Document NEDX5Qa4ykR5ga8vMny3zJp0V
ST 0853804
A Guide to the DIAGNOSIS of OCCUPATIONAL DISEASES
A REFERENCE MANUAL FOR PHYSICIANS
Compiled Jointly by the Staffs of THE INDUSTRIAL HEALTH DIVISION DEPARTMENT OF NATIONAL HEALTH AND WELFARE
and THE DIVISION OF INDUSTRIAL HYGIENE DEPARTMENT OF HEALTH FOR ONTARIO
Published by Authority or The Honourable Paul Martin Minister or National Health and Welfare 1949
Copies may be obtained from the King's Printer at One Dollar each
ST 0853806
PREFACE
This reference manual is intended to be of assistance to physicians in the diagnosis and prevention of occupational diseases. It has been prepared in response to the growing interest in industrial health problems on the part of the medical profession, labour and management.
The growth of Canadian industry in recent years has been extremely rapid. During the course of World War II, Canada became one of the foremost industrial nations of the world. Between 1939 and 1946, the value of our manufactured goods and foreign trade increased threefold while the number of employees in manufacturing alone rose from 658,000 to 1,119,000. Today, in Canada, the number of persons gainfully employed in all occupations is about 5,000,000.
Not only has there been an increase in the number of employees in our industries, but industry itself has become more complex and diversified. Many new materials and processes, introduced during the war, have now become standard features in Canadian industry
and some of these constitute further sources of potential or actual health hazards for the worker. The control of the working environ ment and the supervision of workers' health call for a wider knowledge of the potential health hazards in all industries and for enhanced skill in recognizing occupational diseases.
A comprehensive program of industrial hygiene requires the com bined services of professional and technical people from various scientific fields. In addition to the plant physician and nurse, the modern industrial hygiene team includes chemists, engineers, physi cists, as well as factory inspectors, safety supervisors, plant managers, personnel directors, and first-aid men. All these people must have some knowledge of the broad field of industrial health in order to understand their special function in a preventive program.
The general practitioner and the specialist in various branches of medicine are also important members of this team when their patients are industrial workers. They, as well as the plant physician, there fore, should have a practical working knowledge of occupational factors in the causation of disease and the information assembled in this book is intended to be helpful in determining that relationship. For this purpose, in Chapter 2, a reference key is presented
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3
S T 08 53807
giving an alphabetical list of "Occupations1' with their associated potential health hazards; and in Chapter 3 there follows a description of occupational diseases which may result from those hazards. Harmful chemicals are described under the
following headings: Properties, Uses and Occurrence, Mode of Entry into the Body, Physiological Action and Toxicity, Signs and Symptoms.
The remaining chapters are of more general interest, Chapter I providing a brief discussion of occupational diseases, Chapter IV a review of occupational dermatoses and Chapter V a summary of the various provincial workmen's compensation acts.
This publication is intended to present only a brief summary of current knowledge of the diagnostic features relevant to occupa tional diseases. The selection and arranging of the material, together wi h the writing of accompanying text, have been performed largely by Dr. R. B. Sutherland of the Ontario Division of Industrial Hygiene and Dr. E. A. Watkinson and H. N. Acker, B.A., of the Federal Division of Industrial Health. Much of the material has been selected from works listed in the bibliography. Acknowledgment is also made to the United States Department of Labor, whose bulletin No. 41, "Occupation Hazards and Diagnostic Signs", has served as the basis for Chapter II. The values given for maximum allowable concentrations are those generally accepted today, but of course, are subject to change when further scientific knowledge warrants revision.
It is hoped that this book will fill, at least in part, a long felt need for a ready reference manual on the diagnosis of occupational diseases.
F. S. PARNEY, M.D., Chief,
Industrial Health Division, Dept, of National Health and
Welfare, Ottawa.
J. G. CUNNINGHAM, M.B. Director,
Division of Industrial Hygiene, Dept, of Health for Ontario,
Toronto.
4
ST 0853808
Chapter
TABLE OF CONTENTS
Page
I. The Occupational Diseases--
1. General Considerations.....................................
7
2. Definitions........................................................... 10
Chapter
II. List of Occupations and Their Potential
Hazards...........................................................
15
Chapter III. Harmful Conditions and Substances--
Section A. Abnormalities of Air Pressure............................
Section
B. Abnormalities of Temperature and Humidity.. 1. Heat.................................................................... 2. Sudden Variations in Temperature................
Section C. Dampness...............................................................
Section D. Defective Illumination.........................................
Section E. Excessive Noise.....................................................
Section
F. Radiant Energy..................................................... 1. X-Rays, Radium, and Other Radioactive Substances........................................................... 2. Ultraviolet Rays................................................ 3. Infrared Rays..................................................... 4. Ultra High Frequency Radiations..................
Section G. Electrical Burns; Electrical Shock.....................
Section H. Repeated Motion and Pressure; Vibration......
Section I. Infections............
Section
J. Dusts and Fumes.................................................. 1. Organic Dusts.................................................... 2. Inorganic Dusts and Fumes............................ Group I. Inert Dusts and Fumes................ Group II. Dusts and Fumes Producing Systemic Effects............................................. Group III. Dusts and Fumes Producing Inflammatory Lung Changes...................... Group IV. Dusts and Fumes Producing Disabling Lung Fibrosis............................... Group V. Dusts and Fumes of Undeter mined Pathogenicity to the Lung...............
