Document evDqMBr3222V7Q9bD33QLGakq
FILE NAME Threshold Limit Values TLV
DATE 1966 DOC TLV006
DOCUMENT DESCRIPTION Documentation of Threshold Limit Values Committee on Threshold Limit Values
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Copies of this publication may be obtained from
American
Secretariry er
Conference of Governmental Industrial
1014 Broadwa Cincinnati Ohio 45202
Hygienists
Price per copy 9.50
Make checks payable to American Corerence Corerence of Governmental
Industrial Hygier sts
Copyright 1965
by American Conference of Governmental
Industrial Hygienists
11
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References
=< 1 Henderson
Henderson 1943
Y. Haggard
eee
H.W
ee
Noxious
Gases
Reinhold Publishing Co.
N.Y.
rani, Nau C.A South Med J. 41 341 1948 jm^/ Elkins H.B Chemistry ofIndustrial Toxicology Wiley & Sons N.Y. 1959 jm^/ Bulmer F.M.R. et .: J. Ind Hyg & Tox 22 111 1940 jm^/ ASBESTOS
ne
5 mppcf
Asbestos is a generic term applying to a number of mineral silicates that are
incombustible in air and can be separated into filaments The most widely used in
industry is chrysotile a magnesium silicate from serpentine Other types include amosite an iron magnesium silicate crocidolite a sodium iron silicate tremolite a calcium magnesium silicate and anthophyllite also an iron magnesium silicate
Miller and Sayers 1 showed that intraperitoneal injection of amosite chrysotile and crocidolite in guinea pigs produced the reaction of an inert dust Vorwald et al 2 confirmed this for short fibers under 3 but observed that long fibers produced a fibrous reaction Continuing unpublished work by Gardner these workers demonstrated that long fibers 20 microns and above produced peribronchiolar fibrosis
in lower animals and developed evidence that thi resulted from mechanical rather than chemical action Asbestos dust containing 0.0 per cent fibers longer than 10 microns in concentrations of 138 mppcf or 0.8 1lion long fibers per cu ft was capable of producing experimental asbestosis n guinea pigs When the concentration was 6.7 per cent fibers over 10 microns 40 mppcf equivalent to 2.7 million long fibers per cu ft the reaction developed in approximately approximately half the time
That exposure to asbestos is associated with cevelopment of a potentially dis-
3,4,5,6,7,8,9,10,1 abling pneumoconiosis in man has been amply demonstrated by industrial experience
3,4,5,6,73,,48,,5,96,,7,18,09,,101,111 The present threshold limit was recommended by Dreessen et
al 8 after study of 541 employees in three astestos textile plants using chrysotile Only three doubtful cases of pneumoconiosis were found in those exposed to dust concentrations under 5 mppcf whereas numerous marked cases were found above 5 mppcf Counts were from impinger collected samples in ethyl alcohol and distilled water Both fibrous and nonfibrous particle were counted but the latter greatly predominated While chemical analyses of c llected samples of borne dust corresponded to those of settled dust samples it is believed that dust counts of particulates by conventional methods can be expect d to give only an indirect measure of the risk of asbestosis because of the great rel tive importance of long fibers
References
1. inim inim
fu 5
br^, br^, br^,
g 10. 11.
Miller J.W. Sayers R.R Pub Health Rep 56 264 1941 Vorwald A.J. Durkan T.M. Pratt P.C Arch Ind Hyg 3 1 1951 Merewether E.R.A J. Ind Hyg 12 198-239 1930 Pneumoconiosis Abstracts
1926-1938 Vol I p 128 Wood W.B. Gloyne S.R Lancet Dec. 22 19. Fulton W.B. Dooley A. Matthews J.L. Hou z
pp 1383-1385 R.L Penn Dept.
Labor and
Ind Bull 42 1935 Lanza A.J. McConnell W.J. Fehnel J.W P.b. Health Rep 50 1 1935 Donnelly .: J. Ind Hyg & Tox 18 222 1136 Dreessen W.C. DallaValle J.W. Edwards T.i. Miller J.W. Sayers R.R
Pub Health Bull No. 241 Washington D.C. 1938
Lynch .: Arch Ind Health 11 185 1955 Smith K.W Arch Ind Health 12 198 1955 Cartier .: Arch Ind Health 11 204 1955
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