Document QgyyoddbrZq0d5Rr5ZNd6K4Lk

FILE NAME Packings and Gaskets PAG DATE 1978 DOC PAG004 DOCUMENT DESCRIPTION Report - Asbestos Exposure from Gasket Operations - Naval Regional Medical Center C 106.14 _ M. CRAWFORD 7ASBESTOS EXPOSURE FROM | ae~ GASKETOPERATIONS _ DR KENNETH STILL | NAVAL REGIONAL MEDICAL CENTER BREMERTON WA 98314 ASBESTOS EXPOSURE FROM GASKET OPERATIONS INDUSTRIAL HYGIENE BRANCH OCCUPATIONAL AND ENVIRONMENTAL HEALTH SERVICE NAVAL REGIONAL MEDICAL CENTER BREMERTON WASHINGTON L.R. LIUKONEN K.R. STILL LTJG MSC USNR R.R. BECKETT MAY 1978 aed og TABLE OF CONTENTS 0 DR HE ae PART I ENVIRONMENTAL EVALUATION PAGE NO 2 5 aocse A. Project Definition ge B. Methods and Materials naaR C. Asbestos Fiber Exposure Standards D. Site Results and Discussion 6 Haken, Hinim SectionI Storage 7 2 Hinim Section II Hand Punching Section III Hand Operated Mechanical Punching 17 4 Section IV Machine Punching 20 5 Section V Hand Shaping 24 6 Section VI Machine Shearing 26 7 Section VII Machine Nibbling 29 8 Section VIII Installation 32 9 10 11. Section IX Section X Section XI Removal and Concurrent Installation 35 Clean Following Removal 37 Removal with Simultaneous 12. Section XII Clean 40 Miscellaneous and Multiple Operations Operations 42 E. Summary 44 PART II RECOMMENDATIONS 47 A. Recommended Work Practices andProcedures 48 1 Storage 48 2. Hand Punching 48 3. Hand Operated Mechanical Punching 48 4 Machine Punching 48 5 Hand Shaping 48 6 Machine Shearing 48 7. Machine Nibbling 49 8 Installation 49 9 Removal 49 10 Flange Clean Following Removal 49 B. Personal Protective Equipment 49 C. Waste Disposal 49 D. Labeling 49 PART III MISCELLANEOUS 50 A. References 51 B. Enclosures 1. Sampling Procedure Sheet 52 2 Collection Data Sheet 3. Asbestos Counting Procedures 54 TABLE OF CONTENTS CONT'D PAGE NO C. Appendix 1 Sampling data and material description 55 a Section I Storage 56 b Section II Hand Punching 57 C. Section III Hand Operated Mechanical Punching 58 Pro Section IV . Machine Punching 59 e Section V Hand Shaping 60 f Section VI Machine Shearing 61 g Section VII Machine Nibbling 62 h Section VIII Installation 63 i Section IX Removal and Concurrent , Installation 64 j Section X Clean Following Removal 65 k Section XI Removal with Simultaneous Clean 66 1 Section XII Miscellaneous and Multiple Operations 67 se = 4 Fet RS eg TABLE LIST OF TABLES PAGE NO I. Airborne asbestos levels during storage 7 II Airborne asbestos levels during hand punching 15 III Airborne asbestos levels during hand operated mechanical punching 18 IV Airborne asbestos levels during machine gasket punching 21 V. VI Airborne asbestos levels during hand shaping 25 Airborne asbestos levels during machine shearing 27 VII Airborne asbestos levels during machine nibbling 30 VIII Airborne asbestos levels during installation 33 IX Airborne asbestos levels during concurrent gasket removal and installation 36 XI XII Airborne asbestos levels during removal of residual material after gasket removal 38 Airborne asbestos levels simultaneous clean during gasket removal and 41 Comparisoonf airborne asbestos fiber concentration in all evaluated phases of gasket operations 46 LIST OF FIGURES FIGURE 7 PAGE NO 1 Asbestos containing gasket material stored 8 for issue in individual rolled sheets 2 Asbestos gaskets and packing stored in open 9 bins 3 Asbestos containing gaskets stored in open 10 bins in sealed impermeable bags 4 Asbestos containing gaskets stored in open 11 bins in sealed impermeable bags and on . open overhead storage racks 5 Storage of asbestos gasket sheets on open 12 rack 6 Storage of gaskets in open bins 13 7 Manufacture of gaskets by hand punching 16 8 Hand operated mechanical punch used for gasket 19 manufacture 9 Unventilated machine for punching gaskets 22 10 Ventilated and unventilated machines for 23 gasket punching 11 Machine shearing gasket material 28 12 Machine nibbling gasket material 31 | , 13 An installed gasket 34 / 14 Flange after gasket removal and before 39 removal of residual gasket material ec aaa eet (crs RetSoccer eer 4 PROJECT DEFINITION Asbestos a fibrous mineral silicate which is a component in many gasket materials is a documented health hazard causing cancer and a chronic lung disease known as asbestosis reference a Due to the unknown personnel exposures to asbestos during gasket use the Naval Ships Engineering Center tasked the Naval Regional Medical Center NRMC Bremerton WA via the Bureau of Medicine and Surgery references b and c to obtain additional data during all aspects of the life cycle of asbestos containing gaskets Statistically significant data was requested so that reference d can be modified to include specific procedures for gasket handling storing marking processing installing removal and disposal NRMC NRMC Bremerton was assigned the lead in the project with Oakland tasked to assist in data collection The majority of the samples were collected by NRMC Bremerton at Puget Naval Shipyard in various shops and aboard ship The photographs in the report were provided by Puget Sound Naval Shipyard METHODS AND MATERIALS AREAS SAMPLED a All phases of asbestos gasket handling were evaluated by obtaining air samples in the breathing zone of workers Samples were collected from the following operations storage hand gasket punching hand operated mechanical punching machine punching hand eee shaping machine searing machine nibbling installation removal with concurrent installation removal and hand scraping removal and wire brushing and clean following removal hen SAMPLING PROCEDURE a Samples were collected using pumps at an air flow rate of Bendix personal sampling 2.0 liters per minute A 37 mm four piece 2 rings filter cassette with 0.8 micrometer pore size mixed cellulose ester filter was used to collect the airborne asbestos fibers Samples were collected with the face cap of the cassette removed and the filter facing downward Sampling time ranged from a minimum of six minutes to a maximum of 132 minutes Enclosure 1 is a copy of the complete sampling procedure Environmental data collected in the field were recorded on a collection sheet Enclosure 2 A total of 166 samples were collected covering each phase of gasket operations The number of samples collected in each phase of operation was sufficient to meet the required number of samples for statistically valid air sampling data as requested by reference b The required number of samples needed for statistical analysis and comparison was determined by guidelines set forth in reference e COUNTING PROCEDURE All personnel asbestos samples were counted using the phase contrast microscopy method enclosure 3 Samples were counted by workers at NRMC Bremerton the Navy Environmental Health Center NAVENVIRHLTHCEN and the Environmental Health Science Laboratory Richland WA who actively participate in the National Institute of Occupational Safety and Health NIOSH Proficiency Analytical Testing Program CALCULATIONS Airborne asbestos fiber the following formula concentrations are computed using Concentration = average fiber count filter area field area sample volume cc For example assume an average fiber count field 1pm 30 minute and field 22 sampling time at liters area of 0.00469 mm of 1.2 fibers per minute Concentration 1.2 fibers 855 mm 0.00469 fiel6d0 1000 = 3.65 fibers cc Results are reported to the nearest 0.01 fibers Negative results are not reported as zero but as less than the lower detectable limit of one fiber in 100 fields Thus a lower detectable 30 liter 1 limit than a sample has a different 10 liter sample For example In a 10 1 sample Concentration = 0.01 fibe8r 55 mm 0.00469 fiel1d 01 101 1000 cc 0.18 fibers In a 30 1 sample Concentration ; 40.01 fibe8r 55 mm 0.00469 field 30 1000 cc < 0.06 fibers The lower therefore detectable limit to length of the is due only to sample size operation being evaluated and CONTROL DEFINITIONS Various types of asbestos gasket materials were used during the survey Types of material used for each operation can be found in Appendix I. Controls for the various operations were defined and