Section K. Harmful Chemicals..............................................
o
77 78 78 79 79 79 80 81
83 85 86 87 88 89 91 96 98 101 101
103
103
104
108 110
ST 0853809
Page
Chapter IV. The Occupational Dermatoses....................... List of Occupations with their Skin Irritants
279 289
Chapter
V. Workmen's Compensation in Canada............ Table of Occupational Diseases Compensated by Provinces...................................................
299 306
Selected Bibliography...................................................................... 310
Index.................................................................................................. 311
6
ST08538I0
Chapter I
THE OCCUPATIONAL DISEASES
I. General Considerations
Since occupational diseases have their origin in the working environ ment, their prevention, diagnosis and treatment depend upon a knowledge of the health hazards associated with any particular environment. In respect to patients who are industrial workers, physicians will want to know the materials and the processes with which their patients have been dealing and whether these have involved an exposure to any potential or actual health hazard. While it is often impractical for the general practitioner to know the whole industrial field, he can, however, become familiar with the working environment associated with the industries in his own community.
Early diagnosis of an occupational disease is especially important, for until the cause is determined, other workers may continue to be exposed to the same hazard. A knowledge of the potential hazards and the early signs and symptoms of abnormal exposure will assist in establishing an early diagnosis. Through close observation too, the industrial physician may notice significant minor changes among a working group. For example, pallor, loss of appetite and general weakness occurring among several workers in a storage battery plant should suggest group exposure to dangerous concentrations of lead.
Steps in Diagnosis:
In the diagnosis of occupational disease it is important to prove exposure to the toxic substance, absorption of the substance into the body and to demonstrate actual signs of ill health caused by absorp tion. Most industrial diseases are insidious in their onset. Although they usually develop while the workman is still exposed to the causa tive agent, some diseases such as silicosis, radium poisoning and benzol poisoning, may not become evident for months or even years after the workman has left the hazardous environment. In no other branch of medicine is the work history of the patient more important. Not only is a complete medical and personal history essential, but a detailed history of all occupations held by the workman since the time he left school is imperative.
7
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8 DIAGNOSIS OF OCCUPATIONAL DISEASES
Investigation of industrial materials must be thorough. It should be remembered that mixtures, rather than simple substances are often
used, particularly in the case of solvents. Such materials may con
tain harmful impurities or, without the trade name being changed,
their composition may be altered in such a way as to become hazar
dous. Consequently, it is often necessary to contact or visit the plant to identify materials used by the workman and to consult the manufacturer of trade products to ascertain their chemical compo sition. In certain provinces manufacturers may be required to inform departments of labour or health concerning the composition of their products.
The physician must then determine whether any of these materials are known to be harmful. If the patient's exposure to a specific toxic substance is responsible for his illness, the clinical picture should be consistent with those of other known cases of occupational disease produced by similar agents. However, it should be borne in mind that the workman is often exposed to a mixture of toxic substances, a fact which may produce a complex and confused clinical picture.
It must be established whether the exposure, in terms of concen tration and duration, has been sufficient to produce toxic effects in the workman. Exposure may be continuous or intermittent and there may be great variations in concentration during the working day. These factors influence the degree of danger associated with industrial poisons. For example, daily exposures to low concentra tions of benzol over a considerable period of time, are likely to result in severe changes in the haemopoietic system; on the other hand, brief exposures to high concentrations, short of narcosis, usually have no serious effect on the body provided they are not repeated. In contrast, a single exposure to a high concentration of nitrous fumes may produce pulmonary oedema within eight to twenty-four hours. Thus the conditions under which a toxic material is used may have a direct bearing on the degree of hazard involved.
Recurrence of an illness, coinciding with the workman's return to a similar previous exposure, is further evidence supporting a diagnosis of occupational disease. This applies particularly to occupational dermatoses which usually show improvement when the man [ is removed from the causative exposure, and which recur upon his return to former work.
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GENERAL CONSIDERATIONS
9
The finding of similar cases of illness among several persons subject to the same working conditions may be an important point suggesting an occupational origin of the disease. However, not all similarly exposed personnel need be affected. As in non-industrial diseases, there is marked variation in individual susceptibility. In addition, there appears to be a relationship between the age, sex and race of the individual and his susceptibility to poisoning by certain chemicals. Alcoholism and previous liver damage from any cause in a worker are believed to increase his susceptibility to the effects of T.N.T. and the chlorinated hydrocarbons.
The diagnosis of an occupational disease is often difficult to estab lish. It may necessitate an environmental survey including the collection and examination of dusts, fumes, vapours and gases, for the purpose of determining whether the worker has been exposed to toxic substances or hazardous conditions. The medical examination may involve the determination of the poison or its excretion products in body fluids or tissues. For example, urinalysis may reveal the presence of arsenic, fluorides, lead, manganese, mercury or selenium, or the excretory products of aniline, benzol, nitriles, phenol, toluene, T.N.T. or xylidine. Blood examination may show abnormal amounts of arsenic, carbon monoxide, fluorides, lead or manganese. Analysis of hair and finger nail clippings may reveal the presence of arsenic and the analysis of exhaled air may indicate the absorption of radioactive substances.
Usually, the general practitioner does not maintain facilities for making all these investigations. When he requires assistance either in investigating an exposure or in making diagnostic tests, he may obtain suck essential help from his provincial department of health. Special divisions of industrial hygiene exist in Manitoba, Ontario, Quebec and Nova Scotia under the provincial departments of health. These agencies can also frequently supply library facilities and information concerning the materials contained in trade products. The assistance of these divisions is available to all members of the medical profession and to industrial plants.
