR/CC) TYPE OF ASBESTOS 6 5 .8 0.015 30.5 0.010 6 5 .8 0.015 15.3 * 0.0 10 9 1 .6 0.029 229.0 0.072 NOT ANAL. NOT ANAL. NOT ANAL. * NOT ANAL. 183.2 0.060 137.6 0.065 0 .0 NOT APPL. CHRTS./AMOS ITE CHRYSOTILE CHRYS./AMOSITE AMOSITE CHRTS./TREMOLI CHRYSOTILE NOT ANALYZED NOT ANALYZED CHRYS./ tremol: CHRYSOTILE none detected SEE PAGE 3 , CGtWENT 6 ' J T in u 'c a - - * . SAMPLE PREPARATO TEN OPERATOR-ANALYST J PAGE 2 OF 3 'J o k k jg ttA UBORAfRY MANAGER DATE Kj Leeuroup The Mxteriab Chdractoriatton Specialists ANALYSIS OF AIRBORNE ASBESTOS ON NIXED CELLULOSE ESTER FILTERS IT TRANSMISSION ELECTRON MICROSCOPY, EPA LEVEL I I METHOD CTAMATE, ET A L ., 1984) A .F . METER t ASSOCIATES, INC 6849 OLD DOMINION DRIVE MCLEAN, VIRG INIA 22101 703-670-2131 JOHN LOVE RJ LEE G !. JOB NLMBER: CLIENT JOB NUMBER: PURCHASE ORDER NUMBER: SAMPLE RECEIPT DATE: REPORT DATE: ATU-910G20A VAT STUDY SLIGO ELEM. OCTOBER 20, 1989 OCTOBER 27, 1989 ESSENTIAL NOTES AND DISCLAIMERS 1 . TEM ANALYTICAL DATA GENERALLY VALID TO ONLY ONE SIGNIFICANT FIGURE. 2 . THE ASBESTOS MINERALS SOUGHT IN EACH SAMPLE INCLUDE CHRYSOTILE (CLINOCHRYSOTILE, ORTHOCHRYSOTILE AND PARACHRYSOTILE). ANOS1TE CG8UNER1TE AND QJMMINGTONITE). CROCIDOLJTE (RJEBECKITE), ANTHOPHYLLITE (ANTHOPHTLLITE AND MAGNESIO-ANTHOPHYLLITE), TREMOL1TE AND ACT IN O LITE. NAMES GIVEN IN PARENTHESES INDICATE THE PROPER NINERALOGICAL TERM FOR ASBESTOS VARIETIES KNOWN BY AN IMPRECISE NAME. DEFINITIONS USED FOR THE AMPHIBOLES ARE THOSE OF THE INTERNATIONAL NINERALOGICAL ASSOCIATION (197S). 3 . ASBESTOS STRUCTURES INCLUDED IN THE STRUCTURE CONCENTRATION AND STRUCTURE DENSITY INCLUDE FIBERS, BUNDLES, CLUMPS ANO MATRICES. SEE DEFINITIONS IN AHERA REGULATIONS. 4 . THE HUMBER OF FIBERS USED IN CALCULATING DETECTION LIMITS MAT VARY DEPENDING UPON THE CLEANLINESS OF FIELD AND SEALED BLANKS AND THE CLEANLINESS OF LABORATORY BLANKS CONTEMPORANEOUS WITH THESE SAMPLES. 5 . AIRBORNE MASS CONCENTRATIONS OF ASBESTOS IN NANOGRAMS PER CUBIC METER CAN BE PROVIDED AS NEEDED FOR THESE SAMPLES. THIS STREAMLINED REPORT ONLY INCLUDES STRUCTURE CONCENT U T IONS. 6 . SAMPLES JLC 4101989-09 AND 10, WERE HOT ANALYZED DUE TO HEAVY PARTICULATE LOADING AND THE RESULTING UNSTABLE NATURE OF THE CARBON FILM IM THE ELECTRON BEAM. PAGE 3 OF 3 lit lf ^ _________ r Th Materials Characterization Specialists ANAI^SIS ; r AIRBORNE ASBESTOS ON POLYCARBONATE m . ' ERS BY ' U hSMI SSI ON electron m ic r o s c o p y , epa le vel m me- nco ^ aha' i , et a l . , ' 98W) A . F . MITER i ASSOCIATES. 