Document XOdw4gNL2YaOkqKGZMR4J3kyw
WORKSHOP ON ASBESTOS: DEFINITIONS AND MEASUREMENTS METHODS
July 18 -20, 1977
GENERAL INFORMATION
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WELCOME! .
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INFORMATION
The-people at the Information Desk looccaatteed infithe registration area will>r:^^%.-
be.pleased to assist you.
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TRANSPORTATION!* - -.,)..!.,r
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Monday, July-18 - Wednesday/July 20 Cfir;-
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8:00 a.m. Early bus leaves Sheraton-Silver Spring for NBS
'8:30 a.m.' Last buses leave Sheraton-Silver Spring for KBS
Transportation will be provided from NBS to the hotels at the conclusion'
of the. meeting on Monday and Tuesday... If you need transportation to ; . ;
the hotels at the conclusion of the meeting on Wednesday, please complete
a request form at the Ground Transportation Desk.
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TRANSPORTATION TO AIRPORTS
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Transportation'will.be provided from NBS,to;the area airports'at the;/;;
conclusion of. the Symposium.- Reservations should be' made at -the' Ground
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Transportation Oesk by completing a request?form and returning it by.
2:00 p.m. on Tuesday, July 19; Persons wishing to make use of .this service/-f;;//
should bring their luggage to NBS on-Wednesday, and leave it in the.coatroom;-.! .
fpr the day.
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COMMUNICATIONS
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Symposium Main Desk. The telephone numbers for contact.with the Symposium1 , -V.
are (301) 921-3330 or 921-3340.
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Messages?! There will be a message .Board.in'.the registration! desk 'afea'^^vAr^
Please check, this daily during the Symposium.'. Attendees wiliiiiot-b'e-xailed.-iv-.;^-
;out of the sessions to receive telephone calls except in emergencies. <
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Telephones. In-house and pay phones! are located adjacent to the registration f`' -desks.;:f: > " v." : './v -ift . 4 , K, - |
WFEE'fe-
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'-*i:-?ltv Coffee;and donuts will.be/erved.befpre-the;session each morning* Coffee|g|^|f':
also will' betserved; during' mid-morning.and.irai'd-afternooh break's':! *
fififir .fir - vv.
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ASB 0004088
SCF-ALLF-06610
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LUNCHEONS
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Attendees' will. be served lunch each'day in|a':;special section of the NBS
Cafeteria- Lunch tickets are in:;^the^bottom-pocket of your name badge. J\ i (Tickets, will, not be accepted ,in the .front-line of the cafeteria.). , t
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auditorium'-"
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llvfjiieife?wi 1 l.|be? a ' coffee for1 guests' of^registrants, i n.,.the Board :Ron]pfJ <$ i;Sheratqn-Si 1 ver.,Springfromyi;9^ 10.:;3p^a|mMondayl, June' 13. A,fiQstess`| _
WiAiJvbefavailable ^;t;o - answer "questioriis^^p^ciyi de;;tourl st i nfomiati on ,`^and
I^Ptieltf guests plan their visit in the area.'r'vf'' 7^ "r:.'!. i-W'
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:}:.%:T!ie'Symposium buffet will be held Monday evening, July 18 in the Maryland,. ^
'.i\ Ballroom of the Sheraton-Silver Spring?'! The Cash Bar will begin at approximately
''.if 7:15 p.m.;,followed, by dinner at.8:00 p.mlf Additional tickets may be pur-.l
chasedcatulthe registration .desk.fvW^ivf/.. . .--.../ ~
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jc>" MISSCELLANEOIIS . ''
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Tlie'.following services are located in the basement of the NBS Administra- _
-X^-tion Building!-'Please take the`elevator-from the Main Lobby.
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^ -- 'Bank (Room A28) -- Hours: 9 aim. - 3 p.m.
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M- %Y Beauty' and barber" shop' (Room C3I) v'. i |v^.Newspaper' and'sundry stand, (adjacent'to elevators)
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WORKSHOP ON ASBESTOS: DEFINITIONS AND MEASUREMENT METHODS
National Bureau of Standards Gaithersburg, Maryland
July 18-20, 1977
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. . . Final Registration List
Frederick R. Allen --N.-C. Aggregates Association
P. 0. Box 30603 Raleigh, NC 27612
Francis M. Alpiser
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Environmental Protection Agency
Region III
Curtis Building, 6th & Walnut
Philadelphia, PA 19106
William Anderl
Minnesota Pollution Control Agency
Division of Water Quality
Roseville, MN 55113
Charles H. Anderson Athens ERL Environmental Protection Agency ' College Station Road Athens, GA 30601
Sandra Anderson Battelle, Columbus Laboratories 505 King Avenue Columbus, OH 43201
Irvin Asher . Office of Science Food and Drug Administration 8800. Rockville Pike Bethesda, MD 20014
William H. Ashton Johnson & Johnson U.S. Rt. 202 Raritan, NJ 08869
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Steven Aust Bureau of Air Quality-------------- ------201 W. Preston Street O'Conor Building Baltimore, MD 21201
Russell W. Ayres Read, Smith, Shaw and McClay 747 Union Trust Building Pittsburgh, PA 15230
James H. Baird W, R. Grace & Company 7379 Route 32 Columbia, MD 21044
William G. Banfield National Cancer Institute 9000 Rockville Pike Building 10, Rm. 8B19 Bethesda, MD 20014
Walter Bank Mining Enforcement & Safety,- Admin. Denver Technical Support Center P. O. Box 25367; DFC Denver, CO 80225
Virgil J. Barczak Kerr-McGee Corporation Technical Center P. O. Box 25861 Oklahoma City, OK 73125
Kenneth Barry BNA - Occupational Safety and
Health Reporter
1231 - 25th St., NW Washington, DC 20037
ASB 0004090
Ian Bartky Institute for Materials Research National Bureau of Standards Washington, DC 20234
D. R. Beaman Dow Chemical Company 574 Building Midland, MI 48640
William E. Bell
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Division of Resource Protection
Montgomery County Department of
Environmental Protection_______
6110 Executive Boulevard, Room 340
Rockville, MD . 20852
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Ed Berg
EMSL
Quality Assurance Branch
Cincinnati, OH 45268
Roy Bernard MESA 309 Shadeswood Drive Birmingham, AL 35226
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Ching-tsen Bien
U.S. Department of Labor
Occupational Safety & Health Admin.
200 Constitution Avenue, NW
Washington, DC 20210
J. Bignon Universite Paris - Val de Marne Centre Hospitalier Intercommunal 40 Avenue de Verdun . 94010 Creteil FRANCE
Eula Bingham '
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Assistant Secretary of Labor
U.S. Department of Labor
Room S-2315
200 Constitution Avenue, NW
Washington, DC 20210
Kyle Bishop Minnesota Department of Health 717 Deleware Street SE Minneapolis, MN 55440
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Rolland L. Blake U.S. Bureau of Mines Metallurgy Research Center Twin Cities, MN 55111
R. L. Bleifuss U.S. Steel Corporation Research Laboratory Coleraine, MN 55722
Hal Bohmer
PPG Industries, Inc.
P. O. Box 31
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Barberton, OH 44203
Krell Bosler Spartek Inc. 1375 Raff Road, SW Canton, OH 44711
Fred M. Bowers FMC Corp. P. O. Box 8 Princeton, NJ 08540
Kenneth W. Boyer HFF-147 Food & Drug Administration 200 C Street, SW Washington, DC 20204
Joseph Breen Environmental Protection Agency Office of Toxic Substances 401 M Street, SW Washington, DC 20460
John.A. Breslin U.S. Bureau of Mines 2401 E Street, NW Washington, DC 20241
Philip D. Brick Pickands Mather & Company 811 Sellwood Building ' Duluth, MN 55803
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Alan T. Broderick Inland Steel Mining Company 1701 North Ninth Avenue Virginia, MN 55792
ASB 0004091
Harlan Browning Alpha Portland Cement Company Alpha Building Easton, PA 18042
Morley Brownstein Consumer & Corporate Affairs
Product Safety Branch Ottawa, Ontario K1A OC9 CANADA
Leonard Bruckman Department of Environmental Protection Air Compliance_________________________ State Office Building 165 Capitol Avenue Hartford, CT 06115
Merle Bundy
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U.S. Steel Corporation
600 Grant St.
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Pittsburgh, PA 15230
Edmund M. Buras, Jr. Harris Research Laboratories Gillette Research Institute 1413 Research Boulevard Rockville, MD 20850
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M. Raymond Buyce N. Y. Geological Survey Education Building Annex Albany, NY 12186
Peter Buynok Naval Facilities Engineering
Command Alexandria, VA 22332
Daniel Cacchione Portland Cement Association 5420 Old Orchard Road Skokie, IL 60076
William J. Campbell
U. S. Bureau of Mines
College Park Metallurgy Research Center
College Park, MD 20740
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Armand R. Casola Food & Drug Administration Bureau of Drugs 5600 Fishers Lane Rockville, MD 20857
William A. Cawley Environmental Protection Agency Mail Code RD680 401 M Street, SW Washington, DC 20460
James H. Chapman Con6ad Research Corporation 121' North Hullaml Avenue--------------Pittsburgh, PA 15206
Eric J. Chatfield Ontario Research Foundation Sheridan Park Research Community Mississauga, Ontario L5K 1B3 CANADA
Chia Ting Chen OSHA - U.S. Dept, of Labor Room 602 400 First Street, NW Washington, DC 20215
Lauren Choate Interpace Corporation Mountain View Drive Willsboro, NY 12996
K. S. Chopra Union Carbide 4625 Royal Avenue Niagara Falls, NY 14302
James M. Christie Vulcan Materials Company One Metroplex Drive Box 7497 Birmingham, AL 35223
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Frank H. Chung Sherwin-Williams Company 10909 Cottage Grove Avenue
Chicago, IL 60628
ASB 0004092
David E. Clapp Texas A&M University Department of Industrial Engineering College Station, TX 77843 .
Harold Clements EMSL Quality Assurance Branch Cincinnati, OH 45268
Robert A. Clifton U.S. Bureau of Mines --2401 E Street. NW Washington, DC 20241
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Jay Coffman Luck Quarriers, Inc. P. 0. Box 4682 ; Richmond, VA 23229
Stuart Cohen
Environmental Protection Agency
. Pesticides & Toxic Substances
Enforcement
: Mail Code EN-342
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; 401 M Street, SW.
