Document a4EEqgNG8j0Ne5kDvM9DK2jd9
FILE NAME: Owens Illinois Library (OWL)
DATE: 1950
DOC#: OWL029
DOCUMENT DESCRIPTION: Journal Article - Environmental Cancer Hazards Caused by Industrial Air Pollution
V
A It C H I V E S O F
> k
Industrial
and - >
>* Occupational Medicine
EDITORIAL BOARD
P H ILIP D R IN K ER , Chief Editor 55 Shattuck Street, Boston 15
rtlt.uDORK F. H A TCH , Pittsburgh
FENN E . P O O LE . Gleiulule, C alif.
KOttl.UT A. KUH O E, Cincinnati
FRANK PRIN CI, Denver
H l\N K A. PA TTY, Detroit
W ILLIAM A . SA W Y E R , Rochester, X . Y
JA M E S H . STERN ER, Rochester, N . Y .
RICHARD J . P LU N K E T T , M .O ., Chicago, Managing Editor
. *1
Volume 2 1950
P U B L ISH E R S
AM ERICAN M EDICAL A SSO CIA TIO N C H IC A G O 10. I L L .
N
(1
MEDICINE applied and
healing of old ay be of some
nation there is 1 the adoption
ending to such ersonnel, eduuards, routine , etc. \y of limiting ; disturbances, lisease and of
c
ENVIRONMENTAL CANCER HAZARDS CAUSED BY INDUSTRIAL AIR POLLUTION
Introductory Comment to the Discussion
W. C . HUEPER, M.D. Cancerigenic Studies Section, Notional
BETHESDA, MD.
Cancer
Institute
A N A P P R E C I A B L E number of recognized or suspected occupational -V - cancers are probably caused by inhalation of certain cancerigenic chemicals in dust, fumes, vapors, mists or gases (figs. 1 and 2 ). Many of these industrial agents are also introduced into the air while they are being used or released as waste products. Because the minimal effective cancerigenic dose, of almost every one of these agents is yet to be estab lished, the possible, even the probable, existence of cancer hazards resulting from pollution of the environmental air by chemicals represents an appropriate subject for those taking part in this conference to consider.
W ith the exception of soot as a possible cause of cancer of the lung and cancer of the scrotum, cancer-producing factors polluting the environmental air have only rarely been considered or investigated in connection with cancer in man. Studies of this problem which render valid evidence are difficult, complex and time-consuming. There is small wonder, therefore, that at present all available data on this matter have suggestive value at best, and most are mere speculation.
Some years ago Green alleged that the sulfur dioxide released during the burning of coal and the smelting of ores is the cause of an excessive incidence of cancer among population groups exposed to the fumes. O n the other hand, Stephens blamed carbon monoxide, which was introduced into the atmosphere from domestic and industrial sources, for causing cancer in certain workers and the general population. These claims have little, it any, basis in fact.
Much more substantial, however, is the evidence in regard to other industrial products (table). There can be no doubt that products of the combustion and fractionation of coal, such as soot containing cancerigetiic tar, tar fumes, pitch and tar dust are polluting the environmental a:r from various sources and at many places. Similarly, combustion products and processed fractions of mineral oils, shale oils and natural g.'K are released into the air as domestic or commercial soots and fumes,
ivca<t at the United States Technical Conference on A ir Pollution, M ay 3 to S,
325
BBS
HM
^ i
-* i
: r r r * ->'r'T ^ rer.T .5X7
'** -
. - #r.*.v^?
'i. VC-, i.**' 1
M EDICINE
K z9h garera ' ^ V\i ^TjA5 mewR JDp3SrJDDa;))
uWCc - ' $ $ 3 3 TPflHrflflRMr*
taflsHKii 4 0 ? ^
J %-*v2SfmGs Sl . r.+^LfWm,JM
""f l iOE S acSffy y r j - 1 '
w& m B& V
w
(
- il ,,
tory cancer.
-- <**.
x & k *
Environmental Cancergenc Agents and Sites of Cancer
Cancerlgenic Agent
Type o Contact
Site ot Cancer
Benzene
Arom atic amines Beta napbtbylamlne Benzidine
C oal tar, pitch. asphalt, soot, bitumen, creosote oil, anthracene oil (3,4-benzpyrene)
Shale oil Lubricating oils Crude paraffin oils
Lignite oils Lubricating oils Crude paraffin oils T ar oils
Petroleum and Petroleum products Lubricating oils Crude paraffin oils Fuel oils Commercial soots
Arom atic Organic Chemicals Cutaneoua Respiratory
Cutaneoua Respiratory
7fc Cutaneoua
a, Respiratory (turnes)
Cutaneous
Cutaneous
Cutaneous ** Respiratory
(M ist-D ust)
Leukemia Lym phosarcom a? Myeloma/ Carcinom a o f bladder,
ureter, renal pelvis
C arcin om a ot skin
Carcinom a o f lung
Carcinom a o f skin
Carcinom a o t skin
Carcinom a o f skin Carcinom a o f lung?