Classification of Occupational Health Hazards
The harmful conditions and substances encountered in industry may be divided into the following main groups:
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10 DLAGNOSIS OF OCCUPATIONAL DISEASES
A. Abnormalities of Air Pressure. B. Abnormalities of Temperature and Humidity. C. Dampness. D. Defective Illumination. E. Excessive Noise. F. Radiant Energy. G. Electrical Burns; Electrical Shock. H. Repeated Motion and Pressure; Vibration. I. Infections. J. Dust sand fumes. K. Harmful Chemicals.
Many of the above groups are further subdivided into specific individual hazards which are listed in the index.
In Chapter III the health hazards related to occupation are dis cussed in order of the above classification. An attempt has been made, in the description of each hazard, to stress those points which will assist the physician in arriving at a diagnosis. Thus, certain physical properties of each hazard have been given, e.g., Boiling Point, Vapour Density and where possible, Volatility. It is hoped that the information given under these headings will assist the physi cian in assessing the workman's degree of exposure. Under "Physio logical Action and Toxicity", the body systems usually affected are indicated and where known, the action of various concentrations of each harmful chemical is given. The paragraph on "Signs and Symptoms" gives a brief description of the common clinical findings. "Maximum Allowable Concentrations", as presently accepted by most authorities, are stated. Mention is made of the fire hazard associated with most of the chemicals, since it is felt that many physicians, especially those connected with industry, can be of assistance to management in pointing out instances where a fire hazard and its consequent health hazard may exist.
2. Definitions
Certain terms frequently used in this book may be defined as follows:
Dusts: Solid particles generated by handling, crushing, grinding, rapid impact, detonation and decrepitation of organic or inorganic materials such as rock, ore, metal, coal, wood, grain, etc. Dusts do
ST0853814
DEFINITIONS
11
not tend to flocculate except under electrostatic forces; they do not diffuse in air but settle under the influence of gravity. (American Standards Association)
Fumes: Solid particles generated by condensation from the gaseous state, generally after volatilization from molten metals, etc., and often accompanied by a chemical reaction such as oxidation. Fumes flocculate and sometimes coalesce. (ASA)
Mists: Suspended liquid droplets generated by condensation from the gaseous to the liquid state or by breaking up a liquid into a dispersed state, such as by splashing, foaming, and atomizing. (ASA)
Vapours: The gaseous form of substances which are normally in the solid or liquid state and which can be changed to th_ '-c states either by increasing the pressure or decreasing the temperature alone. Vapours diffuse. (ASA)
Gases: Normally formless fluids which occupy the space of enclo sure and which can be changed to the liquid or solid state only by the combined effect of increased pressure and decreased temperature. Gases diffuse. (ASA)
Specific Gravity: This is the density or weight of a liquid or solid in relation to that of water. When the liquid or solid is heavier than water, the specific gravity is greater than 1; when the substance is lighter than water, the specific gravity is less than 1.
Boiling Point: This is the temperature at which the vapour pres sure of a liquid is equal to the atmospheric pressure. In general, the lower the boiling point of a liquid, the greater its vapour pressure at room temperature.
Volatility : This term is used to express the rate of evaporation of a liquid. Usually, the lower the boiling point of a liquid the more rapidly will it evaporate at room temperature.
Vapour Density: This is the density or weight of a gas or vapour in relation to that of air. When the gas or vapour is heavier than air, the vapour density is greater than 1; when the substance is lighter than air the vapour density is less than 1. In still air, heavier gases and vapours tend to settle to lower levels, as for example, in pits and wells but a portion is diffused in the air at all levels.
ST 08 53815
12 DIAGNOSIS OF OCCUPATIONAL DISEASES
Maximum Allowable Concentration (M.A.C.): This is the high est concentration of an atmospheric contaminant which is regarded as having no harmful effect upon the health of an individual exposed continuously during the working day (8 hour daily exposure) and for prolonged periods of employment. These concentrations are usually expressed in one of three ways:
(1) In the case of gases and vapours, the M.A.C. is usually given in parts per million (ppm), that is, as parts of the gas or vapour per million parts of air. It must be remembered that the "parts of gas or vapour" refer to the gas-volume of the substance (*.., the volume of the substance in its gaseous state) and must not be confused by estimating the liquid volume of the substance in a million parts of air. To illustrate, the volume occupied by a gram-molecular weight of ^ substance at 0 Centrigade and 760 mm. of mercury pressure (Normal Temperature and Pressure) is 22-4 litres when in the gaseous state. The molecular weight of carbon tetrachloride (CC1<) is 154, (carbon 12, chlorine 35-5) and 154 grams of CCh, at N.T.P., occupies 22-4 litres when completely volatilized. The liquid volume, on the other hand, is only 96 cc., or 0*096 litres. In this example, the gas volume is 22 *4 -i- 0*096, or 233 times the liquid volume, and if the concentration of carbon tetrachloride in air in a given exposure were wrongly calculated using the liquid volume, the result would be 233 times lower than the true concentration.
(2) In the case of fumes, dusts and mists, the M.A.C. is usually expressed as milligrammes of contaminant per cubic metre of air (or Mgm. cu. metre, or Mgm/M*). For the most part, these concen trations are expressed as milligrammes per 10 cubic metres of air, since the volume of air breathed by the average man in 8 hours while doing moderately hard work is about 10 cubic metres. The M.A.C., given as milligrammes per 10 cubic metres of air, therefore, indicates that concentration of contaminant in air which is regarded as safe and relates it to the average amount of air breathed by the workman during a working day.