Washington, DC 20460
Richard R. Cole
Harry T. Campbell Sons' Company
100 W. Pennsylvania Avenue
Towson, MD 21204
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Benjiman Collins North American Exploration, Inc. P. O. Box 7584 Charlottesville, VA 22906
Philip M. Cook U.S. Environmental Protection Agency Environmental Research Laboratory 6201 Congdon Blvd. Duluth, MN 55804
W. Clark Cooper
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Equitable Environmental Health
2180 Milvia Street
Berkeley, CA 94704
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Joseph R. Copeland Interpace Corporation 260 Cherry Hill Road Parsippany, NJ 07054
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R. E.'Corcoran U.S. Bureau of Mines 2401 E Street, NW Washington, DC 20241
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James D. Cornell
U.S. Gypsum Company
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101 S. Wacker Drive
'Chicago, IL--60606------------------- ----------
Marcel Cossette Centre for Technology of the Environment University of Sherbrooke Sherbrooke, P.Q. J1K 2R1 CANADA
Edwin Cox . Commonwealth Labs, Inc. P. O. Box 8025 Richmond, VA 23223
Edward Crandall Maryland State Health Dept. Division of Employee Health Programs 201 W. Preston St. Baltimore, MD 21201
Bill Crowley Maryland Geological Survey Johns Hopkins University Baltimore, MD 21218
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Alan Davidson
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O. M. Scott
Research Building
Marysville, OH 43040
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Richard L. Davis Koppers Co., Inc. 1177 Pinewood Drive Pittsburgh, PA 15243
E. K. Davison National Sand and Gravel Association 900 Spring Street Silver Spring, MD 20910
ASB 0004093
Peter DeBruyn Office of the Director National Bureau of Standards Washington, DC 20234
John G. Delly McCrone Associates 2820 S. Michigan Avenue Chicago, IL 60616
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John M. Dement
National Institute for Occupational
Safety and Health
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Cincinnati, OH 45226
William P. Demery Special Experimental Programs U.S. Department of Labor OSHA, Rm. N-3603 200 Constitution Avenue, NW Washington, DC 20210
Phillip B. DeNee NIOSH-ALOSH 944 Chestnut Ridge Road Morgantown, WV 26505
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Robert E. Denham Asarco, Inc. 120 Broadwav New York, NY 10005
Catherine Dentan Carborundum Corp. Res. and Dev. Division P. O. Box 1054 Niagara Falls, NY 14302
Lois Dicker
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Occupational Safety & Health Admin.
Division of Occupational Health
Programming
DOL Rm N3119
200 Constitution Avenue
Washington, DC 20210
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Robert H. Dickey
MESA
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4800 Forbes Avenue
Pittsburgh, PA 15213
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Willard C. Dixon .
U.S. Department of Labor
Occupational Safety & Health Admin.
390 Wakara Way
Salt Lake City, UT 84117
Ken Doolan U.S. Coast Guard 400 - 7th Street, SW Washington, DC 20590
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M. J. Doyle The Hanna Mining Company 100 Erieview Plaza _________________ _ Cleveland, OH 44114
Ronald G. Draftz . IIT Research Institute 10 West 35th Street Chicago, IL 60616
Guy F. Driver., Jr. P. O. Drawer 84 Winston-Salem, NC 27102
James R. Dunn Dunn Geoscience Corporation Mountain View Drive Averill Park, NY 12018
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Frank Echelberger
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Hooker Chem. & Plastics
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P. O. Box 344
Niagara Falls, NY 14302
Richard D. Edsell U.S. Department of Labor OSHA, Rm. N-3657 200 Constitution Avenue, NW Washington, DC 20230
William V. Eisenberg
U.S. Food & Drug Administration
Washington, DC 20234
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Michael H. Eisner U.S. Department of the Interior Bureau of Mines College Park Metallurgy Research Cente College Park, MD 20740
ASB 0004094
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Samuel Elkin Temple University 3307 N. Broad Street Philadelphia, PA .19116
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William Ellis Maryland Occupational Safety and
Health Service 203 East Baltimore Street Baltimore, MD 21202
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John T. Enwright NL Industries, Inc. P. 0. Box 700 Hightstown, NJ 08520
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Edwin S. Erickson, Jr. Bethlehem Steel Company Homer Research Laboratories Bethlehem, PA 18016
John B. Ewell Food & Drug Administration Bureau of Biologies 8800 Rockville Pike Bethesda, MD 20014,
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Lidia Farmer Gillette Research Institute 1413 Research Boulevard Rockville, MD 20850
William Fassuliotis GAF Corporation 1361 Alps Road Wayne, NJ 07470
Donald R. Ferry Charles Mathieu, Inc. 18-22 Bank Street P.O. Box A.M. Summit, NJ 07901
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R,. M. Fisher U.S. Steel Research Laboratory Monroeville, PA 15146
Jean J. Fitzpatrick Colorado School of Mines
Research Institute . P. O. Box 112 Golden, CO 80401
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Delbert Flowers U.S. Department of Labor Room N-3106 200 Constitution Avenue Washington, DC 20210
A. McM. Foster Hollingsworth & Vose Company U2 Washington Street East Walpole, MA 02032
Douglas P. Fowler Stanford Research Institute 333 Ravenswood Avenue Menlo Park, CA 94025
James E. Fox Virginia Aggregates Assn. 2317 Westwood Avenue Richmond, VA 23230
Kenneth S. Freeman U.S. Gypsum Company 1000 East Northwest Highway Des Plaines, 1L 60016
Melvin H. Friedman Food & Drug Administration HFF 147 200 C Street, SW Washington, DC 20204
Norman E. Fritsche Environmental Protection Agency . Annapolis Field Office Annapolis Science Center Annapolis, MD 21401
Robert M. Furlong W.W. Box 13527 Boxley Building Jefferson Street Roanoke, VA 24035
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Arthur E. Gass
Office of Training and Education
OSHA
200 Constitution Avenue, NW
Washington, DC 20101
ASB 0004095
Lois L. Gerchraan
Stanford Research Institute International
333 Ravenswood Avenue
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Menlo Park, CA 94025
John C. Gifford Asarco, Inc. Oak Tree Road & Park Avenue S. Plainfield, NJ 07080
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Gordon J. Gill Cyprus Industrial Minerals Company -505 S. -Flower Street-----------------------------32nd-Floor Los- Angeles, CA 90071
J. K. Gilmore
Vermont Asbestos Group, Inc.
P. O. Box 70
Hyde Park, VT . 05655
David M. Gioiello National Aeronautics & Space Admin. Goddard Space Flight Center Health Unit, Bldg. 5 Greenbelt, MD 20771
Samuel Goldberg MESA 4800 Forbes Avenue Pittsburgh, PA 15213
David Goldheim
Martin Marietta Corporation
1450 S. Rolling Road
Baltimore, MD 21227
Aurel Goodwin
MESA
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4015 Wilson Blvd.
Arlington, VA 22203
Cary Gravatt Analytical Chemistry Division National Bureau of Standards Washington, DC 20234
David Gray Minnesota Department of Health 717 Deleware Street SE Minneapolis, MN 55440
Leven B. Gray ' Goddard Space Flight Center Greenbelt, MD 20771
Alice L. Greife NIOSH/ALOSH 944 Chestnut Ridge Road Morgantown, WV 26505
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Joseph R. Gross Jones & Laughlin Steel Corp. 504 North 1st Street Virginia. MN 55792________
Paul Gross Industrial Health Foundation 5231 Centre Avenue Pittsburgh, PA 15232
Richard Gruenbaum O. M. Scott Research Building Marysville, OH 43040
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Fred I. Grunder Bethlehem Steel Corporation .Homer Research Laboratories Bethlehem, PA 18016
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Richard Gullickson International Minerals & Chemical Corp. 501 E. Lange Mundelein, IL 60060
Joe A. Gutierrez Vulcan Materials Company P. O. Box 4195 Winston-Salem,. NC 27105
Robert A. Haagensen ASARCO, Inc. Central Research Department 901 Oak Tree Road South Plainfield, NJ 07080
Janet C. Haartz ` NIOSH-MRB 4676 Colorado Pkwy. Cincinnati, OH 45226
ASB 0004096
C. Y. Haas
Minerals & Chemicals Division .
Engelhard Minerals & Chemicals Corp.
Menlo Park
Edison, NJ 08817
George Haecker Plastic Engineering Company Sheboygun, W1 53081
' William Harris Martin Marietta Corporation
__145Q.-S__Rolling Hoad_________________ Baltimore, MD 21227
Allan M. Harvey . R. T. Vanderbilt Co., Inc.
30 Winfield Street Norwalk, CT 06855
Robert Hehir
Consumer. Products Safety Commission
Westwood Towers Building, Rm. 712
" 4501 Westbard Avenue
Bethesda, MD 20207
James Heil
Certain-Teed Corporation
Pipe & Plastics Group
P. O'. Box 860
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Valley Forge, PA 19482
Kurt F. Heinrich . Analytical Chemistry DivisionNational Bureau of Standards Washington, DC 20234
' Clarence A. Herbst, Sr.
Resinoid Engineering Corporation
3445 Howard Street
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Skokie, IL 60076
John Heter
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Interpace Corporation
2901 Los Feliz Blvd.
Los Angeles, CA 90039
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John L. S. Hickey ^ Research Triangle Institute
Research Triangle Park, NC 27709
Gavin Hildick-Smith Johnson & Johnson 501 George Street New Brunswick, NJ 08903 .
William B. Hillegass O. M. Scott Research Building Marysville, OH 43040
J. A. Hodgeson Office of Air & Water Measurement National Bureau of Standards_______ Washington, DC 20234
John D. Hoffman Institute for Materials Research National Bureau of Standards Washington, DC 20234 .
Liselotte HoghhoLzer Armed Forces Institute of Pathology Washington, DC 20306
Pat Honchar Preventable Diseases Division Connecticut State Department of Health 79 Elm Street Hartford, CT 06115
. Earl G. Hoover National Crushed Stone Association 1415 Elliot Place, NW Washington, DC 20007
Emanuel Horowitz Institute for Materials Research National Bureau of Standards Washington, DC 20234
Arthur J. Huetteman Personal Products Company Van Liew Avenue Milltown, NJ 08850
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Charles W. Huggins U.S. Department of the Interior
Bureau of Mines College Park Metallurgy Research Ctr. College Park, MD 20740
ASB 0004097
uth Hughes 'estem Health Services Research 113 Varsity Estates Road 'algary, Alberta T3B 241 CANADA
'.obert Huntington iartin Marietta Corporation 450 S. Rolling Road '.altimore, MD 21227
laniel W. Hurley
fL Industries, Inc.
`-0. Box 700-----------------------------
lightstown, NJ 08520
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J. Y. Hwang IcGill University 775 University Street Montreal, Quebec JANADA
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tobert Hylan IAF Corporation 361 Alps Road ' Vayne, NJ 07470
donald A. Jackson itate of Maryland department of Natural Resources Vater Resources Administration Tawes State Office Bldg. i80 Taylor Avenue Annapolis, MB' 21401
Joseph C. Jackson \/C Pipe Producers Association 600 Wilson Boulevard Suite 1308 Arlington, VA 22209
larry E. Jaworski dSHA - Chicago Regional Office 190 South Dearborn S.t.-Rm. 3263 Chicago, IL 60604 '
dale Johnson IAF Corporation 361 Alps Road Vayne, NJ 07470
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Frank Johnson Armed Forces Institute of Pathology Washington, DC 20306
H. Bradley Johnson American Mining Congress 1100 Ring Building Washington, DC 20036
Patricia C. Johnson Analytical Chemistry Division National Bureau of Standards Washington, DC 20234
Ronald B. Johnson Institute for Materials Research National Bureau of Standards Washington, DC 20234
David R. Jones
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I. I. T. Research Institute
10 West 35th Street
Chicago, IL 60616
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Robert D. Joyce . Bethlehem Steel Corporation Martin Tower, B-252 ' Bethlehem, PA 18016
Elizabeth Kaegi Western Health.Services Research Ltd. 1213 Varsity Estates Rd., NW Calgary, Alberta T3B 2X5 CANADA
Eila Kairinen Gillette Company Research Institute 1413 Research Blvd. Rockville, MD 20850
David A. Kandel
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Kaiser Steel Corporation
P. 0. Box 217
Fontana, CA 92335
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Mark D. Kaufman Sutherland, Asbill & Brennen 3100 First National Bank Tower
Atlanta, GA 30303
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ASB 0004098
. Martin G. Kemplin Nicolet, Inc.