6849 OLD DOMINION DRIVE MCLEAN, VIR G IN IA 22101 703-754-9093 JOHN LOVE INC. RJ LEE CR. JOB NlMBER: CLIENT M l NUMBER: PURCHASE ORDER NUMBER: SAMPLE RECEIPT DATE: REPORT DATE: ATU-910020F VAT STUDY SLIGO El EM. WRITTEN AUTHORISATION X T OBER 2 0 , 1989 NOVEMBER 3 , T989 RJ LEE SR. SAMPLE # CLIENT SAMPLE * SS004 55005 JLC4101989-09 JLC 4T01989*10 SAMPLE INFORMATION SAMPLE DESCRIPTION HONE GIVEN HONE GIVEN FILTER BLANK AIR VOLLXE (LITERS) CASSETTE DIAMETER (W ) 1174 25 1192 25 0 25 COWL LENGTH (MM) SO 50 50 CONDUCT COWL YES YES YES i t t t r t i t v | r 9 t t l | g ^ g M M * r t * * * r t t * + % #V f H t i t i t W + t t t * a - t r t a a-* r c t r t n t t R c t R t t r t t * * PAGE 1 OF J = .,L e G 'S -ic 4 1C3 San w e * Parkway Uianassas VA 22*TC 4 TOG 3SS-7ES0 T2 063- T - BAX Th* M aterials Characterization Specialists ANALYSIS OF AIRBORNE ASBES'OS ON POLYCARBONATE FRYERS 8T -RANSNISSION ELESTRGH MICROSCOPY, Epa LEVEL I t METHOD (YAMATE, ET a l . . 1964) A . f . MEYER l ASSOCIATES, INC. 6449 3U> DOMINIO* ORIVE MCLEAN, VIR G IN IA 22101 702-734-9093 JP*N LOVE * m r t m u t H RJ LEE SR. JOfl MLM8ER: CLIENT JOB NUMBER : PURCHASE ORDER HUM6ER: SAMPLE RECEIPT DATE: REPORT DATE: TU- 9 1QC2GP VAT STUOY SLISO ELEN. WRITTEN AUTHORIZATION OCTOBER 20, 1989 NOVEMBER 3 , 1989 ANALYTICAL INFORMATION AREA OF GRID OPENING: 0.00655 SQ MM DETECTION L IM IT (FIBERS PER TEN GRID OPENINGS) : TIM ACCELERATING POTENTIAL: SO cv TEM: PHILIPS CM12 2 ENERGY DISPERSIVE X'RAT ANALYZER: EDAX 9BOD PLUS ANALYTICAL RJ LEE SR. SEN SITIYITT SAMPLE * (STRUCT/CC) GRID \ SCANNED AREA FACT. (SO MM) ASBESTOS STRUCTURES DETECTED WITH ASPECT RATIO > 3 : 1 < 5.Q UW 5 .0 UM total STRUCTURE DENSI Tl (STR/S3 MM) STRUCTURE TYPE N OF (STR/CC) ASSES'DS 55004 0.7745 0 .9 13.9 0.0004 99 1 55005 1.3730 0.5 13.9 0.0002 65 0 L A I BLANK NOT APPLICABLE 10 NA 0 .0 655 0 0 100 236167.6 77.448 DtRTSOTRE 65 276316.1 8 9 .2 4 6 CHRYSCTILE 0 0.0 NOT APPL. none detect: x u l t ) l t r -,_____. . . . . . . . * * *- *- ** * ^ * * 1 * . ' y y i g Y i L ^ s y ^ cc n SAMPLE PREPARATCR ' / H n u (C K T h y 0S V *\ TEH OPERATOR- ANALY S ^ ' PAGE 2 OF 3 r J -i" -r LABORAT O Y MANAGER, DATE '.e e Group, He ' 02S6 Banlsvisw Parxw&v A*ar,sssss, VA 22' ' C 73.'36S-738C 7781-PAy JL Th Matarais Ctorseterizstion Specialists ANALYSIS O A tIIBORKE ASBESYQS OK POLyCARONATE FILTERS Y ' U kSH'.SS'.OK ELECTRON MICROSCOPY, ERA iVEL 11 METHCO CYAMATE, ET A L .. 