(3) In the case of mineral dusts, such as asbestos and dusts con taining free silica, the M.A.C. is expressed in millions of particles per cubic foot of air (M.P.P.C.F.), the dust count being performed by the standard light field technique.
In the case of gamma rays from X-rays or radium, the recom mended limits of exposure are expressed as roentgen units per 8 hour
ST08538I 6
DEFINITIONS
13
day. Where the radioactive material is gaseous, such as radon, the M.A.C. is given as curies per cubic metre of air.
It should be noted that some recommended M.A.Cs. have been determined by actual study of exposures associated with the develop ment of clinical cases in industry. In other instances, where hazar dous materials have been recently introduced into industry, the M.A.Cs. have been determined largely through animal experiments and it should be realized that results thus obtained may not be directly referable to man. Therefore, as more industrial experience and clinical evidence become available, it may be considered advisable to lower some limits which are now regarded as safe, or to raise others which are found to be lower than necessary.
Flash Point: This is the temperature at which a liquid or solid gives off sufficient vapour to support combustion. The term applies chiefly to liquids, but there are certain solids, such as camphor and naphthalene, which evaporate at ordinary room temperatures and have flash points while in the solid state.
A substance having a flash point above room temperature does not, of course, constitute as great a fire hazard as a substance having a flash point at or below room temperature. The lower the flash point, the more readily will a material give off sufficient vapour to support combustion. For purposes of classification, flammable liquids may be divided into four groups:
Class 1: Liquids having a flash point below 25F.; e.g. ethyl (or anaesthetic) ether, gasoline, benzol.
Class 2: Liquids having a flash point above 2SF. and below 70F.; e.g., ethyl alcohol, methyl alcohol, toluol.
Class 3: Liquids having a flash point above 70F. and below 200 F.; e.g., kerosene, turpentine, xylol.
Class 4: Liquids having a flash point above 200F.; e.g., dichlorobenzene, ethylene glycol, paraffin wax.
Explosive Limits (or Flammable Limits): The minimum explo sive limit is that concentration of a vapour in air which is required to support combustion. Vapour concentrations lower than the mini mum explosive concentration will not burn. The maximum explosive limit is that concentration of vapour which still supports combustion, but beyond which there is insufficient oxygen to support the burning
ST0853817
*1
14 DIAGNOSIS OF OCCUPATIONAL DISEASES
of the vapour. The difference between the minimum and the maxi mum. limits, representing concentrations in which combustion is supported, is known as the explosive range. Explosive limits are usually expressed as percentages by volume, of the gas or vapour in air. The minimum explosive limit is nearly always a higher con centration than that regarded as the maximum which is non-injurious to health (M.A.C.).
ST 08538 I 8
Chapter II
LIST OF OCCUPATIONS AND THEIR POTENTIAL HAZARDS
Abrasives Workers Heat Inorganic dusts (free silica) Inorganic dusts (no free silica) Organic dusts
Acetaldehyde Workers Acetaldehyde Mercury and its compounds
Add Finishers (glass) Hydrochloric acid Lead and its compounds Sulphuric acid
Actors Lead and its compounds
Agricultural Workers (see farmers)
Acetanilide Workers Amino compounds of benzol, toluol and xylol Aniline
Air Hammer Operators
Excessive noise Repeated motion, pressure
vibration
and
Acetic Acid Makers Hydrochloric acid Mercury and its compounds
Acetone Workers Acetone Mercury and its compounds
Acetylene Workers (see also carbide makers and welders)
Acetone Ammonia Arsine Carbon disulphide Carbon monoxide Chloride of lime Chromium and its compounds Inorganic dust Phosphine
Acid Dippers Arsine Cyanides Dampness Hydrochloric acid Nitric acid Nitrous fumes Sulphuric acid
Aeroplane-Dope Workers
Acetone Amyl acetate Benzol and its homologues (toluol
and xylol) Butyl acetate Butyl alcohol Ethyl acetate Ethylene glycol monomethyl ether Formic acid Ketones Petroleum hydrocarbons
Aeroplane-Hangar Employees Alkalis Benzol and its homologues (toluol and xylol) Carbon tetrachloride Chlorinated hydrocarbons Petroleum hydrocarbons
AeroplaneaPllots--Crop Dusting
Altitude (rarefied air, decreased atmospheric pressure)
Arsenic and its compounds Carbon monoxide Lead and its compounds
15
ST08538I 9
m
16 DIAGNOSIS OF OCCUPATIONAL DISEASES
Alcohol Distillery Workers Amyl acetate Amyl alcohol Benzol and its homologues (toluol and xylol) Ethyl alcohol Formic acid Mercury and its compounds Methyl alcohol Propyl alcohol
Aldehyde Pumpmen Acetaldehyde Methyl alcohol
Amalgam Workers Mercury and its compounds
Ammonia Workers Ammonia Calcium cyanamide Carbon monoxide
Ammonium Salt Makers Ammonia Carbon disulphide Cyanides Heat Hydrochloric acid Nitric arid