Maple Street
Ambler, PA 19002
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Charles B. Kenahan U.S. Department of the Interior Bureau of Mine6 College Park Metallurgy Research Ctr. College Park, MD 20740
Robert J. Kilgour
Armstrong Cork Company
--Liberty and Charlotte Streets_________
Lancaster, PA 17604 "
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William B. King Armstrong Cork Company Suite 205 1666 K Street, NW Washington, DC 20006
William H. Kirchhoff
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Office of Air & Water Measurement
National Bureau of Standards
Washington, DC 20234
Diana M. Kirkpatrick ' Consumer Product Safety Commission
200 C Street, SW Washington, DC 20204
Owen H. Kittilstad CertainTeed Corporation P. O. Box 860 Valley Forge, PA 19482
Partricia B. Klinger Kennecott Research Center P. O. Box 11299 . 1515 Mineral Square Salt Lake City, UT 84147
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Carl E. Kollmar, Jr. . . J. M. Huber Corporation
Route 4, Huber Macon, GA 31201
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C. Kommineni
Department of Health, Education,
& Welfare
mosh
1014 Broadway
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Cincinnati, OH 45202
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Paul Kotin Johns-ManviHe Corporation Ken-Caryl Ranch Denver, CO 80217
George J. Krafcisin Kemper/NATLSCO Long Grove, IL 60049
Sidney Krakauer Pall Biomedical Products Corporation 30 Sea Cliff Avenue Glen Cove, NY 11542_______________
James R. Kramer Department of Geology McMaster University Hamilton, Ontario L85 4MICANADA
Jerry Krause Colorado School of Mines Research Institute P. O. Box 112 Golden, CO 80401
Stephen Krop Food and Drug Administration . Bureau of Drugs 200 C Street, SW Washington, DC 20204
Edward Kuchar Olin Corporation .New Haven, CT 06527
Philip D. La Fleur Analytical Chemistry Division National Bureau of Standards Washington, DC 20234
J. F. Lally U.S. Steel Research Laboratory Monroeville, PA- 15146
Jule K. Lamar
Food and Drug Administration
Bureau of Drugs
5600 Fishers Lane
Room 18-B-31
Rockville, MD 20857
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ASB 0004099
Helen W. Lang U.S. Bureau of Mines 4800 Forbes Avenue Pittsburgh, PA 15213
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Arthur Langer Environmental Sciences Laboratory Mt. Sinai Hospital New Vork, NY 10029
William L. Lappenbusch Coordinator, Standards Development
Environmental Protection Agency Washington, DC 20460
Maxwell W. Layard National Cancer Institute Landow Building, Rm C318 Bethesda, MD 20014
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A. Philip Leber Battelle - Columbus Laboratories 505 King Avenue Columbus, OH 43201
George Lee Applied Research Johnson & Johnson Baby Products Co. Route 202 Raritan, NJ 08869
R. J. Lee U.S. Steel Research Laboratory Monroeville, PA 15146 .
Robert Lee Rogers Corporation Rogers, CT 06263.
James Leineweber R&D Center Johns-Manville Corporation Denver, Colorado 80229
Robert S. Lemire Reserve Mining Company Silver Bay, MN 55614
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Jacques Lepoutre
Eternit S.A.
2920 Kapelle-op*den-Bos
BELGIUM
Archie Liao
Prince Georges County Health Dept.
10210 Greenbelt Road
Seabrook, MD 20801
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Charles Lichtenwalner
Bell Laboratories
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Murray Hill, NJ 07974 - .
Jeff Limoge Vermont Asbestos Group P. O. Box 70 Hyde Park, VT 05655
Burt Linck The Arundel Corporation 110 West Road Baltimore, MD 21204
C. M. Llewellyn, Jr. Lone Star Industries, Inc. P. O. Box 1-J 3011 Dock Street Richmond, VA 23201
Harold L. Lloyd Pennsylvania Glass Sand Corp. (ITT) Berkeley Springs, WV. 25411
Thomas Loch
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Clayton Environmental Consultants
25711 Southfield
Southfield, MI 48075
Robert H. Locke W. R. Grace & Company 62 Whittemore Avenue Cambridge, MA 02140
Ernest Lory Civil Engineering Laboratory CBC, Code L52 Port Hueneme, CA 93043
ASB 0004100
Howard R. Ludwig National Institute for Occupational
Safety & Health Taft Laboratories .4676 Columbia Pkwy Cincinnati, OH 45226
Bernard S. Mac Cabe Carborundum Co. NAO-Water Management Division P. 0. Box 1054 Niagara Falls, NY 14302
--John Maciejczyie------ ------- ----------------
Rockwell International
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600 Grant Street
Pittsburgh, PA 15219
Joseph Mackey Analytical Chemistry. Division National Bureau of Standards Washington, DC 20234
Joseph A. Macko, Jr. Army Environmental Hygiene Agency Aberdeen Proving Ground Edgewood, MD 21010
Lloyd A. Madsen Occupational Safety & Health Admin. Analytical Laboratory 390 Wakara Way Salt Lake City, UT 84108
Ralph E.Magnuson, Jr.
The Cleveland-Cliffs Iron Company
1460 Union Commerce Building
Cleveland, OH 44115
S. E. Malovrh . The Hanna Mining Company 100 Erieview Plaza Cleveland, OH 44114
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Roland E. Manger Harry T. Campbell Sons' Company 100 W. Pennsylvania Ave. Towson, MD 21204
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Gregg Manning Diamond Shamrock Corporation T. R. Evans Research Center P. O. Box 348 Painesville, OH 44077
Thomas. J. Manthey
Pickands Mather & Company
1100 Superior Avenue
.
Cleveland, OH 44114
John Marsh
Raybestos Manhatten Inc.
.
inn Oakview Drive______________________
Trumbull, CT 06611
Eugene Martin EDAX International, Inc. 157 Colique Avenue New Rochelle, NY 10801
Robert F. Martin
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Institute for Materials Research
National Bureau of Standards
Washington,- DC 20234
John F. Martonik U. S. Department of Labor Occupational Safety & Health
Administration 200 Constitution Avenue.,. NW Washington, DC 20210
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Brian Mason Mineral Sciences Smithsonian Institution Washington, DC 20560
Woodrow W. Massad Continental Oil Company Box 1267 Ponca, OK 74601
Darrell K. Mattheis
.
Occupational Safety and Health Agency
Room N 3603
200 Constitution Avenue
Washington, DC 20210
ASB 0004101
John Matwey Analytical Chemistry Division National Bureau of Standards Washington, DC 20234
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Arthur McClaughian MESA 9 Mayfair Drive Slingerlands, NY 12159
Lottie McClendon Institute for Materials Research National Bureau of Standards -Washington, TIC 20234 ___________
Ray McClure Division of Occupational Health U.S. Department of Labor Occupational Safety & Health Admin. 200 Constitution Avenue, NW Washington, D.C 20210
Brian McCoy The Arundel Corporation 110 West Road Baltimore, MD 21204
.
Ronald McCullen Travelers Insurance Co. 248 CP Lab 1 Tower Sq. Hartford, CT 06115
Philip P. McGrath
Bureau of Biologies
.
Food and Drug Administration
8800 Rockville Pike
Bethesda, MD 20014
Douglas McLean Stauffer Chemical Co. Eastern Research Center Dobbs Ferry, NY 10522
James F. McVeigh American Can Company U.S. Highway 22 Union, NJ 07083
13
Carl W. Melton Battelle, Columbus Laboratories 505 King Avenue Columbus, OH 43201
Eric S. Mendelsohn
Air Pollution & Noise Control
Department of Environmental Protection of Montgomery County . . ' Room 340
6110 Executive Building Rockville, MD 20852
Oscar Menis "AnaiyticarCheffllstry Division----------------
National Bureau of Standards .. Washington, DC 20234
J. C. Meranger Environmental Health Center Health & Welfare Ottawa, Ontario K1A OL2 CANADA
Dennis Michalski International Minerals & Chem. Corp IMC Plaza . Libertyville, IL 60048
A. P. Middleton Institute of Occupational Medicine Roxburgh Flace Edinburgh, EH8 9SU SCOTLAND
W. J. Miles Industrial Mineral Ventures, Inc. 5920 McIntyre Street Golden, CO 80401
Roger .N. Miller Windsor Minerals, Inc. P. O. Box 680 Windsor, VT 05089
James R. Millette
Environmental Protection Agency
HERL
.
26 West St. Clair Street
Cincinnati, OH 45268
ASB 0004102
Robert J. Moolenaar Dow Chemical Company 1702 Building Midland, MI 48640
.
John A. Moore
'
National Insitute of Environmental
Health Sciences
.
P. 0. Box 12233Research Triangle Park, NC 27709
Sanders Moore
'
> Olin Corporation'
Y. 0. Box-248------------------------ -------
Charleston, TN 37311
Robert E. Morgan Virginia Division of Mines
and Quarries 908 Branchwater Street. Fredericksburg, VA 22401
'
Bruce Morrissey Office of the Director National'Bureau of Standards Washington, DC 20234
J. Fraser Morton Congoleum Corporation 2700 Emory Road Finksburg, MD 21048
Wolfgang Mueller Newmont Exploration Limited 44 Briar Ridge Road Danbury, CT 06810
Frederick A. Mumpton State University College Department of the Earth Sciences Brockport, NY 14420 .
Ronald A. Munson Bureau of Mines 2401 E Street, NW Washington, DC 20241
.
Jack C. Murchio School of Public Health University of California -
Berkeley Earl Warren Hall Berkeley, CA 94720
14
Charles T. Myers U. S. Steel Corporation Room 6044 600 Grant Street Pittsburgh, PA 15230
Andrew J. Nawa
Mining Enforcement & Safety Admin
4800 Forbes Avenue
.
Pittsburgh, PA 15213
Harry Naylor - Mnorp ft Mnng-pr__________ :___________
140 Sherman Street Fairfield, CT 06430
Dale Newberry Analytical Chemistry Division National Bureau of Standards Washington, DC 20234
.
Marvin W. Nichols, Jr. MESA 130 North Arlington St. Salisbury, NC 28144
Miron Nichols
MESA
.
4800 Forbes Avenue
Pittsburgh, PA 15213
'
W. Nicholson Environmental Sciences Laboratory. Mt. Sinai Hospital New York, NY 10029
Clifford W. Niemi U.S. Steel Corporation Minnesota Ore Operations P. O. Box 417 Mountain Iron, MN 55768
Gordon L. Nord, Jr. U.S. Geological Survey 959 National Center Reston, VA 22092
'
Robert E. Norwood Pfizer, Inc. 640 N. 13th Street P. O. Box 548 Easton, PA 18042
ASB 0004103
1
Andrew F. Oberta A.F. Oberta Consulting Services 1200 Quince Orchard Boulevard Gaithersburg, MD 20760
.
John O'Conner PPG Industries, Inc. 1 Gateway Center Pittsburgh, PA 10522
Trevor L. Ogden Health and Safety Executive -403-Edgware Road-------------------- --------London, NW2 6LN ENGLAND
David McNeil Olds Read, Smith, Shaw & McClay 747 Union Trust Bldg. Pittsburgh, PA 15230
Lawrence W. Ortiz Los Alamos Scientific Laboratory P. O. Box 1663 Los Alamos, NM 87544
Donald G. Oss
Hanna Mining Company
2125 Second Avenue, East
Box 218
'
Hibbing, MN 55746
T. Dixon Oulton Engelhard Minerals & Chemicals Corp. Menlo Park Edison, NJ 08817
Lalita D. Palekar Northrop Services, Inc. P. O. Box 12313 Research Triangle Park, NC
27709
Thomas Pang Industry of Environment Laboratory Services French Resource Road Islington, Rexdale, Ontario CANADA
`
15
Ed Parkison Martin Marietta Corporation 1450 S. Rolling Road Baltimore, MD 21227
.