Isopropyl oil?
Aliphatic Organic Chemicals Respiratory
C arcin om a o f nasal sinuses and lung/
Arsenicals Inorganic and organic?
Chrom ates Nickel carbonyl? Asbestos
Inorganic Chemicals Cutaneous A lim en tary Respiratory
Respiratory Respiratory Respiratory
Carcinom a ot skin
Carcinom a o f lung? Carcinom a of alimentary
tract? Carcinom a o f bladder? Carcinom a o f lung C arcin om a o f n a s a l sinuses
and lung Carcinom a of lung
Ionizing radiatioQ o f electromagnetic (gam m a) and corpus* cuiar types (alpha, beta) from radioactive chemicals
Ionizing radiation from x-ray tubes
Ultraviolet radiation solar radiation
Physical Agents Cutaneous Respiratory A lim en tary General body Parenteral Cutaneoua
General body Cutaneous
Carcinom a and sarcoma o f skin
Carcinom a ot lung C arcin om a o t n asal sinuses Sarcom a o t booes Leukem ia, lymphosarcoma C arcin o m a o t liver?
Carcinom a ot skin Sarcom a o t connective
tissues and hones Leukem ia, lymphosarcoma
Carcin om a o t skin
Caocerlgeoic Agent
Rite o f Cancer
Species
Potential Environmental Cancerlgenic Agents and Cancer Sites
Arom atic amino compounds
o-aininoazotoluene
Liver
Rat
o-am inoazo benzene
Biadder
Mouse
2,3-azotoluene
. -
D .nj-diethyl-p-sm ino*
axobenzene
4-dimetbyl-ainino*
beozene-l-azooapth*
thaieoc
4-oxy-2:3-dimethyl-
azobeozeoe
2-acctyUmiaouorene
2-aminolluorene
Dibenzocarbazole
4-dimetbylamioo*
nzobenzene
Estrogenic compounde
Breast
Mouse
Stilbestrol
Rat
Uterus
Guinea pig
Hemopoietic tissue
Mouse
Aliphatic compounds
Chlorinated hydrocarbons
Liver
Mouse
Chloroform
Carbon tetrachloride
I>icthyiene glycol
Bladder
Rat
C a rb a m a te d erivative
Luna
Moue
Thiourea derivatives Beryllium Selenium
Thyroid giaod? Bone Liver
Rat Mouse Rabbit Rat
4
*
1
.-$yV.
r 328 INDUSTRIAL HYGIENE AND OCCUPATIONAL MEDICINE
or may cover mineral particles escaping from cracking towers, thereby
r.W'-
becoming a part of the constituents of smogs. Whenever production and
waste disposal methods in aromatic amine operations are inadequate,
dust, fumes and vapors of beta or alpha naphthylamine and benzidine
may enter the air of the factory fume zone. The large scale use of
arsenical dusts as pesticides and the long-continued and formerly uncon
trolled release of arsenicals with the waste fmes of metal ore smelters
may have created potential cancer hazards in many regions. It may be
wise to consider the possible existence of similar conditions for the
population living near chromate factories, beryllium operations and asbes
tos mills. In recent years the potentiality of cancerigenic air pollution hazards in connection with many establishments in which radioactive material is produced, used or handled Has become an important factor in their operations.
Cancerigenic agents polluting the air may enter the human body by inhalation, cutaneous contact or ingestion. Exposure of the population to cancerigenic air pollutants, especially those of stable nature, may result from their subsequent incorporation into and contamination of drinking water, foodstuffs and soil. Cancers caused by cancerigenic air pollutants may affect not only parts of the respiratory tract, such as the lung or the nasal sinuses, but, depending on the nature of the agent and the type of exposure, may affect other organs, such as skin, bones, bone marrow and bladder.
The future control of these potential hazards depends, first, on the reliable qualitative and quantitative demonstration of cancerigenic agents in the air around establishments producing or handling recognized or suspected cancerigenic agents ; second, on thorough epidemiologic studies of cancer incidence in the population living in the fume or waste disposal zone of such plants ; and third, on the subsequent institution of effective measures preventing further release of cancerigenic agents into the environmental air.
To cope properly and speedily with this new health hazard from air pollution in the modern industrial environment, it is essential that indus trial management, public health agencies and the medical profession be alerted to the problem and that they work together harmoniously in trying to solve it.