Alkali Salt Makers Carbon dioxide Chlorine Dampness
t Hydrochloric acid Hydrogen sulphide Sulphur dioxide
Sulphuric acid
Amyl Acetate Workers Amy! acetate Amyl alcohol
Amyl Alcohol Workers Amyl alcohol
Alloy Makers Antimony Arsenic
Aniline Dye Makers (see dye makers)
Beryllium
Aniline Workers
Cadmium
Amino compounds of benzol, toluol
Carbon monoxide
and xylol
Chromium
Aniline
Cobalt
Arsine
Copper
Benzol and its homologues (toluol
Heat
and xylol)
i 1
Inorganic dust (free silica)
Chromium and its compounds
T
Lead Magnesium
Hydrochloric arid Nitric acid
Manganese
Nitrobenzol
Metal fume fever
Nitro compounds of benzol, toluol
Nickel
and xylol
Selenium
Nitrous fumes
Tellurium Tin
Animal By-Products Workers
Vanadium Zinc
Aluminum Extractors Alkalis Fluorine and ,its compounds
Acrolein Anthrax Dampness Erysipeloid Fungus infections Septic infections
Alum Workers
Undulant fever
Sulphuric acid
Weil's disease
ST0853820
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
17
Awimal Hair Dressers (see hair workers)
Animal Handlers Anthrax Fungus infections Glanders
Rabies Septic infections Undulant fever
Annealers Ammonia Heat
Antifreeze Makers Glycols Methyl alcohol
Antimony Extractors (refiners) Antimony and its compounds Heat
Antimony Fluoride Extractors Hydrofluoric acid
Arsenic Roasters Arsenic and its compounds Heat
Art-Glass Workers Amyl acetate Arsenic and its compounds Cobalt and its compounds Hydrofluoric add Lead and compounds Manganese and its compounds Methyl alcohol Petroleum hydrocarbons Turpentine
Artificial Flower Makers Arsenic and compounds Chromium and compounds Lead and compounds Mercury and compounds Methyl alcohol Repeated motion, pressure vibration
and
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Artificial Gem Makers Thallium and its compounds
Artificial Ice Makers Ammonia Carbon dioxide Dampness Sudden variations of temperature Sulphur dioxide
Artificial Leather Makers Acetone Amino compounds of benzol, toluol and xylol Amyl acetate Aniline Arsenic and compounds Benzol and its homologues (toluol and xylol) Butanone Butyl alcohol Heat Methyl alcohol Nitric acid Nitrous fumes Sulphuric add
Artificial Pearl Makers Acetone Amyl acetate Lead Nitric acid Nitrous fumes Tetrachloroethane
Artificial Rubber Makers (see rubber makers, synthetic)
Artificial Silk Makers (see rayon)
Artificial Stone Makers Inorganic dust (free silica) Inorganic dust (no free silica) Tar and pitch
Asbestos Miners (see also miners) Asbestos dust
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18 DIAGNOSIS OF OCCUPATIONAL DISEASES
Asbestos Products Workers Asbestos dust Benzol and its homologues (toluol and xylol) Formaldehyde Heat Tar and pitch
Ashmen Inorganic dust (no free silica) Organic dust
Asphalt Workers Heat Tar and pitch
Automobile Mechanics (see garage workers)
Automobile Painters (see also painters)
Amyl acetate Benzol and its homologues (toluol
and xylol) Chlorinated hydrocarbons Dampness Ethyl acetate Ketones Methyl alcohol Petroleum hydrocarbons
Babbitt Metal Workers Antimony and its compounds Lead and its compounds
Babbitters Antimony and its compounds Lead and its compounds
Bakers Carbon dioxide Carbon monoxide Organic dust Sudden variations of temperature Ultraviolet and infrared rays
Baking Powder Makers Carbon dioxide Inorganic dust (no free silica) Organic dust
Barbers Fungus infections Repeated motion, vibration
pressure
and
Barium Carbonate Makers Barium and its compounds Hydrogen sulphide
Bar-Mill Workers (iron and steel) Heat
Barometer Makers Mercury and its compounds
Basic Slag (artificial manure) Handlers
Inorganic dust (no free silica)
Batch Makers (glass works) (see glass mixers)
Batch Makers (rubber works) (see compounders, rubber)
Baters (tannery) Anthrax
Battery (dry) Makers Amyl acetate Benzol and its homologues (toluol and xylol) Chromium and its compounds Hydrochloric acid Inorganic dust (no free silica) Lead and its compounds Manganese and its compounds Mercury and its compounds Organic dust Tar and pitch Zinc and its compounds
Battery (storage) Makers (see storage battery makers)
Beamers (textiles) Organic dust
Beam-House Workers (tannery) Anthrax Dampness
ST0853822
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
19
Beatermen (paper and pulp) Chlorine Dampness
Beauty Parlour Operators Ammonium thioglycollate Benzol and its homologues (toluol and xylol) Fungus infections Hydrogen sulphide
Bed Rubbers (stone) Inorganic dust (free silica) Inorganic dust (no free silica)
Benzene Workers (see benzol workers)
Benzine (petroleum) Workers Aliphatic hydrocarbons Petroleum hydrocarbons
Benzol Purifiers Benzol and its homologues (toluol and xylol) Sulphuric acid
Benzol-Stlllmen Benzol Heat
Benzol Workers Benzol
Bessemer-Converter Workers (iron and steel)
Carbon monoxide Heat Ultraviolet and infrared rays
Bevelers Inorganic dust (no free silica)
Billet Mill Workers (iron and steel) Heat
Bisque-Kiln Workers Carbon monoxide Heat Inorganic dust (free silica) Inorganic dust (no free silica)