19SA) A. f . MEYER A ASSOCtATES, 6&L9 OLD DOMINION ORIVE MCLEAN, V IR G IN IA Z21C1 703-73A-9093 JOHN LOVE I MC. # ri* * * * T M * * - # ttw t R -*R rvir*vt R t m t Rk LEE 0 . JO* NJ4BER: CLIENT JOB NUMBER: PURCHASE OBOER KW SER: SAMPLE RECEIPT DATE: REPORT DATE: ATU-910C20F VAT STUDY SLIC3 ELEM. W ITTEN AUTHORIZATION OCTOBER 20, 1989 NOVEMBER 3 , 1989 ESSENTIAL NOTES AND DISCLAIMERS 1 . TEH ANALYTICAL DATA SEHERALLT VALID TO ONLY ONE SIGNIFICANT FIGURE. 2 . THE ASSESTCS MINERALS SOUGHT IN EACH SAMPLE INCLUOE CHRYSOTILE (CLINOCHRTSOTILE, ORTKOCHBYSOTILE AND PARACHRTSOTILE3, AMOSITE (GRUKERITE AMD CUHHINGTONITE), CROCIDOLJTE (R IE IE C K IT E ), ANTHOPHULITE (ANTHOPHYLL1TE AND MACNESIO*ANThOPHYlLlTS) TRE.KOUTE AND ACTINOLITE. NAMES GIVEN IN PARENTHEUS INDICATE THE PROPER N1NERALOCICAL TERM FOR A5IESTOS VARIETIES KXO.N IT AH tH P sfC lS E NAME. DEFINITIONS USED FOR THE AKPHIBOl ES ARE THOSE OF THE INTERNATIONAL W lNIRAlO C tC Al ASSOCIATION <1?73'. 3 . ASBESTOS STRICTURES INCLUDED IN THE STRUCTURE CONCENTRATION AND STRUCTURE DENSITY JNCLLCE FIBERS, UND.ES, CLUMPS AND MATRICES. SEE DEFINITIONS IN AHERA REGULATIONS. it , THE NL3HBER OF FIBERS USED IN CALCULATING DETECTION LIM ITS MAY VARY DEPENDING UPON THE CLEANLINESS OF FIELD AND StAlEC Blancs and th e c l e a n l in e s s of laboratory blan k s contemporaneous u it h these s a m p l e s . 5 . AIRBORNE MASS CONCENTRATIONS OF ASBESTOS IN NAMOGRAMS PER CUBIC METER CAN BE PROVIDED AS NEEDED FOR THESE SAMPLES. THIS STREAMLINED REPORT ONl T INCLUDES STRUCTURE CONCENTRATIONS. 6 . THESE SAMPLES WERE PREPARED BY LOU-TEMPERA TUPE PLASMA ASHING AND AQUEOUS REDEPOSITION DUE TO OVERLOADING Of ORIGINAL AIR FILTERS. 7 . COMPLEX ASBESTOS STRUCTURES CONSISTING Of MULTIPLE FIBERS MAY HAVE DISAGGREGATED DURING SAMPLE PREPARATION. CONSEQUENTL'r ASBESTOS STRUCTURE COUNTS MAT BE BIASED HIGH. Vv"*w W* * "* PAGE 3 OF 3 PJ L&eG'Oup. 'nc. 0356 Sar.iev aw Parkway M ftp.ftSS4S.VA 2 2 T 0 * TV 3ca-^B5C 7C3.36B-77a--PAX JL Th Materials Characterization Specialists ANALTS1S OF AIRBORNE ASBESTOS CK MIXED CELLULOSE ESTES FILTERS 8* -RANSHISSICN ELECTRON MICROSCOPY, epa LEVEL I I METHOD ( YAMATE, ET A L ., 1984) A .F . METER i ASSOCIATES, 6549 OLD DOMINION DRIVE MCLEAN, VIRGINIA 22101 7 0 -7 5 4 -9 0 9 3 JOHN LOVE INC. RJ LEE GR. JOB NUMBER; CLIENT JOB NUMBER: PURCHASE ORDER NUMBER: SAMPLE RECEIPT DATE: REPORT DATE! ATU-910C20E vat study Sl