C. J. Parmentier Cyprus Industrial Minerals Company 555 S. Flower Street 32nd Floor Los Angeles, CA 90071
PremyslV. Pekar Institute of Occupational and _ Environmental Health Suite 603, 3 Place Ville Matie Montreal, Quebec H3B 2E3 CANADA
Edward T. Peters Arthur D. Little, Inc. 15 Acorn Park Cambridge, MA 02140
Daryl E. Peterson
.
Occupational Safety & Health Admin.
Analytical Laboratory
390 Wakara Way
Salt Lake City, UT 84108
Terry Philippi IITRI 10 West 35th Street Chicago, IL 60616
John A. Pickerell
.
Inhilation Toxicology Research Inst.
Loveless Biomedical & Environmental
Research Institute
P. O. Box 5890
Albuquerque, NM 87116
Bob J. Pigg Asbestos Information Association 1835 K Street, NW, Suite 402 Washmgton, DC 20006
F. D. Pooley Johnson & Johnson 501 George Street New Brunswick, NJ
08903
ASB 0004104
Warren Porter Consumer Product Safety Comm. Fed. Bldg. 8, Rm 5844 200 C Street, SW Washington, DC 20204
Gene Proctor National Aeronautics & Space
Administration 600 Independence Avenue Code QG Washington, DC 20546
David Pytynia Nalco Chemical Company 6216 West 66th Place Chicago, IL 60638
Don Quilici Hanford Environmental Health Foundation P. O. Box 100 Richmond, WA 99352
Pamela P. Quinn U.S. Environmental Protection Agency 4th and M Streets, SW Waterside Mall Washington, DC 20460
'
Paul Radauskas City of Rockville 111 Maryland Avenue Rockville, MD 20850
."
Lewis Raymond MESA 4800 Forbes Avenue Pittsburgh, PA 15213
Curt W. Reimann Institute for Materials Research National Bureau of Standards Washington, DC 20234
Harrison B. Rhodes Union Carbide Corporation Metals Division P. O. Box 579 4625 Royal Avenue . Niagara Falls, NY 14302
16
Richard W. Richards Pennsylvania Glass Sand Corp. SR 522, North Berkeley Springs, WV 25411
Roger Riley Interpace Corporation
3502 Breakwater Court Hayward', CA 94545
Courtney Riordan Environmental Protection Agency -RD"682 ------------------------------------401 M Street, NW Washington, DC 20460
Malcolm L. Roberts Trudeau Institute,-Inc. Box 59 Saranac Lake, NY 12983
.
Fred J. Rogers Gypsum Association 1603 Orrington Avenue Evanston, IL 60201
F. Robert Rolle Johnson & Johnson 501 George Street New Brunswick, NJ
08903
Harry L. Rook
.
Analytical Chemistry Division
National Bureau of Standards
Washington, DC 20234
Richard H. Rosenberg Borg Warner Research Center Wolf & Algonquin Road Des Plaines, IL 60091
Joan R. Rosenblatt National Bureau of Standards Washington, DC 20234
Malcolm Ross U.S. Geological Survey National Center 959
Reston, VA 22092
ASB 0004105
<
Robert G. Rucker Congoleum Corporation 2700 Emory Road Finksburg, MD 21048
Clyde L. Russell Kerr-McGee Corporation P. 0. Box 25861 Oklahoma City, OK 73125
Clayton 0. Ruud Denver Research Institute University of Denver Denver, CO 80208
A. H. Samuel Reserve Mining Company Silver Bay, MN 55614
Joseph K. Samuels Republic Steel Corporation 6801 Brecksville Road Independence, OH 44131
David G. Sarvadi Sherwin-Williams Company 101 Prospect Avenue, NW Cleveland, OH 44115
James A. Saunders Bureau of Toxic Substance Info. Virginia Dept, of Health 109 Gov. Street Richmond, VA 23219
. Jim W. Scales J. M. Huber Corporation Route 4 Huber Macon, GA 31201
Mary Lee Schaefer Employers Insurance of Wausau 2000 Westwood Drive Wausau, WI 54401
John.P. Schelz Johnson & Johnson 501 George Street
New Brunswick, NJ
08903
17
Wayne L. Schiffelbein U.S. Consumer Product Safety
Commission 111 - 18th Street, NW Washington, DC 20207
Marvin Schneiderman National Cancer Institute National Institutes of Health Landow Building Rm. C403 Bethesda, MD 20014 '
'
Richard F. Scholl Fine-Particles Research Section----- IIT Research Institute 10 West 35th Street Chicago, IL 60616
George Schwartzman '
Food & Drug Administration
Code HFD 402
'
501 First Street, SE
Washington, DC 20204
J. M. Shackelford Environmental Protection Agency 401 M Street Mail Code RD680 Washington, DC 20460
' Peter Shaffer Carborundum Company P. O. Box 1054 Niagara Falls, NY 14302
.
Raymond Shapiro NIEHS P. O. Box 12233 Research Triangle Park, NC
27709
George Sharpe Medical Office National Bureau of Standards Washington, DC 20234
Lawrence E. Shirley U.S. Bureau of Mines
Liaison Office
P. O. Box 2828 Raleigh, NC 27602
ASB 0004106
George R. Simon
: Health Effects Div. (RD 683)
U.S. Environmental Protection Agency
401 M. Street, SW
.
Washington. DC 20460
. Jon Simplicio Allied Chemical Corporation
: P. 0. Box 1057R Morristown, NJ 07960
S. B. Singer State Department of Health & Environmental Control Air Bureau 2600 Bull Street Columbia, SC 29201 '
Fred J. Sisson
GSA - Accident & Fire Prevention
Branch (3POA)
7th & D Streets, SW
Room 7712
Washington, DC 20407
.
Henry J. Smahlik Dresser Industries, Inc. Oilfield Products Group 601 Jefferson Houston, TX 77002
John A- Small
Analytical Chemistry Division
National Bureau of Standards
Washington, DC 20234
William E. Smith Health Research Institute Fairleigh Dickinson University Madison, NJ 07940
Vernon R. Snyder
The General Crushed Stone Company
P. O. Box 231
Easton, PA 18042
'
James A. Soles Canada Center for Mineral
& Energy Technology (CANMET) 405 Rochester Street Ottawa, Ontario KIA 0G1 CANADA
18
Harold Stanley Pfizer, Inc. M.P.M. Division P. O. Box 548 Easton, PA 18042
Mearl F. Stanton National Cancer Institute National Institutes of Health Laboratory of Pathology
Bethesda, MD 20014
David N. Staples Industrial Hygiene Section Office of Chief of Naval Operations Occupational Safety & Health Div. (OP-45) The Pentagon Washington, DC 20350
John T. Stasny Structure Probe, Inc. 535 East Gay Street West Chester, PA 19380
' Eric B. Steel U.S. Department of the Interior Bureau of Mines College Park Metallurgy Research Center College Park; MD 20740
John Steelnack U.S. Department of Labor OSHA/Rm. N-3657 200 Constitution Avenue, NW Washington, DC 20210
Arland Stein
747 Union Trust Building
Pittsburgh, PA 15230
Robert J. Stevenson Department of Geology & Geophysics University of Minnesota Minneapolis, MN 55414
Ian M. Stewart
Walter C. McCrone Assoc., Inc.
2820 S. Michigan Avenue
Chicago, IL 60616
.
ASB 0004107
19
R. L. Stoffer Standard Oil Research Center
P. 0. Box 400 Mail Station B-3 Naperville, IL 60540
Dr. Sundaram Department of National Health Ottawa, Ontario CANADA
.
.
Joseph A. Sutton
2401 E Street, NW Washington, DC 20241
L. W. Swent Homes take Mining Company 650 California Street 9th Floor San Francisco, CA 94108
.
.
Reginald Sykes
Asbestos Research Council
GBA Industrial
P. O. Box 40
Rochdale, Lancaster OU2 7EQ
ENGLAND .
.
.
Nancy Tait
'
Royal Commission on Distribution of
Wealth & Income
'
38 Drapers Road
Enfield, EN2 8LU
ENGLAND
.
John K. Taylor
.
Analytical Chemistry Division
National Bureau of Standards
Washington, DC 20234
Linda Lee Taylor Food and Drug Administration Bureau of Foods 200 C Street, SW Washington, DC 20204
Patricia Taylor General Motors Corporation G.M. Technical Center Rm. 3230 Administrative Labs. 12 Mile & Mound Road Warren, MI 48093
.
John W. Thatcher
MESA
'
Denver Technical Support Center
P. O. Box 25367
Denver Federal Center
Denver, CO 80225
C. S. Thompson , R. T. Vanderbilt Co., Inc. 30 Winfield Street Norwalk, CT 06855 .
V Time Ttinmncnn
.
Consumer Product Safety Commission Rm. 700, 5401 Westbard Avenue Bethesda, MD 20207
George E. Thompson DHEW/PHS/FDA/BF Epidemiology Unit, HFF-108 200 C Street, SW ' Washington, DC 20204
Richard Thompson U.S. Environmental Protection Agency Research Triangle Park, NC 27711
Thomas Tom|>
MESA `
'.
4800 Forbes Avenue
Pittsburgh, PA 15213
James G. Topper Rockville Crushed Stone, Inc. P. O. Box 407 . 13900 Piney Meeting House Road Rockville, MD 20850
Priestley Toulmin, III U.S. Geological Survey 959 National Center Reston, VA 22092
.
Kenneth Trabert Environmental Protection Agency (WH550) 401 M Street Washington, DC 20460
ASB 0004108
Michael P. Trainor MESA
4800 Forbes Avenue Pittsburgh, PA 15213
Emil J. Triglia Engelhard Minerals & Chemicals Corp. Menlo Park Edison, NJ 08817
L. C. .Turnock
American' Iron Ore Association
'
"BOmcM Avenue-----------------;-------
514 Bulkley Building
Cleveland, OH 44115
'
Lansing Tuttle
.
Warren Brothers Co.
675 Massachusetts Ave.
Cambridge, MA 02139
'
T. S. Twardowski
.
Department of Labor
OSHA/Rm. N3657
200 Constitution Avenue .
Washington, DC 20210
Steve Urman
Federal Railroad Administration
2100 - 2nd Street, SW
Washington, DC 20590
John T. Vandeberg
'
DeSoto, Inc.
.
1700 S. Mount Prospect Road
Des Plaines, IL 60018
Peter G. Veeder Thorp, Reed & Armstrong 2900 Grant Building Pittsburgh, PA 15219
Dave K. Verraa Occupational Health & Safety Div. Government of Alberta 9820 - 106 Street Edmonton, Alberta, T5K 2J6 CANADA '
20
Richard Viau
Department of Consumer &
Corporate Affairs
.
Standards Laboratory Building
Runney's Pasture '
Ottawa, Ontario K1A OCO
CANADA
'
Robert L. Virta U.S-. Department of the Interior Bureau of Mines College Park Metallurgy Res. Ctr. College Park, MD 20740_________
Joseph Volk Gold Bond Building Products Div. National Gypsum. Company 1650 Military Road Buffalo, NY 14217
John B. Wade Eagle-Picher Industries, Inc.