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Blacksmiths Carbon dioxide Carbon monoxide Cyanides Heat Lead and its compounds Repeated motion, pressure vibration Ultraviolet and infrared rays
and
Blanket Makers Anthrax
Blasters Carbon monoxide Hydrogen sulphide Inorganic dust (free silica) Inorganic dust (no free si^ca) Nitrous fumes
Blast Furnace Workers Carbon dioxide Carbon monoxide Heat Hydrocyanic acid Hydrogen sulphide Phosphine Sulphur dioxide Ultraviolet and infrared rays
Bleachers Alkalis Chloride of lime Chlorine Chromium compounds Heat Hydrochloric acid Hydrofluoric acid Nitric acid Nitrous fumes Oxalic acid Ozone Phosgene Sulphur, dioxide Sudden variations of temperature
Bleaching Powder Makers Arsine Chloride of lime Chlorine Manganese compounds
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20 DIAGNOSIS OF OCCUPATIONAL DISEASES
Blenders (motor fuel) (see gasoline blenders)
Blockers (felt hats) Carbon monoxide Heat
Bloodera (tannery) Lead and its compounds
Blooming-Mill Workers (iron and steel)
Heat
Blowers (glass manufacturing) (see glass blowers)
Bf'wers-Out (zinc smelting) Heat Metal fume fever Zinc and its compounds
Blue Print Makers Chromium compounds
Blue Print Paper Makers Amino compounds of benzol, toluol and xylol Aniline Oxalic acid
Bluers (revolvers) Heat
Boiler Cleaners and Washers Carbon monoxide Dampness
Boiler-Room Workers Carbon dioxide Carbon monoxide Heat
Boneblack Makers Ammonia Phosphorus and its compounds
Bone Renderers, Extractors, etc. Acrolein Anthrax Heat Hydrocyanic acid Organic dust Sulphur dioxide
Bookbinders Acrolein Amyl acetate Arsenic and its compounds Lead and its compounds Methyl alcohol Oxalic acid
Bottle-Cap Makers Lead and its compounds
Bottlers (mineral water) Carbon dioxide Hydrogen sulphide
Brake-Lining Makers Asbestos dust Benzol and its homologues (toluol and xylol)
Brass Founders Antimony and its compounds Arsenic and its compounds Carbon dioxide Carbon monoxide Copper and its compounds Heat Inorganic dust (free silica) Lead and its compounds Metal fume fever Phosphorus and its compounds Sulphur dioxide Ultraviolet and infrared rays Zinc and its compounds
Brass Polishers (see also polishers and cleaners, metal)
Lead and its compounds
Braziers Heat Lead and its compounds Ultraviolet and infrared rays Zinc and its compounds
Brewers Amyl alcohol Carbon dioxide Carbon monoxide
S T0853824
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
21
Dampness Fungus infections Formaldehyde Heat Hydrofluoric add Phenol Sudden variations of temperature Sulphuric acid
Brick Burners Carbon dioxide Carbon monoxide Heat Lead and its compounds
Inorganic dust (no free silica) Lead and its compounds Manganese and its compounds Mercury and its compounds Methyl alcohol Petroleum hydrocarbons Zinc and its compounds
Broom Makers Anthrax Chlorine Formaldehyde Organic dust Sulphur dioxide
Brick Layers Inorganic dust (no free silica)
Browners (gun barrels) Phosphoric acid
Brick Makers Dampness Heat Hydrofluoric add Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds Magnesium and its compounds Manganese and its compounds Sulphur dioxide
Briquette Makers Arsenic and its compounds Tar and pitch
Bronze Powder Makers Acetone Lead and its compounds Zinc and its compounds
Bronzers Ammonia Amyl acetate Arsenic and its compounds Arsine Benzol Cyanides Hydrochloric acid Hydrocyanic acid Hydrogen sulphide
Brush Makers Anthrax Formaldehyde Lead and its compounds Methyl alcohol Organic dust Tar and pitch
Buffers Defective illumination Inorganic dust (free silica) Inorganic dust (no free silica) Organic dust
Buffers (rubber) Amyl acetate Ethyl acetate Lead and its compounds Petroleum hydrocarbons
Bulb (mercury) Makers Mercury and its compounds
Buoy Makers Phosphine
Burners (enameling) Heat Lead and its compounds t
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22 DIAGNOSIS OF OCCUPATIONAL DISEASES
Burnishers (metals) Antimony and its compounds Carbon tetrachloride Chlorinated hydrocarbons Defective illumination Petroleum hydrocarbons Sulphuric acid TrichloroethyIene
Burrers (needles) Heat Inorganic dust (free silica) Inorganic dust (no free silica)
Burr Filers Inorganic dust (free silica) Inorganic dust (no free silica)
Cable Splicers Acrolein Aliphatic hydrocarbons (methane, etc.) Carbon monoxide Cresol Dampness Electrical burns; electrical shock Hydrogen sulphide Lead and its compounds Petroleum hydrocarbons Phenol Poison ivy Turpentine
Cadmium Alloy Makers Cadmium and its compounds
Butchers Anthrax Dampness Erysipeloid Glanders Septic infections Sudden variations of temperature Tularaemia Undulant fever Weil's disease
Button Makers
Acetaldehyde Acetone Adds Chloride of lime Formaldehyde Fungus infections Inorganic dust (no free silica) Lead and its compounds Organic dust
Butyl Acetate Makers
Butyl alcohol
,
Butyl Alcohol Makers Butyl alcohol
Cable Makers Lead and its compounds
Cadmium and CadmiumCompound Makers
Arsine Cadmium and its compounds