ig o e l e n . WRITTEN AUTHORIZATION OCTOBER 2 0 , 1989 NOVEMBER 3 , 1989 RJ LEE GR. SAMPLE V CLIENT SAMPLE 55009 55011 JLC4T01989-05 JLCA101989-12 SAMPLE INFORMATION SAMPLE DESCRIPTION NONE GIVEN NONE GIVEN AIR VOLUME (LITERS) U79 1662 CASSETTE DIAMETER (M O 23 25 COUL LENGTH (MM) 50 SO CONDUCTIVE COUL TES YES a --**** ** * **** ***** ****-******' PAGE 1 OF 3 RJ L ie G ro u p . Ir,c. "C265 Eattlev.e-* P a r l a y Manassas. VA 22170 703/35S-78B0 70D'D&B-77&-PLX V1NYL ASBESTOS FLOOR TlLE STUDY ROUTINE BUFF1NG AND STRIPPING OPERATIONS FOR W RC-TV W ASHINGTON NOVEMBER 6, 1989 NEWS EMBARGO U N T I L Decem ber 1, 1989 (c) 39 J ' _ r Th Materials Characterization Specialists ANALYSIS OF AIB3CBUE ASBESTOS ON MIXED CELLULOSE ESTER FILTERS SY TRANSMISSION ELECTRON MICROSCOPY, EPA LEVEL II METHOO (YAMATE, ET A L ., 19S i ) A. F . NETER 4 ASSOCIATES, INC &&A9 OLD COM1HION DRIVE HCLEAN, VIRG IN IA 22101 703-734*9093 JOHN LOVE RJ LEE CR. JOE NUMBER: CLIENT JOB NUMBER: PURCHASE ORDER NUMBER: SAMPLE R ia iP T DATE: REPORT DATE; ATU-910023E VAT STUDY SHOO ELEM. WRITTEN AUTHORIZATION OCTOBER 20, 1909 NOVEMBER 3 , 1969 AIUklTTI CI IH FORKAT I OM AREA OF GRID OPENING: 0.00455 SO m DETECTION L IM IT (FIBERS PER TEN GRID OPENINGS) : TEM ACCELERATING POTENTIAL: 90 KY TEM: PHILIPS CM12 2 ENERGY DISPERSIVE X-RAY ANALYZER: EDAX 980C PLUS ANALTTICAL RJ LEE GR. S E N S IT IV E SAMPLE # (STRUCT/CC) GRID A&cuT u rc SCANNED AREA ftUtl Y7CH (SO KM) ASBESTOS STRUCTURES DETECTED WITH ASPECT RATIO > 3 : 1 5 . 0 UM > - 5 .0 UM TOTAL STRUCTURE D C 5 J 11 (STR/SO MM) STRUCTURE vUML^pl I MA I IL M (STR/CC) TYPE Ur ASBESTOS 55009 0.0040 10 0.0655 7 1 55011 0.0035 10 0.0655 0 2 8 122.1 2 30.5 oo sN| sM ckrys. / act; cm ryso tile SAMPLE PREPARATOR 'TTfkJu- T W '-C ^ TEM OPERATOR- A N A l^ T PAGE 2 OF 3 il LABORATORYMANAGER, DATE PJ LeeGrC'JC 'ic ' 025B3ar.leviewPar<way Manassas. VA 2 2T 0 703/36S-T88C 703;36e-7T61.PAD( JL Th Materials Characterization Specialists AKALySIS OF 4 IRBORNE ASBESTOS ON NIXED CELLULOSE ESTER FILTERS BY TRANSMISSION ELECTRON MICROSCOPY, EPA LEVEL II METHCO (YAMATE, IT A L ., 1MA) A .F . MEYER l ASSOCIATES, 6&L? OLD DOMINION ORIVE MCLEAN, VIRG INIA 22101 7 C 3-7 34-9 09 3 JOHN LOVE UC. RJ LEE GA. JO HUMER: CLIENT j C XLMBER: PURCHASE OftOcR HUMBER: SAMPLE RECEIPT DATE: REPORT DATE: ATU* 910020E VAT STUDY SLIGO ELEN. WRITTEN AUTHORIZATION OCTOBER 20, 1989 NOVEMBER 3 , 1989 ESSENTIAL NOTES AND DISCLAIMERS 1 . TEH ANALYTICAL DATA GENERALLY VALID TO ONLY ONE SIGNIFICANT FIGURE. 