characterized under the following definitions None - no specific controls were used i.e. no wetting enclosing or ventilation Housekeeping - high efficiency vacuum cleaners Portvacs used to clean areas reference f waste material placed in sealed containers area kept clean and free of debris accumulation stored material sealed in impermeable polyethylene bags Ventilation Filtered provided local exhaust to operation ventilation ASBESTOS FIBER EXPOSURE STANDARDS The current maximum allowable exposure to asbestos as stated by references d g h is 2.0 fibers greater than 2.0 five micrometers per cubic centimeter of air fibers for an eight hour day with a ceiling limit of 10.0 fibers for any 15 minute period The 2.0 fiber level is a time weighted average TWA allowable exposure and is the current exposure limit The Department of Labor Occupational Safety and Health Administration OSHA has proposed a standard of 0.5 fibers with a ceiling limit of 5.0 fibers reference i The National Institute of Occupational Safety and Health NIOSH has recommended a limit of 0.1 fibers with a ceiling limit of 0.5 fibers reference a The Navy Environmental Health Center NAVENVIRHLTHCEN has been designated as the central management point for the wide Asbestos Medical Surveillance Program NAVENVIRHLTHCEN states they will begin medical surveillance of all personnel potentially exposed to a level of 0.1 fibers reference j Reference g does not specify the level at which medical monitoring should begin Results of the current study time during sampling rather are based on actual exposure than a time weighted average Jobs involving asbestos gaskets are usually of short duration and are done on an intermittent basis Therefore conversion of actual exposure time values to TWA values is not applicable as bo So aliaieapiny AM SVG R RAg + SECTION I STORAGE Hale STORAGE Storage of asbestos gasket materialiss generally handled as a supply function Material is typically received in two forms sheets and precut gaskets Asbestos sheet material is stored in either flat sheet form or rolled into bundles Figure 1 Sheet material is typically stored in open air areas and is either wrapped in polyethylene film may be color coded for asbestos handling or unwrapped Precut gaskets and gasket packing materials are stored in exposed open fronted storage bins and are either wrapped or unwrapped Figures 2 and 3 Some pegs precut gaskets are stored Figure % these gaskets on exposed hanging are not covered Inspection of Table I shows an average fiber concen- tration of 0.02 fibers > 5 cc of air was found in supply storage areas Asbestos material stored for use outside of main supply storage Figures 5 and 0.04 fibers > areas is in open fronted bins or shelves 6 An average fiber concentration of cc air was obtained Table I These data indicate that asbestos gasket material fiber concentrations are the manner of is irrelevant storage for when airborne considered The various methods of storage examined showed fiber concentrations well below the currently used standard of 2.0 fibers air the Department of Labor proposed level of 0.5 fibers air and the point of initiation of medical monitoring of 0.1 fibers air Individual sampling data listed in Appendix 1 TABLE I Airborne Asbestos Levels During Storage \ ' Operation Storage receipt issue for and Controls housekeeping Breathing Zone Dust Conc fibers > cc air Range Ave. 0.01-0.05 0.02 No of Samples 14 . Storage for none @ use 0.01-0.12 0.04 7 p 2vi18 7 FIGURE 1 ASBESTOS CONTAINING GASKET MATERIAL STORED FOR ISSUE IN INDIVIDUAL ROLLED SHEETS $y sy" ol i 5 FS Pan A 9 a ? FIGURE 2 ASBESTOS GASKETS AND PACKING STORED IN OPEN BINS A 3 ie Wty, FIGURE 3 ASBESTOS CONTAINING GASKETS STORED IN OPEN BINS IN SEALED IMPERMEABLE BAGS 10 Ak Laoat -Ded Pee ty J o o ; 3 FIGURE 4 ASBESTOS CONTAINING GASKETS STORED IN OPEN BINS IN SEALED IMPERMEABLE BAGS ANODN OPEN OVERHEAD STORAGE RACKS 11 et, e LPeA FIGURE 5 STORAGE OF ASBESTOS GASKET SHEETS ON OPEN RACK esd ye SUE CRE 12 FIGURE 6 STORAGE OF GASKETS IN OPEN BINS 13 rtt nvyanee My