Cadmium Platers (see also electroplaters)
Cadmium and its compounds
Caisson Workers Carbon dioxide Carbon monoxide Compressed air Dampness Defective illumination Hydrogen sulphide Sudden variations of temperature
Calcium Carbide Makers (see carbide makers)
Calcium Cyanamide Makers Calcium cyanamide Heat Inorganic dust (no free silica)
Calenderers (rubber) Inorganic dust (no free silica) Sudden variations of temperature
Calico Printers (see textile printers)
ST 0853826
24 DIAGNOSIS OF OCCUPATIONAL DISEASES
Carpet Cleaners Anthrax Chlorinated hydrocarbons Organic dust Petroleum hydrocarbons
Carpet Makers Anthrax Arsenic and its compounds Organic dust
Cattlemen Anthrax Undulant fever
Cellulose Makers Alkalis Dampness Hydrogen sulphide Sulphur dioxide Sulphuric add
Cartridge Cup Washers Dampness
Cartridge Dippers Hydrochloric acid Nitric add Nitrous fumes Sulphuric add
Cartridge Felt and Wad Makers Dampness
Cartridge Cap Operators Lead and its compounds Mercury and its compounds
Cartridge Shot Shell Paraffin Dippers
Dampness Sudden variations of temperature
Case Hardeners Cyanides Heat Hydrocyanic acid Ultra high frequency radiations
Casters (metal) (see foundry and also particular metal)
Casting Cleaners (foundry) (see also add dippers)
Inorganic dust (free silica) Inorganic dust (no free silica)
Cast Scrubbers (electroplaters) Benzol and its homologues (toluol and xylol) Petroleum hydrocarbons
Cellulose Products Makers (see rayon, pyroxylin plastics, lacquers)
Cementers (rubber) Benzol and its homologues (toluol and xylol) Butyl alcohol Carbon disulphide Carbon tetrachloride Ethyl acetate Chlorinated hydrocarbons Methyl alcohol Petroleum hydrocarbons Tetrachloroethane Trichloroethylene Turpentine
Cement (Portland) Workers Carbon monoxide Heat Inorganic dust (free silica) Inorganic dust (no free silica)
Cement (rubber, plastic, etc.) Mixers
Acetone Ammonia Amyl acetate Benzol and its homologues (toluol
and xylol) Carbon disulphide Carbon tetrachloride Chlorinated hydrocarbons Diethylene dioxide Ethyl acetate Lead and its compounds Petroleum hydrocarbons
ST0853827
OCCUPATIONS AND THBIR POTENTIAL HAZARDS
23
Candle Makers Acrolein Amino compounds of benzol, toluol and xylol Aniline Arsenic and its compounds Chromium and its compounds Sulphuric add
Gandy Makers Dermatitis Heat Sudden variations of temperature
Carbonated-Water Makers Carbon dioxide
Carbon Black Workers Heat Organic dust
Carbon Brush Makers Inorganic dust (no free silica) Organic dust
Carbon Dioxide Makers Carbon dioxide
Ganners Arsenic and its compounds Carbon dioxide Dampness Heat Lead and its compounds Sudden variations of temperature Septic infections
Can Sealers Benzol and its homologues (toluol and xylol)
Cap Loaders Mercury and its compounds
Cappers (window glass) Heat
Carbide Makers Acetylene Ammonia Carbon monoxide Heat Inorganic dust (no free silica) Organic dust Ultraviolet and infrared rays
Carbolic Add Makers Benzol and its homologues (toluol and xylol) Phenol Sulphur dioxide Sulphuric acid
Carbon Disulphide Makers Carbon disulphide Hydrogen sulphide
Garbonlzers (shoddy) Arsine Hydrochloric add Organic dust Sulphuric add
Carbon Paper Makers Organic dust
Carbon Printers (photography) Chromium compounds
Carbon Tetrachloride Workers Carbon disulphide Carbon tetrachloride Phosgene Sulphur chloride
Carders (asbestos) Asbestos dust
Carders (textiles) Organic dust
Card Grinders (textile) Inorganic dust (no free silica) Organic dust
Carpenters Organic dust Repeated motion, vibration
pressure
and
ST0853828
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
25
Pyridine Sulphur chloride Tar and pitch Tetrachloroethane
Ceramic Workers (see pottery workers)
Chamber-men (sulphuric acid) Sulphur dioxide Sulphuric add
Charcoal Burners Carbon dioxide Carbon monoxide Organic dust
Charcoal Workers Carbon monoxide Organic dust
Charcoal Workers (sugar refining) ` Heat
Sudden variations of temperature
Chargers (furnace) (see also particular metal)
Carbon monoxide Heat Inorganic dust (no free silica)
Chargers (smelting and refining) (see also particular metal)
Carbon monoxide Heat Inorganic dust (no free silica)
Chasers (steel) Inorganic dust (free silica) Inorganic dust (no free silica)
Chauffeurs Carbon monoxide Dampness Petroleum hydrocarbons Repeated pressure, motion and vibration Sudden variations of temperature
Chemists (analytical) Acetaldehyde Acetone Alkalis Antimony and compounds Arsenic and compounds Benzol and its homologues (toluol and xylol) Cadmium and its compounds Carbon disulphide Carbon monoxide Carbon tetrachloride Chlorinated hydrocarbons Chlorine Chromium and its compounds Cyanides Cyanogen and compounds Formaldehyde Hydrochloric acid Hydrogen sulphide Lead and its compounds Mercury and its compounds Methyl alcohol Nitric acid Nitrous fumes Petroleum hydrocarbons Phosphorus and its compounds Sulphuric acid Zinc and its compounds
Chemists (radium research) X-rays, radium and other radio active substances (radiothorium, mesothorium, etc.).