2 . THE ASBESTOS MINERALS SOUGHT IN EACH SAMPLE INCLUDE CHRYSOT1L! (CLINOCHRYSOTHE, ORTHOCHRYSOTILE ANC FARACHRYSCTRE), AMOSITE (GRUNERITE AND CUMMINGTONITE), CROCIOOl ITE (RIE8EDC1TE), ANTHOPHYLLITE CANTHOPHYLLITE AKO MACJ.SIO*ANTHCPHTLLlTE:. TREMOLITE AND ACTINOLITE. NAMES GIVEN IN PARENTHESES INDICATE THE PROPER NINERALCICAL TERM FOB ASBESTOS VARIETIES KNOWS IT AN IMPRECISE NAME. DEFINITIONS USED FOR THE AMPHIBOLES ARE THOSE OF THE INTERNATIONAL MUERALOCICAL ASSOCIATION (1 9 7 E I. 3 . ASSESTOS STRUCTURES INCLUDED IN THE STRUCTURE CONCENTRATION AND STRUCTURE DENSITY INCLUOE FIBERS, BUNDLES, CLJHPS ANC MATRICES, SEE DEFINITIONS IN AHERA REGULATIONS. 4 . THE NUMBER OF FIBERS USED IN CALCULATING DETECTION LIMITS MAT VARY DEPENDING UPON THE CLEANLINESS OF FIELD AND SEALED BLANKS AND THE CLEANLINESS OF LABORATORY BLANKS CONTEMPORANEOUS WITH THESE SAMPLES. 3 . AIRBORNE MASS CONCENTRATIONS OF ASBESTOS IN KANOGRAMS PER CUBIC METER CAN BE PROVIDED AS NEEDED FOR THE5E SAMPLES. THIS STREAMLINED REPORT OW.T INCLUDES STRUCTURE CONCENTRATIONS. PAGE 3 OF 3 J Lee G /oud. Inc. 1036 Batt'evie* Paikway Manassas. VA 22H0 7031368-7380 7C3'368-7761-FAX RJ LeeGroup The Materials Characterization Specialists LABORATORY REPORT A. r . MEYER ASSOCIATES, INC. &&A9 OLD DOMINION DRIVE MCLEAN, VA 22101 ATTN; JOHN LOVE ANALYSIS; ASBESTOS IN BULK SAMPLES REPORT DATE: NOVEMBER 3 , '.989 SAMPLES RECEIVED: OCTOBER 2 0 , 1989 RJ LEE JOB NO: ATV910020 PURCHASE ORDER NO: URC-TV WRITTEN AUTHORITY IffTHOC: TRANSMISSION ELECTRON MICROSCOPY (T E N ), SEMIQUANTITATIVE ADAPTATION OF ERA LEVEL I I METHOD, FIBER IDENTIFICATION NT NORPHOLC5T, ENERGY DISPERSIVE X-RAY ANAITSI5 (EDXA) AND SELECTED AREA ELECTRON DIFFRACTION (SAED). SAMPLE id e n t if ic a t io n CLIENT RJ LIE c h r y s o t il e ASBESTOS (VOLUME X) AMPHIBOLE ASBE5TOS (VOLUME X) HON-ASBESTOS FIBERS (VOLUME X) PHYSICAL DESCRIPTION OF SAMPLE JLC A 10 198 9-15 55014 1 ND1 j l C;101989-16 55015 TRACE ND1 JLCL101989-1B 55017 TRACE M01 BROWN DUST (INCLUDED C A lC IT f AND SILICA PARTICLES t ORGANIC MATERIA. BROWN DUST ( INCLUDEO ORGANIC MATERIAL) BROWN DUST (INCLUDED GYPSUM, ORGANIC MA' l TITANIUM PIGMENT) A W .* , f ^ DATE: EPA A c c r e d it a t io n N is b e r SAIO; NIST NVLAP P a r t ic i p a n t M u lta r 1208-3 PLEASE SEE ESSENTIAL NOTES ON REVERSE SIDE OF REPORT *1 r-- TOM CASENHART, M .S. LABORATORY MANAGER, NVLAP SIGNATORY