580 Walnut Street Cincinnati, OH 45202
Jack Wagman U.S. Environmental Protection Agency Research Triangle Park, NC 27711
Philip Waitkus Plastic Engineering Company Sheboygun, WI 53081
Daman S. Walia IIT Research Institute 10 W 35th Street Chicago, IL 60616
John L. Warren Research Triangle Institute Cornwallis Road Research Triangle Park, NC
27709
William V. Warren Occupational Safety & Health Admin. Room N3660 200 Constitution Avenue, NW Washington, DC 20210
ASB 0004109
I
Janies R. Weber The Bendix Corporation Executive Offices, Bendix Center Southfield, MI 48076
Richard J, Wedlund Minnesota Pollution Control Agency Division of Air Quality 1935 W. Co. Road, B-2 Roseville, MN 55113
John M. Wehrung EMV Associates. Inc.__________________ 15825 Shady Grove Road Rockville, MD 20850
S. Weiss The Flintkote Company 365 West Passaic Street Rochelle Park, NJ 07062
John F.. Welch A/C Pipe Producers Association 1600 Wilson Boulevard Suite 1308 Arlington, VA 22209
John Wenniger Bureau of Biologies Food and Drug Administration 8800 Rockville Pike Bethesda, MD 20014
Lewis F.. Wheatley Virginia Division of Mines Drawer V Big Stone Gap, VA 24219
.
Judith A. Whelan
.
Air Pollution & Noise Control
Department of Environmental Protection
of Montgomery County
Room 340 .
6110 Executive Boulevard
Rockville, MD 20852
Benjamin D. White Assistant Secretary for Health Department of Health and Mental Hygiene 201 West Preston Street Baltimore. MD 21201
21
Lowell D. White ASARCO Incorporated 3422 South 700 West Salt Lake City, UT 84119
James Whitney
Environmental Protection Agency
401 M Street, SW
'
Mail Code RD680
Washington, DC 20460 .
Diane Whittier_________________ ' University of Pittsburgh G.S.P.H. 130 DeSoto Street Pittsburgh, PA 15261
John R. Whyte The Anaconda Company P. O. Box 27007 Tucson, AZ 85726
Peter C. Wight
Environmental Quality Control Div.
B-252MT
'
Ind. Relations Department
Bethlehem Steel Corporation
Bethlehem, PA 18016
'
A. A. Winer Centre for Tech, of the Environment University, of Sherbrooke Sherbrooke, P.Q. J1K 2R1 CANADA
Allen Winer Naval Ship Engineering Center Crystal City NC-2 (6101E) Washington, DC .20360
. .
Steven Win2er
'
Martin Marietta Corporation
1450 S. Rolling Road
Baltimore, MD 21227
George J. Wolfe JEOL (USA), Inc. 101 Colonial Drive Irwin, PA 15642
ASB 0004110
Vladimir E. Wolkodoff Johns-Manville Corporation Research and Development Center Denver; CO 80217
Gilbert H. Wood Environmental Protection Agency OAQPS, ESED, ISB, SSS (MD-13) Research Triangle Park, NC 27711
Sandra Worblewski
'
--Kpmper/NATLSCO__________ _______
Long Grove, IL 60049
George W. Wright 460 S. Marion Parkway Denver,- CO 80209
Gale D. Wyer
Consumer Product Safety Comm.
Directorate for Eng. and Science
200 C Street, SW
Room 5844
Washington, DC 20204
Ann G. Wylie Department of Geology University of Maryland H.J. Patterson Hall College Park, MD 20740
Julie C. Yang W. R. Grace & Company 62 Whittemore Avenue Cambridge, MA 02140
Brian Yawney
Ontario Research Foundation
Sheraton Park '
Mississauga, Ontario L5K 1B3
CANADA
.
J. E. Zatek Mine Safety Appliances 600 Penn Center Blvd. Pittsburgh, PA 15235
.
Carolyn Zelek Ford Motor Company Rotundo Blvd., Building 5 Dearborn, MI 48121
22
F. H. Zimmerman National Gypsum Company 4100 First International Building Dalles, TX 75270 Tibor Zoltai Department of Geology and
Geophysics University of Minnesota Minneapolis, MN 55455 Richard M. Zomnir 2900 Grant Building Pittsburgh, PA 15219 Jack Zussman Department of Geology University of Manchester Manchester M13 9PL ENGLAND
ASB 0004111
Workshop on Asbestos:
Definitions and Measurement Methods
July 18-20,1977
Sponsored by:
National Bureau of Standards U.S. Department of Commerce
'
Occupational Safety and Health Administration
U.S. Department of Labor
'
WORKSHOP ON ASBESTOS: DEFINITIONS AND MEASUREMENT METHODS
National Bureau of Standards . Gaithersburg, Md.
' July 18-20, 1977
, Sponsored by NBS and OSHA
FINAL PROGRAM
Abstract --Page--
Sunday, July 17, 1977
7:009:00 p.m.
Registration and Informal Reception -Sheraton-Silver Spring Hotel
Monday, July 18, 1977
.
.
8:00 a.m.
Buses leave from Hotel (Breakfast available in
NBS cafeteria)
.
8:30 a.m.
Registration and Coffee .
9:15 a.m.
Purpose and Procedures of Workshop Philip D. LaFleur, Chief Analytical Chemistry Division National Bureau of Standards
I. Mineralogies! Aspects: Chairman - Brian Mason, Smithsonian Institution . Washington,.D.C. .
9:30 a.m. . History of Asbestos-Related Mineraloqical Terminology
Tibor Zoltai University of Minnesota Minneapolis, Minnesota
10:05 a.m. Fibrous and Asbestiform Minerals
' J. R. Kramer . McMaster University
Ontario, Canada
10:40 a.m. Coffee
1 ASB 0004045
;.
Abstract . Page
11:00 a.m.
Minerals Commonly Occurrinq in the Earth's Crust that Might be Defined as Asbestos by Various P.equlatory Agencies
^
Malcolm Ross
.
U.S. Geological Survey
Reston, Virginia
. .
11:35 a.m.
X-ray Crystallographic Structure of Minerals Related to Asbestos
n
Jack Zussman University of Manchester Manchester, England
..
12:10 p.m. General Discussion.of Mineraloqical Definitions
1:00 p.m. Lunch
.
II. Relationship between Chemical and Physical Properties and
Health Effects: Chairman - Marvin Schneiderman
NCI, NIH
Bethesda,.Maryland
.
2:00 p.m. Epidemioloqical Evidence on Asbestos
12
I. Selikoff, W. Nicholson, and A. Langer Mt. Sinai Hospital New York, New.York
.
2:35 p.m.
Measurement of Asbestos Retention in Humans Related to Health Effects
13 & 14 .
J. Bignon
and P. Sebastien and
Uni versite Paris.
A. Gaudichet
Centre Hospitalier
Direction. Departementale
Intercommunal
des Affaires Sanitaires
France
et Sociales
. . France
3:10 p.m.
Review of Epidemioloqical Evidence of the ' Effect of Types of Asbestos and Fiber Dimensions on the Production of Diseases in Man
15
Clark Cooper Equitable Environmental Health, Inc. Berkeley, California
3:45 p.m. Coffee
2.
ASB 0004046
Abstract Page
4:00 p.m.
Pathophysiology in Relation to the Chemical .
and Physical Properties of Fibers
. 16
Paul Kotin Johns-Manville Corporation
Denver, Colorado'' .
4:35 p.m. The Carcinogenicity of Fibrous Minerals
17
Hear! F. Stanton and Maxwell Layard .NCI., NIH-________ Bethesda, Maryland
5:10 p.m. General Discussion of Health Effects
6:00 p.m. Buses leave NBS for Hotel
. 7:00 p.m. Workshop Buffet
'
Tuesday, July 19, 1977
8:00 a.m. ' Buses leave from Hotel (Breakfast available in NBS cafeteria) .
.
8:30 a.m. Buses leave from Hotel
.
' 9:00 a.m. Coffee
Relationship Between Chemical and Physical Properties and Health
Effects (continued).
.
9:15 a.m. Effects of Invested Asbestos
' 18
9:50 a.m.
R.D, Pontefract Dept, of Health and Welfare Ottawa, Canada
NIEHS-Oral Asbestos Studies
42
J.A. Moore
and Dave Jones
NIEHS
IITRI
Research Triangle
Chicago, Illinois
Park, North Carolina
3 ASB 0004047
Abstract Page
10:25 a.m.
EPA Study of Biological Effects of Asbestos like Mineral Fibers
19 & 20
Lalita Palekar
. and
Northrop Services Inc.
Research Triangle Park
North Carolina
David L. Coffin EPA Health Effects
Research Lab. Research Triangle Park North Carolina
10:40 a.m.
11:00 a.m.
?ra 1 discussion, of Health Effects .. 1 -fJiow :
III. Analytical Methods: Chairman - K. Heinrich,
Analytical Chemistry Division
National Bureau of Standards
12:00 p.m. Identification of Selected Silicate Minerals and Their Asbestiform Varieties
21
12:30
William Campbell
Bureau of Mines
'
. College Park, Maryland
Electron Microscopy Methods
22 4 23
Clayton A. Ruud Denver Research Institute University of Denver Denver, Colorado
.
1:00 p.m. 2:00 p.m.
Lunch
'
TEM Methods
'
24
Ian Stewart Walter.C. McCrone Associates, Inc. Chicago, Illinois
2:30 p.m.
Mineral Fiber Identification Using the Analytical Transmission Electron Microscope
.25 & 26
D.R. Beaman and H.J. Walker Dow Chemical Co. Midland, Michigan
4 ASB 0004048
3:00 p.m. 3:30 p.m. 3:50 p.m. 4:20 p.m.
4:50 p.m.
5:26 p.m. 5:50 p.m. 6:20 p.m.
Identification of Asbestos by Polarized Light Microscopy
John Delly Walter C. McCrone Associates, Inc. Chicago, Illinois
Coffee
Statistics and Interpretation of Analytical Results
-James-Leineweber----------------- :--------------Johns-Hanville Corporation Denver, Colorado
Selection and Characterization of Fibrous and Non-Fibrous Amphiboles for Analytical Methods Development
Janet C.. Haartz and
B.A. Lange
.
NI0SH
Cincinnati, Ohio
Ron G. Draftz
R. Scholl
IITRI
..
Chicago, Illinois
Asbestiform Minerals in Industrial Talc:
Commercial Definitions Versus Industrial
Hygiene Reality
' ''
John M. Dement NI0SH-MRB Cincinnati, Ohio
.
The Detection and Identification of Asbestos and Asbestiform Minerals In Talc
Harold D. Stanley and Robert E. Norwood Pfizer, Inc. Easton, Pennsylvania
Kisidentification of Asbestos in Talc
Jerome B. Krause and William H. Ashton
Colorado School of
Johnson & Johnson
Mines
New Jersey
Research Institute
Buses leave for Hotel
Abstract Page 27
28
29
30 31 32
5 ASB 0004049
Abstract Page
Wednesday, July 20, 1977
.
8:00 a.m.
Buses leave from Hotel (Breakfast available in NBS cafeteria)
8:30 a.m. Buses leave from Hotel
9:00 a.m. Coffee
Analytical Methods (continued)
9:30 a.m.' - Ambient Air Monitoring for Chrysotile in the II,S. 33
10:00 a.m.
Richard Thompson EPA Research Triangle Park, N.C.
The Environmental Protection Agency Interim Method for Determining Asbestos in Water
34
Charles H. Anderson EPA ' Athens, Georgia
10:30 a.m. 10:50 a.m.
Coffee ' ASTM E-4 Report
35
K.S. Chopra
.
Union Carbide
Niagara.Falls., New York
11:05 a.m. The Standard for Occupational Exposure to
Asbestos being Considered by ASTM Committee
. EJ4
'
. M. Cassette and A.A. Winer University of Sherbrooke Quebec, Canada
.
36
11:20 a.m. ,
Important Considerations in the Identification and Counting of Mineral Fragments
R.J. Lee, J.F. Lolly, and Robert M. Fisher
U.S. Steel Research Lab.