Wv v eHff1eL<
technical of the pri
offenders, of chemic and nume: producing chemical measures, particulate (cedarwoc and soy be Hour mills are comm
Smuts barley, sor ties in the
Accorc pathology Agricultur reached 1, that spore, in mill du to 9,000,0c threshing of eastern
The " smut
middle of
X;v / From tl Present
Washington. 1. Heali
y Company, Ir
1938, v o l 13
i '
. v.- .
li
REPORT ON INDUSTRIAL HYGIENE IN THE WESTERN ZONE OF GERMANY
* V- - ;
IRVING R. TAIERSHAW, M.D.
-
MIW YORK
,-. .
PURPOSE
TH IS S U R V E Y attempts to evaluate present day industrial hygiene practices in the Western Zone nr Germany. It had been noted by American public health officials that German practices in this field (.five years after the war) were lacking or rudimentary or had regressed to the point of ineffectiveness. This was especially true it viewed in the light of the modern concept of industrial hygiene a a field of public health which embraces the prevention of disease and injury as well as the maintenance and improvement of workers' health.
PROCEDURE
'fficiaJ? in the health and lalxir departments of all government units were inter viewed. Discussions were also held with those quasiofficial and nonofficial agencies which have an interest in some phase ui industrial hygiene. A number of research lalioratories were inspected, and educational programs of a few of the leading uni versities were examined. A representative number of plants, including those in the Ruhr, were visited and industrial medical practices reviewed. Several con ferences and meetings on industrial hygiene problems were attended, and a number of round table discussions were held in several cities.
INTRODUCTION
Tlie practice of industrial hygiene in Germany is important inasmuch as that country was one of the leading industrial nations of Europe and is rapidly regaining its former stains. Table 1 indicates the total mimlier employed in Western Germany for the second half-year of l ` >40. Since all workers must lie insured in an accident insurance company i Hcruisgcnossi'nschaft). these figures were chosen as being most inclusive. Accident insurance cnm{>anies are organized in four large groups cither bv industry or on a geographic basis.
Industrial accidents are common and occupational disease, particularly silicosis, is of serious significance in the Ruhr and in the porcelain industry. It was unof ficially stated in regard to the coal mines that the indemnity paid for occupational disease in 1940 was higher than the indemnity for accidents, ' ..u* ,
Dr. Tahershaw is associate professor of industrial hygiene at Colombia University School
of Public Health, and medical director in the Eastern Division of the Liberty Mutual Insurance
Company. New York.
-
298
' ^
X* :
V-
312
INDUSTRIAL HYGIENE AND OCCUPATIONAL MEDICINE
I
APPENDIX I
T
L itt o f Occupational Diseases W hich in Social Insurance A re Considered Equivalent with Occupational Accidents. (Additional promulgation of ordinance dated A pril 27, 1950, Code 1950.)
Occupational Diseases and the Nature of the Industries with Which They are Associated*
N'a Disease caused by
1
lead or its compounds
2
cadmium or its compounds
3
phosphorus or its compounds
4 "
mercury or its compounds
- 5
arsenic or its compounds
6
manganese or its compounds
7
beryllium or its contpoundst
8
benzene or its compounds
9
nitro- and amino* compounds of benzene, its homologs and their drivtes
10 .
methanol
'
11
nitric acid compounds
12
halogcnated hydrocarbons
13
carbon disulfide
14
hydrogen sulfide
15
carbon monoxide
16 Diseases ot the tevth caused by adds
17 Diseases caused by roentgen rays and radioactive elements
18 Skin cancer or similar precanccrous changes of the skin caused by soot, paraffin, tar, anthracene, pitch and similar substances
19. Cancer or other tumors, as well as morbid changes of the urethral mucous membrane, caused by aromatic amines
it) Occupational 'kin diseases which make change of occupation or the termination of empli irmeitt necessary
21 Diseases produced hy repeated shacks as a result of the use of tools operating with compressed air or similar tools ami machines
22 Bone fractures caused by fatigue
23 Diseases caused hy working iit compressed air
24 Diseases of the joint bursae (bursitis) due to permanent pressure or permanent shock
suffered by the affected parts of the body
25 Chronic diseases of the tendons, the tendons and their muscles, the ligaments and the meniscus insertions
26 Paralysis of nerves exposed to pressure
27 Diseases of bones, joints and ligaments caused by fluorine compounds (fluorosis)
28 Dust disease of the lungs (silicosis, silicatosis) diminishing the capacity to breath and impairing tlte circulation, or associated with pulmonary tuberculosis (active)
'29 Ada-stnsis with diminished capacity to breathe and impaired circulation or associated with cancer of tlic Jungs.
* 1*29-, all enterprises.
tWilh ti>e exception of skin diseases, which rate as occupational disease only so far as they are symptoms of a general illiiest resulting from the action of noxious substances absorbed into the hndv or are to be indemnified as per no. 20.