Document DDmkNgZMa8ZgRY9Jgb2EDjQdN
FILE NAME: Talc (TALC)
DATE: 1935
DOC#: TALC201
DOCUMENT DESCRIPTION: Book Excerpt - The Prevention of Industrial Diseases
NATIONAL MEDICAL MONOGRAPHS
ABNORMAL ARTERIAL TENSION
By Edward J. Stieglitz, M.S., M.D., F.A.C.P. Assistant Clinical Professor of Medicine, Rush Medical College, Univ. of Chicago
OBSTETRICS FOR TH E GENERAL PR A C T IT IO N E R
By J. P. Grccnhiil, B.S., M.D., F.A.C.S. Professor of Gynecology, Loyola Uni versity School of Medicine, Chicago
INDUSTRIAL MEDICINE
By W. Irving Clark, A.B., M.D. Assistant Professor, Industrial Medicine, Harvard School of Public Health, Boston
and Philip Drinker, S.B., Ch.E. Associate Professor Industrial Hygiene, Harvard School of Public Health, Boston
TH E MANAGEMENT OF COLITIS
By J. Arnold Bargen, M.D., F.A.C.P. Division of Medicine, the Mayo Clinic
COMMONER DISEASES OF T H E SKIN
By S. William Becker, M.S., M.D. Associate Professor of Dermatology, School of Medicine, University of Chicago
DISEASES OF TH E CHEST
By J. Arthur Myers, M.D. Professor of Medicine, Preventive Medicine and Public Health, Univ. of Minn. M edi
cal School
NATIONAL MEDICAL MONOGRAPHS
INDUSTRIAL MEDICINE
By
W. IRVING CLARK, A.B., M.D.
Assistant Professor of the Practice of Indus
trial M edicine, Harvard School of Public Health, Boston, and Medical Director of The
Horton Com pany, Worcester, M ass.
^ r4
and
PHILIP DRINKER, S.B., Ch.E.
Associate Professor of Industrial Hy^iene}
Harvard School of Public Health, Boston^
Mass.
Edited by MORRIS FISHBEIN, M.D.
1 N Sr^ J a n fi" JARS,
N atio n al
M ed ica l B ook
New York, N.
1935 / 4
C om pany,
Y.
I nc.
C hapter X II
TH E PREVEN TIO N OF IN D U STRIAL D ISEASES
E lsewhere w e defined an industrial disease as a toxemia resulting from too great exposure to a toxic substance or to an unfavorable working environment. Obviously, then, the avoidance of such an exposure furnishes the first and most im portant defense against industrial disease. Gen erally it is unnecessary to prohibit all exposure to a toxic substance-- most substances have threshold doses. In Chapter V I I I we have given figures of permissible concentrations for certain dusts, fumes, and for one mist, chromic acid. Hamilton [70] and Henderson and Haggard [79] and publications of the U. S. Public Health Service give the available data on gases [ 15 1].
Perhaps the second most obvious preventive
308
INDUSTRIAL MEDICINE
209
measure is the limiting of working hours so that the exposure w ill be sub-threshold. Usually such limitation is developed by practical ex perience and later is put upon a sound scientific basis by appropriate laboratory experimenta tion. Notable examples of limitation of exposure are shown in the rules for working in com pressed air and again for working in hot deep mines (Chapter IV ). In both of these examples industry would welcome a normal full working day if the resulting exposure were physiologi cally safe for man.
A third method which is always sought by an industry which finds itself in toxicological trouble, is the development or substitution of a safe process for that which is causing trouble. A familiar example is the almost total elimina tion of benzol poisoning [69] by the use of less toxic solvents in place of benzol--toluol and xylol. In dusty trades it is often feasible to change a process so that it becomes non-dusty. Examples can be seen in any plant doing sand blasting; a few years ago the abrasive was sand and the blasting frequently was done on the open