.
Monroeville, PA
37
11:35 a.m.
General Discussion, of Analytical Methods and Problems
6 ASB 0004050
Abstract Page
12:30 p.m. lunch
IV. Regulatory Aspects: Chairman - John Martonik, . OSHA Washington, D.C.
(Dl:30 D.m. MESA Regulations and Methods
Aurel Goodwin . MESA. ______________ Arlinntnn.Virginia _________ :______
(3)2:00 p.m. OSHA Regulations and Methods
Willard C. Dixon OSHA Salt Lake City, Utah
'
(2:30 p.m. FDA Projects and Methods
Irvin Asher, John Wenniger and Philip McGrath FDA Washington, D.C.
(/) 3:00 p.m. CPSC Regulations and Methods
.
38 39 40 43
Robert Hehir CPSC Washington, D.C.
3:30 p.m. . Coffee
3:50 p.m.
Impact of Asbestos Regulations on the Mining Industry
C.S. Thompson
Vanderbilt Co.
.
East Norwalk, Connecticut
.
41
.4:20 p.m. . 5:30 p.m.
General Discussion of Regulations Buses leave NBS for Airports and Hotel
' 7 ASB 0004051
HISTORY OF ASBESTOS-RELATED MINERALOGICAL TERMINOLOGY
Tibor Zoltai > University of Minnesota
Minneapolis, Minnesota
1
Asbestos pollution is a major health problem and its solution requires an extensive cooperation between several distinct scientific disciplines. A more effective interdisciplinary communication and more successful cooperation could be assured if we eliminate the current, implicative misinterpretations of the asbestos-related.mineralogical terminology. The erroneous use of terms like asbestos, asbestifom, fiber and fibrous is not only contrary to mineralogical traditions and definitions but also affects the effectiveness of our scientific lan guage to describe the structural characteristics of the various mineral particles considered and to understand their potentially harmful physicalchemical properties.
The character of mineralogical concepts and the definitions of the asbestos-related mineralogical terms will be explained through their development in the history of scientific mineralogy. An attempt . will be made to demonstrate that the relevant mineralogical terms are unambiguous, inspite of the seemingly confusing and extensive list of "asbestos-mineral" names introduced throughout the various evo lutionary phases of mineralogy. The essential concepts and criteria associated with these terms will be summarized.
8 ASB 0004052
FIBROUS AND ASBESTIFORM MINERALS . J.R.. Kramer
McMaster University Ontario, Canada
, The terms asbestos, asbestiform, and fibrous are used in over lapping definitions on many occasions. Often it is impossible to differentiate between the terms at the electron microscopic level. Lack of differentiation'requires that a'iarye number of minerals common in-- the earth's crust be included in a group definition. In the attempt to further define this group of minerals, electron diffraction analysis is carried out on a "finger print" basis and elemental analysis is carried out. These two techniques in the general environmental case are often not sufficient enough to characterize the mineral species. And it is not clear what relationship can be demonstrated between the analyses and environmental effects once a characterization is made. Other factors relating to. surface details are suggested as being important in the study of fibrous minerals in context to environmental concern. Surface composition, surface charge and crystallographic modifications relative to mineral orientation are proposed as tools to define relationships of mineralogy to environmental effects.
9 ASB 0004053
MINERALS COMMONLY OCCURRING IN THE EARTH'S CRUST THAT MIGHT BE DEFINED AS ASBESTOS BY VARIOUS REGULATORY AGENCIES
Malcolm Ross U.S. Geological Survey
Reston, Virginia
. '
. Chrysotile, amosite, crocidolite, anthophyllite, tremolite, and
actinolite particles having length > 5|jni, diameter < 5 urn, and length-
..tp-width > 3, are presently defined by the U.S. Occupational Safety and
Health Administration as "asbestos11 (U.S. Federal Register, October 9,
1975, p. 47652,47660).
.
These minerals form complex chemical series and a variety of crystal
structures and commonly have such ambiguous names that the common non-
fibrous amphiboles hornblende and cunmingtonite may be included within
the definition. The drafting and/or application of asbestos regulations
by those unappreciative of these complexities of rock-forming silicates
may cause many igneous and metaroorphic rocks to be considered "asbestos
bearing."
10 ASB 0004054
X-RAY CHRYSTAILOGRAPHIC STRUCTURE OF MINERALS RELATED TO ASBESTOS Jack Zussman
University of Manchester England
The crystal structures of the two main asbestos-forming minerals, the amphiboles and serpentines, are surprisingly very different. The amphiboles are "chain silicates" in which SiO^ tetrahedra are linked to form bands four tetrahedra wide and of very great length. These bands run parallel to the asbestos fiber axis and are linked laterally by cations, mainly Ca and Mg in tremolite; Na, Mg and Fe in crocidolite; Mg and Fe in amosite and anthophyllite. The tempting correlation of the chain unit of crystal structure with asbestiform nature is, however, too facile. Many amphiboles are not asbestiform, and as the serpentine minerals show, some asbestiform minerals do not have a chain structure.
The serpentine minerals are "layered silicates" in which SiO^ . tetrahedra are linked to form thin sheets of great lateral extent. The tetrahedra all point in the same direction and their apical oxygens are part of an (O.OH)-Mg-(OH) sheet which is itself formed by Mg-(O.OH) octahedra. Thus the fundamental serpentine layer is polar and has atetrahedral and octahedral component. The mismatch in dimensions of these two components generally leads to curvature of the layers and in chrysotile asbestos the layers form either scrolls or concentric cy linders with very high length/breadth ratio and with length parallel to the fiber axis. Other forms of serpentine, however, with chemistry very similar to that of chrysotile do not exhibit asbestiform morphology.
I
ASB 0004055 11
EPIDEMIOLOGICAL EVIDENCE ON ASBESTOS
I. Selikoff, W. Nicholson and A. Langer Mt. Sinai Hospital New York, New York
Data on the human health effects from occupational and environ
mental exposure to asbestos will be presented with special emphasis on
the role.of.different asbestos minerals. Further, human tissue burdens
of fibers and their association with asbestos related diseases will be
discussed. Experimental animal data from various species and utilizing
different routes of administration will also be presented, again with
emphasis on differing fiber types.
'.
.
12 ASB 0004056
MEASUREMENT OF ASBESTOS RETENTION.IN HUMANS RELATED TO HEALTH EFFECTS
J. Bignon Universite Paris-Val de Marne Institut de Recherche sur l'Environnement Centre Hospitalier Interconmunal
94010 Creteil, France
and
, P. Sebastien and A. Gaudichet Direction Departementale des Affaires Sanitaires et Sociales
75013 Paris, France
The retention pattern of particulate pollutants in humans is related to four mechanisms: penetration into the body, deposition on the surface of epithelial cells, intra-tissular translocation andclearance. Knowledge of such retention patterns for people exposed to asbestos dusts could provide useful information concerning the role of these mechanisms and the pathogenicity of fibers.
So, a biological monitoring program for asbestos has been carried out. This program, still in progress, involves measurement of asbestos burden in several kinds of biological samples ("in vivo" and "post mortem" samples) from people diversely exposed to asbestos dusts and affected by various asbestos-related diseases.
So far, most of the samples studied were from the respiratory tract: sputum, broncho-alveolar washing fluid, lung parenchyma, lymph nodes, parietal pleura and pleural fluid. Asbestos burden in these samples has been assessed by light and electron microscopy. In each sample, asbestos fibers, identified as chrysotile or amphiboles, have been counted and measured (length and diameter).
It has been assumed that asbestos fibers found in broncho-alveolar washing fluid were related to the deposited fraction of the inhaled aerosol whereas those found in sputum seemed more related to clearance of fibers from the lung.
ASB 0004057 13
The search for asbestos bodies in sputum has been found to be
a good means to detect past occupational exposure, whereas TEM size
fibers were present in sputum of some cases environmentally exposed.
The measurement program in tissue samples has been principally
designed to compare asbestos burden in lung parenchyma, lymph nodes
and parietal pleura. Concentration, type and size distribution of
fibers encountered in such samples could be accurately assessed.
. Detailed analytical data will be given in the final document. Re
garding asbestos burden in respiratory tissues., the results can be
summarized as follows:
.
-------- - Despite the fact-that-most of the-consumed asbestos-is-of--^--
chrysotile type, the burden of amphibole in lung parenchyma was .
much more important in most cases.
- Most of fibers retained in Tung tissues were less than
0.5 pm in diameter and shorter than 5 pm. .
.
- Differences in size distribution according to the type
of tissue samples have been observed.
- There was no evident correlation between fiber concentration
in lung parenchyma and fiber concentration in parietal pleura.
- While was found a mixture of amphibole and chrysotile fibers
in lung parenchyma, it seemed that amphibole-type fibers moved
preferentially towards mediastinal lymph nodes and chrysotile type
fibers towards parietal pleura.
The signification of these data, concerning the topographic
variation in the fiber type and size, will be.discussed in relationship
with adverse health effects, particularly cancerogenesis.
.
14 ASB 0004058
REVIEW OF EPIDEMIOLOGICAL EVIDENCE OF THE EFFECT OF TYPES OF ASBESTOS AND FIBER DIMENSIONS ON THE PRODUCTION OF DISEASES IN MAN
W. Clark Cooper ' Equitable Environmental Health, Inc.
Berkeley, California .
There is epidemiologic evidence to indicate that all types of .
commercial asbestos, i.e., chrysotile, crocidolite, amosite, tremolite,
-and-anthophyl 11te, when inhaled, can cause pulmonary fibrosis and '
increase the risk of lung cancer.. All but anthophyllite have been
associated with malignant mesothelial tumors. There is also strong
evidence to support a decreasing gradient of pathogenicity as one
proceeds from crocidolite to amosite to chrysotile, but this evidence
does not clearly rule out the interrelated influence of fiber dimension,
shape, and co-factors.
Clear-cut epidemiologic evidence related to differing fiber dimen
sions is scanty. Such information is critically needed. The most
pressing need is to determine the pathogenicity of ultrafine fibers in
the electron-microscope size range, particularly those shorter than 3
micrometers, whether inhaled or ingested. Methods for epidemiologic
study will be suggested.
.
ASB 0004059 15
PATHOPHYSIOLOGY IN RELATION TO THE CHEMICAL AND PHYSICAL PROPERTIES OF FIBERS
Paul Kotin, M.O.
Johns-Manville Corporation
Denver, Colorado
The array of asbestos-related diseases are reviewed in relation to their pathogenesis, pathology, and natural history. Biological avail ability following host entry is especially critical for the biological effect of asbestos. Experimental data consistently demonstrate that hazard is related to the geometry of fibers, with fiber diameter and fiber length being primary determinants. Controversy exists as to the extent of influence of the two major.classes of asbestos fiber: chrysotile and amphibole. Considerations affecting the anatomic and metabolic fate of asbestos fibers are also discussed.
16 ASB 0004060
THE CARCINOGENICITY OF FIBROUS MINERALS
MearV F. Stanton and Maxwell Layard National Cancer Institute
National Institutes of Health Bethesda, Maryland
.
The carcinogenicities of 37 different dimensional distributions of seven different durable fibrous materials have been correlated with -fiiififc-dinipn.slnn. Optimum carcinogenicity is attained with fibers that measure <0.25 pm x > 8 pm. Morphologic studies suggest that fibers in this dimensional range lie free in interstitial tissues, while fibers of smaller dimension are readily phagocytosed and fibers of larger dimension are sequestered by adherent phagocytes and fused phagocytic giant cells. Fibers that are fine and long may be more carcinogenic than others, simply because they are uncompromised by phagocytic activity.
17 ASB 0004061
EFFECTS OF INJESTED ASBESTOS
R. D. Pontefract Department of Health and Welfare
Ottawa, Canada
.
There is relatively little information in the literature concerning the effects of injested asbestos. A summary of the work accomplished will be presented with comments on what effects the objectives of the various workers had on their findings. Comments will also be made on . some approaches that might be tried to help yield results that can perhaps clarify some of the many problems that yet exist with this . difficult subject.
18 ASB 0004062
EPA STUDY OF BIOLOGICAL EFFECTS OF ASBESTOS-LIKE MINERAL FIBERS
Laiita Palekar Northrop Services,Inc. . Research Triangle Park, North Carolina
. and ...
David L. Coffin . EPA Health Effects Research Laboratory ______________ Research Triangle Park, Nnrth-Cacnllna----------------------------
A large amount of the earth's crust is composed of rock containing mineral fibers which resemble asbestos to varying degrees in their physical and chemical properties. Consequently, such materials are likely to be encountered inadvertently during the extraction of various ores, the extraction of rock for commercial purposes, and even from rock moving operations encountered during highway construction, and the like.
Because the air and water may become contaminated by these fibers, it is of interest from the standpoint of environmental protection to know how the biological effect of such materials compares with that of asbestos. Consequently, a study has been instituted by EPA to investigate the relative biological potency of such materials. The project is. being approached on both in vivo and in vitro levels. The material being studied at the outset are fibrous amphiboles from a taconite mine, but it is the intent to broaden these studies as soon as possible. The animal studies are being conducted in pathogen free rats by intra tracheal instillation (with and without interacting organic carcinogens) and by intra-plural injections. The end points are tumor induction and other chronic diseases. Attention is also being given to early pathogenic sequences.
The in vitro studies consist of red cell lyses of pulmonary macro phage systems and various biological and chemical studies connected with the influence of these agents on cell membranes and interaction with
ASB 0004063 .19
mutagens and carcinogens. The prime objective is to compare the biological effect of the minerals studied to the corresponding asbestos species to determine the comparative influence of such co-variables as fiber length, trace element content, surface area, zeta potential, and . the like, on the biological outcome. Thus the study will relate biological activity to mineralogical characterization so that generali zation can be made on the basis of such factors.
20 ASB 0004064
IDENTIFICATION OF SELECTED SILICATE MINERALS AND THEIR ASBESTIFORM VARIETIES William Campbell
. Bureau of Mines ' ' . College Park, Maryland
The asbestiform particulate problem, with its environmental and health Implications, has been compounded by the lack of precision with which the term "asbestos" has.been used. In many instances, nonasbestiform mineral particles have been identified as microscopic fibers of asbestos-related minerals. This lack of precision in identifying these particulates not only works to the disadvantage of the minerals industry, but is also a handicap to rational science-based decision making by regulatory agencies.
This report summarizes methods and terminology suggested by the Bureau of Mines for the identification and characterization of asbesti form minerals and also sharpens the distinction between common serpentine, and amphibole minerals and their relatively rare asbestiform varieties. The continuing effort of the Bureau's Particulate Mineralogy Unit is to characterize mineral particulates by morphological, compositional, and structural data using various instrumental analytical techniques and by developing new methods for identification and characterization.
ASB 0004065 21
ELECTRON MICROSCOPY METHODS
Clayton 0. Ruud
.
Denver Research Institute
University of Denver
Denver, Colorado .
According to a recent National Academy of Sciences Report, . animal deposition model studies- have shown the fiber size has some effect upon the toxicity of mineral fiber fragments, the long thin ones appearing to be most active. However, the extrapolation of . these results to the relative carcinogenicity in humans must be tempered by the consideration that an experimental animal model has not been established: Moreover, the- size.range-to'be-conrrdeml------ long thin fiber fragments is not clear, that is to say the shortest length may be on the order of one micron or ten microns. For this and other reasons most scientists in the field consider that it is necessary to obtain length and width data, as well as concentration and species of mineral fibers fragments in the environment.
Due to these considerations, microscopy methods are necessary for mineral fiber fragment analysis, and because of the small size of the particles, electron microscopy is necessary. This paper will describe the methods and techniques of electron microscopy which
i
are most generally applied. These are the transmission electron microscope-selected area electron diffraction (TEM-SAED) and the scanning electron microscope-energy dispersive X-ray (SEM-EDX) methods. The advantages and disadvantages of these two techniques will be discussed including their relative proficiency in detecting sub-micron fiber fragments. Their ability to identify the species of mineral, sample preparation techniques, statistical considerations and the time required for analysis will also be reviewed.
The application of various techniques and methods based upon the TEM-SAED or SEM-EDX systems will be discussed including situations where one or the other is the optimum method. The advantages of combined systems, scanning transmission electron microscopy with SAED and EDX, will be discussed. Also new approaches of combination and
22 ASB 0004066
computer controlled methods using both TEM and SEH will be described. In conclusion, the state of the art will be discussed in terms of
general considerations necessary for the selection of an electron microscopy technique for mineral fiber fragment analysis.
23 ASB 0004067
. TEM METHODS ' Ian Stewart
Walter C. McCrone Associates, Inc. Chicago, Illinois . .
The necessary requirements for the TEM identification and quanti fication of asbestos will be reviewed. Techniques currently in use will be described, and their relative merits discussed.
24 ASB 0004068
MINERAL FIBER IDENTIFICATION USING THE ANALYTICAL TRANSMISSION ELECTRON MICROSCOPE
D.R. Beaman and H.J. Walker The Dow Chemical Company
Midland, Michigan
' ' '
In a transmission electron microscope equipped with an energy dispersive spectrometer (EDS), it is possible to obtain the high resol ution morphology, crystal structure, and elemental composition of sub micron mineral fibers, particulate, and thin films. The reliability of__ fiber analysis is enhanced when fiber identification is based on the nearly simultaneous determination of these three characteristics because each of the individual modes can yield ambiguous information. Energy dispersive spectrometer data can be converted to elemental fiber com positions using known standard spectra or relative sensitivity factr, s which can be calculated or experimentally determined for a given instru mental configuration. Calculated and experimental sensitivity factors are found to agree within 15% for photon energies above 1.5 keV. The relative error in composition calculated from EDS spectra will generally be better than 10%, but only if the TEM column and components have been properly modified to reduce the effects of extraneous x-ray generation and electron scattering. The sources of these problems are described and a procedure for minimizing the effects outlined. Proper aperturing, collilnation, selection of materials of construction, and operating conditions can provide useful mineral spectra. It is often necessary to correct for x-ray absorption even in fine mineral fibers, and this may be done using reference standards or sensitivity factors corrected for absorption. The effect of absorption increases rapidly as the difference between the mass-absorption coefficients of the elemental constituents by the mineral increases. Carbon contamination which degrades both EDS spectra and electron diffraction patterns can be minimized by using low current density and short analysis times.
25 ASB 0004069
Less than 15% of the chrysotile fibrils in a standard provided positive selected area electron diffraction patterns (SAED), but up to 50? did have the correct layer line spacing. The fraction of fibers providing good diffraction increases rapidly as the number of fibrils in a fiber increases. The reported differences in SAED quality arise primarily because investigators use differing criterion for defining a positive SAED pattern and the fiber size distribution examined varies. Sample preparation methods were reviewed and it was found that condensation washing is only reliable if loss corrections are applied, particularly in the case of amphibole fibers. In spite of the many problems, inter-laboratory and multiple sample reproducibility in the measurement of fiber concentrations can be 30% when using good procedure.
26 . ASB 0004070
IDENTIFICATION OF ASBESTOS BY POLARIZED LIGHT MICROSCOPY John Delly
Walter C. McCrone Associates, Inc. Chicago, Illinois
A number of analytical tools can be used to characterize and . identify asbestos:--infrared absorption, x=ray -drffraction, -DTftr-SEft;-- TEM, and the light microscope. Each has advantages and limitations. The polarized light microscope (PLM) has many advantages, and the only disadvantages are: 1) the asbestos particles must be at least a micrometer in largest dimension, and 2) considerable training in optical crystallography is needed.
PLM, on the other hand is very sensitive (ppm range), extremely rapid (1-5 minutes to Identify all components of most samples) and, of all the methods, only PLM will identify the individual amphiboies.
27 ASB 0004071
STATISTICS AND INTERPRETATION OF ANALYTICAL RESULTS
Janies Leineweber Johns Manville Corporation
Denver, Colorado
The analysis of asbestos fibers by electron microscope methods
involves many operations each of which can have an effect on the final
results. The potential errors in each of the steps as well as the
influence of normal statistical fluctuations is discussed. Recomnenda-
tions are made on how the controllable errors can be minimized and
for a uniform reporting format.
'
28 ASB 0004072
t
SELECTION AND CHARACTERIZATION OF FIBROUS AND NON-FIBROUS AMPHIBOLES FOR ANALYTICAL METHODS DEVELOPMENT J.C. Haartz and B.A. Lange
National Institute for Occupational Safety and Health Cincinnati, Ohio " .
' and R.G. Draftz and R. Scholl
_____________________ IIT-Research Institute______________________ _ ' Chicago, Illinois
More than 50 mineral specimens of fibrous and non-fibrous amphibole species, including specimens of actinolite, tremolite, grunerite, and cummingtonite were collected and characterized to determine their suit ability for use as reference materials in the development of analytical methods. These methods will be used for the detection and measurement of hazardous materials which are found as workplace contaminants. While the existing sample of each mineral is quite limited, the source of each of the specimens and the appropriate methods of sample preparation have been carefully documented should additional quantities be desired.
These specimens have been characterized using light microscopy, Xray diffraction (XRD) and thermal analysis (DTA). Some of these specimens have been purified by appropriate physical or chemical techniques and then ground to provide a material with a mass median particle size of less than 10 urn diameter. The effects of characterization studies of the minerals, including a comparison of the properties determined for each of the specimens, will be presented. Differences in physical properties, as determined by DTA and XRD, of the fibrous and non-fibrous specimens are indicated by the data obtained.
ASB 0004073 29
ASBESTIFORM MINERALS IN INDUSTRIAL TALCS: COMMERCIAL DEFINITIONS VERSUS INDUSTRIAL HYGIENE REALITY
John M. Dement
National Institute for Occupational Safety and Health
.
Cincinnati, Ohio
.
.
As part of its industry-wide study, of the talc industry, the National Institute for Occupational Safety and Health (NIOSH) has conducted detailed industrial hygiene studies of mine and mill operations processing talcs contaminated with asbestiform minerals. The principal analytical method used for studies of ashestifnrm min--- erals in talc bulk samples and airborne dust samples is analytical transmission electron microscopy utilizing selected area electron diffraction.and microchemical analysis for fiber identification. This presentation includes a discussion of the methods of analysis being used by NIOSH and comparisons of results of analysis with other analytical techniques. Also included are results of NIOSH industrial hygiene studies in asbestiform talc operations and Comparisons of airborne fiber characteristics (fiber length, diameter, aspect ratios, etc.) in these operations with other industrial processes using asbestos fibers.
30 ASB 0004074
THE DETECTION AND IDENTIFICATION OF ASBESTOS AND ASBESTIFORM MINERALS IN TALC
' Harold D. Stanley and Robert E. Norwood Pfizer Inc.
Easton, Pennsylvania
. Concern with the health hazards associated with the presence of chrysotile asbestos and/or the asbestiform minerals in talc has prompted widespread investigation of methods of analysis which would, "be consistent with good analytical "practices-;--Of-aVl the currentlyavailable techniques examined and evaluated, the two most reliable have been found by.us to be Step Scanning X-ray Diffraction and Transmission Electron Microscopy, (TEM), with Selected Area Electron Diffraction, (SAED). The Step Scanning X-ray Diffraction technique allows quantitative detection and identification of tremolite and the asbestiform) minerals down to O.U by weight. In the absence of chlorite it can detect and quantitatively determine chrysotile asbestos at the 0.53S level. Chlorite, however, is often associated with talc ore bodies. When present, chlorite will mask most of the main X-ray diffraction peaks of chrysotile. Additionally, the X-ray diffraction technique cannot distinguish between fibrous and non-fibrous forms of the asbestiform minerals. TEM is ideally suited to determinations of this type because of its high resolution and magnification capabilities, the.morphological nature of the problem and the mineralogical identification capability through SAED.
31 ASB 0004075
MISIDENTIFICATION OF ASBESTOS IN TALC Jerome B. Krause
Colorado School of Mines Research Institute and .
William H. Ashton Johnson & Johnson
New Jersey Both optical microscopy and x-ray diffraction (XRD) are widely used to detect minerals associated with talc. Optical microscopy can determine the morphology of a particle, but cannot always fully identify the specific mineral. Although XRD is an excellent screening technique for the detection of minerals associated with talc, the method can misidentify minerals due to interferences, interpretive errors, and.the inability to determine morphology. Methods for reduction or elimination of these problems include special techniques of sample preparation and x-ray diffraction, combined with microscopic examination (both optical and electron).
32
ASB 0004076
AMBIENT AIR MONITORING FOR CHRYSOTILE IN THE U. S.
Richard Thompson . . Environmental Protection Agency
Research Triangle Park, N.C.
The only continuing national air monitoring has been conducted
by the National Air Surveillance Network. The objective is long-term
trend assessment of air quality. The information has proven of value
in setting-standsrdr, irrrorrciteration of health effects, In estimation
of economic effects and in showing patterns of pollutant distribution
in both urban and non-urban areas.
In order to provide samples which could be analyzed for constituents
not determinable in particulate matter samples collected with glass fiber
filters, a membrane sampling network was instituted. The only analyses
of the samples conducted thus far has been for airborne asbestos using
in part a method developed under contract which provides for the
determination of mass of chrysotile in the particulate samples.
A viewpoint will be presented on the method needed for air monitoring
and an assessment of the mass method as the most suitable for this purpose.
Data obtained will be examined which will include information on inter-
and intra-laboratory replication.
33 ASB 0004077
THE ENVIRONMENTAL PROTECTION AGENCY INTERIM METHOD FOR DETERMINING ASBESTOS IN WATER
Charles H. Anderson Environmental Protection Agency
Athens, Georgia
.
The discovery of asbestos and asbestiform minerals in water supplies and drinking water has resulted in the requirement for a reliable analytical method. In order to meet this requirement, an interim method, based upon the state-of-the-art in asbestos analytical methodology, has been issued. In this paper, the . broad elements of the method are set forth and discussed.
34 ASB 0004078
ASTK E-4 REPORT
K.S. Chopra
.
Union Carbide Corporation
'
Niagara Falls, New York
ASTM Committee E-4 has been experimentally evaluating high . magnification microscopic techniques being used for the analysis
of fiber contamination in water. This paper will describe the
35 ASB 0004079
THE STANDARD FOR OCCUPATIONAL EXPOSURE TO SBESTOS BEING CONSIDERED BY ASTM COMMITTEE E-34 M. Cassette and A.A. Winer University of Sherbrooke Quebec, Canada
This presentation reviews the consensus reached by the Task Group on Naturally Occurring Inorganic Fibers of ASTM Committee E-34. Sig nificant differences with the OSHA regulation are pointed out on the following topics: Definitions, exposure limits, record keeping, monitor ing, and the counting method. The reasons for these differences are outlined and a rationale in support of a dual standard is presented. This Task Group document is now under study according to official ASTM procedures.
36
ASB 0004080
IMPORTANT CONSIDERATIONS IN THE IDENTIFICATION AND COUNTING OF MINERAL FRAGMENTS
R.J. Lee, J.S. Lolly and R.M. Fisher U.S. Steel Research Lab. Monroeville, Pennsylvania
Positive identification of some micron diameter mineral fragments, and especially of amphiboles, required both chemical and crystallographic analysis of the unknown particle. At present only electron optical
to ensure that: 1 - the x-ray spectra and diffraction patterns pertain
only to the particle in question (i.e., spatial resolution limitations
must be recognized); 2 - x-ray data are compared with well characterized
referenced standards; 3 - overlapping chemical composition and/or similar
crystal structures of mineral series are recognized; 4 - crystal fragment
is tilted into a zone-axis orientation before recording the electron
diffraction pattern; 5 - appropriate statistical criteria are used to
evaluate the significance of the results on individual or groups of samples.
These problems and the analytical procedures used to minimize them will
be described.
''
37 ASB 0004081
MESA-REGULATIONS AND METHODS
Aurel Goodwin . MESA
Arlington, Virginia
"
MESA regulations for exposure to asbestos require that no employee be exposed to airborne concentrations greater than 5 fibers/ml (soon to be reduced to 2 fibers/ml) greater than 5 micrometers in length on a time-weighted average basis. We are proceeding with public meetings to obtain necessary data to reduce this permissible exposure even further. We'use the membrane filter method for sampling and phase contrast microscopy for counting. Our regulations specify that the term asbestos refers to chrysotile, amosite, crocidolite, anthophyllite asbestos, tremolite asbestos, and actinolite asbestos. In order to analyze for specific minerals we have contracted with Dr. Ruud at the University of Denver.
38 ASB 0004082
OSHA REGULATIONS AND METHODS
Willard C. Dixon OSHA
Salt Lake'City, Utah
OSHA uses the membrane filter method at 400 - 450x magnification
(4mm objective) with phase contrast illumination for the analysis of
asbestos in air. This method is substantially the same as is used by
NIOSH.
.
In an atmosphere known to contain asbestos, all particulates with
a length to diameter ratio of 3:1 or greater and a length greater than
5 micrometers are, in the absence of other information, considered to
be asbestos fibers and counted as such.
The equipment for optical analysis of asbestos in use at the OSHA
Salt Lake City Laboratory includes Zeiss microscopes having 40x objec
tives and lOx eyepieces, rotating stages, phase contrast illumination,
polarized light, and retardation plates. The transmission electron
microscope equipment in use by OSHA at the Salt Lake Laboratory is a
Jeol model JEM 100C with a side entry goniometer and AS1D-45 Model
EM-15 SPS-2 scanning image display unit. We also have an Ortec-Delphi
x-ray energy dispersive system.
X-ray diffraction, atomic absorption and other instrumentation '
are also available.
The techniques used for the identification of asbestos include
sight recognition based on morphology, and optical tests including
polarized light, index of refraction, angle of extinction, dispersion
staining, and retardation. Electron microscopy tests include
morphology, selected area diffraction and a determination of elemental
composition by x-ray energy dispersive analysis.
A plan is presented for distinguishing between asbestos and
other fibers which may be mistaken for asbestos. A system for
differentiating between the various kinds of asbestos fibers is
also presented.
39 ASB 0004083
. FDA PROJECTS AND METHODS
Irvin Asher, John Wennlger, and Philip McGrath Food and Drug Administration Washington, D.C.
.
An overview of FDA projects related to asbestos detection and
' quantitation is presented. The results of a recent FDA symposium on
the availability of suitable techniques are included. We then review the
technical and regulatory issues in the food and cosmetics area with
regard to asbestos contamination with emphasis on the analysis of
perenteral drugs and cosmetic talc. For the present, SEM using
.
Nucleapore filters as a substrate and EDXA for chemical analysis appears
to be a reasonable, cost effective method for routine detection of
asbestos in foods, drugs and biologicals, although quantitation and
reduction in the number of ambiguous fibers is still a problem.
40
ASB 0004084
IMPACT OF ASBESTOS REGULATIONS ON THE MINING INDUSTRY C.S. Thompson
Vanderbilt Company East Norwalk, Connecticut
No one in the mining industry objects to proper regulation of toxic substances. No one in the mining industry has any objection to the reasonable control of asbestos as long as the regulations apply to the truly asbestiform varieties of specific minerals. Unfortunately, the regulators have ignored basic mineralogical data and have included numerous minerals which bear no resemblance to the asbestos upon which essentially all health data have been obtained. This gross extrapolation of the known health hazards of excessive exposures to true asbestos, to the non-asbestiform varieties of common rock-forming minerals is totally unwarranted.
The full assessment of the economic impact of the asbestos regula tions, as with other restrictive legislation, will undoubtedly take many years. This impact is also greatly dependent upon the outcome and recommendations resulting from this workshop. As 'of today, if the regulatory agencies apply their present rules and definitions regarding "asbestos", the entire mining industry and those dependent on it face an adverse economic impact unparalled in its history. Furthermore, pro posed regulations, based on the same erroneous definitions and extra polations are so restrictive they threaten the existence of major segments in a wide variety of areas within the mining industry. The continued promulgation and enforcement of mineral legislation based on errors and misconceptions will have astronomical economic effects on the total U.S. economy and on the individual taxpayer.
41 ASB 0004085
NIEHS-ORAL ASBESTOS STUDIES
. John A. Moore National Institute of Environmental Health Sciences Research Triangle Park, N.C.
Epidemiologic data clearly associates.inhalation of asbestos
with an increased incidence of cancer. In addition to pulmonary thoracic
neoplasia, there is data which associates an increased incidence of
gastrointestinal and peritoneal tumors. Controversy exists as to whether
these latter types of neoplasia result from asbestos fibers that were
injested subsequent to clearance from the respiratory system. Exposure
to injested asbestos does occur in the general population through the
presence of fibers in water and food.
'
The NIEHS oral asbestos studies, in rats and hamsters represent a
systematic attempt to assess the biological effects associated with
primary injestion of selected asbestos fibers. The objectives of the
studies include: assessment of biological (carcinogenic) effects as a
consequence of exposure to one of several types of asbestos; assess if
an interaction may exist between a chemical carcinogen which is known
to produce bowel cancer and injestion of asbestos. The specific
experimental design of this series of ongoing studies will be
presented.
.
42 ASB 0004086
CPSC REGULATION OF NON-OCCUPATIONAL EXPOSURE
TO ASBESTOS IN CONSUMER PRODUCTS
Robert Hehir, Steven P. Bayard, and June Thompson Consumer Products Safety Commission
. Bethesda, Maryland
The Consumer Products Safety Commission (CPSC) has found that
exposure to respirably free-form asbestos in two consumer products
poses an unreasonable health'risk. The Commission has recently voted to
ban the use of free-form asbestos in consumer patching compounds, and in
artificial fireplace ash or emberizing materials under Section 8 of the
Consumer Products Safety Act. The broad regulatory provisions under
CPSA, as well as those under the Transferred Acts are discussed.
Data on consumer exposure to asbestos are very limited. One study
of airborne asbestos resulting from the use of consumer spackling/patching
compounds has reported levels of airborne asbestos fibers exceeding the
occupational exposure excursion levels.
Direct evidence exists of asbestos inhalation in non-occupationa1ly
exposed individuals from autopsy findings of asbestos fibers in lung tissue, and indirect evidence of asbestos-related cancers in non-occupationally
exposed individuals from epidemiological studies.
A risk assessment has been made of the potential increase of lung .
cancer resulting from heavy consumer exposure to asbestos-containing patching compounds.
43 ASB 0004087