Chimney Masons Carbon monoxide
Chimney Sweepers Arsenic and its compounds Carbon monoxide Inorganic dust (no free silica) Tar and pitch
Chippers Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds
ST0853829
26 DIAGNOSIS OF OCCUPATIONAL DISEASES
Chloride of Lime Makers Chloride of lime Chlorine
Chlorinated Diphenyl Workers Chlorinated diphenyls
Chlorinated Naphthalene Workers Chlorinated naphthalenes
Chlorine Makers Chlorine Hydrochloric add Manganese and its compounds Mercury and its compounds
Chlorodiphenyl Users Chlorinated diphenyls
Chloroform Makers Acetone Carbon tetrachloride Chloride of lime Methyl chloride
Chrome Workers Chromium and its compounds
Chromium Platers (see also electroplaters)
Chromium and its compounds
Cigar Makers Fungus infections Lead and its compounds Nicotine and tobacco Organic dust
Clay and Bisque Makers (pottery) Dampness Inorganic dust (free silica) Inorganic dust (no free silica) Sudden variations of temperature
Clay-Plug Makers (pottery) Dampness Inorganic dust (no fi;ee silica)
Clay-Products Workers (see pottery workers)
Cleaners (metal) (see polishers and cleaners, metal)
Clerks Defective illumination Repeated motion, pressure vibration
and
Clothes Pressers Carbon monoxide Heat
doth Singers Carbon monoxide
Coal Carbonlzers Carbon monoxide Hydrogen sulphide Sulphur dioxide
Coal Miners (see miners)
Coal Passers Inorganic dust (no free silica) Organic dust
Coal Tar Workers (see also coke oven workers)
Amino compounds of benzol, toluol and xylol
Aniline Benzol and its homologues (toluol
and xylol) Carbon monoxide Cresol Cyanides Cyanogen compounds Heat Phenol Tar and pitch
Cobbers (asbestos) Asbestos
Cobblers
Anthrax Benzol and its homologues (toluol
and xylol) Carbon tetrachloride Organic dust Repeated motion, pressure and
vibration
I
ST0353830
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
27
Coin Makers Nickel Silver
Coke-Oven Workers (see also coal tar workers)
Ammonia Benzol and its homologues (toluol
and xylol) Carbon monoxide Heat Hydrogen sulphide Sulphur dioxide Tar and pitch
Cold Storage Plant Workers (see refrigerating plant workers)
Collar (fused) Makers Acetone Ethylene glycol monomethyl ether Methyl alcohol
Collodion Makers Nitric add Nitrous fumes
Coloured Paper Workers Arsenic and its compounds
Colourera (marble) Chromium compounds
Colourers (white) of Shoes Lead and its compounds
Colour Makers Amino compounds of benzol, toluol and xylol Ammonia Aniline Antimony and its compounds Arsenic and its compounds Benzol and its homologues (toluol and xylol) Brominated hydrocarbons (methyl bromide) Bromine Cadmium and its compounds Chlorinated hydrocarbons
Chlorine Chromium and its compounds Cobalt and its compounds Dimethyl sulphate Ethylene chlorohydrin Heat Iodine Inorganic dust (no free silica) Lead and its compounds Manganese and its compounds Mercury and its compounds Methyl chloride Naphthols Petroleum hydrocarbons Selenium compounds Sulphuric add Tetrachloroethane Thallium and its compounds
Comb Makers Acetone Ketones Organic dust
Compositors Alkalis Amino compounds of benzol, toluol and xylol Aniline Antimony and compounds Benzol and its homologues (toluol and xylol) Defective illumination Inorganic dust (no free silica) Lead and its compounds Petroleum hydrocarbons Repeated motion, pressure and vibration Turpentine
Compounders (rubber) Amino compounds of benzol, toluol and xylol Aniline Antimony and its compounds Arsenic and its compounds Benzol and its homologues (toluol and xylol) Chromium compounds
S TO 853831
28 DIAGNOSIS OF OCCUPATIONAL DISEASES
Hexamethylene tetramine Inorganic dust (no free silica) Lead and its compounds Organic dust Petroleum hydrocarbons
Compressed Air (caisson) Workers (see caisson workers)
Compressed Air (pneumatic tool) Workers
(see pneumatic tool workers)
Concentrating Mill Workers (see also oil flotation plant workers)
Dampness Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds Manganese and its compounds Selenium and its compounds
Confectioners (see candy makers)
Construction Workers Dampness Inorganic dust (free silica) Inorganic dust (no free silica)
Cooks Carbon monoxide Erysipeloid Septic infections Sudden variations of temperature Ultraviolet and infrared rays
Copper Founders Arsenic and compounds Copper and its compounds
Copper Miners (see miners)
Copper Refiners and Smelter Workers
Antimony and its compounds Arsenic and its compounds Carbon monoxide Copper and its compounds Heat Hydrofluoric acid
Lead and its compounds Manganese and its compounds Selenium compounds Sulphur dioxide Tellurium and compounds
Coppersmiths Arsenic and its compounds Copper and its compounds
Copper (strip) Roller-Mill Workers Acrolein
Cordage Factory Workers Anthrax Tar and pitch
Core Makers Acrolein Carbon monoxide Carbon tetrachloride Heat Inorganic dust (free silica) Inorganic dust (no free silica) Zinc and its compounds
Cork Workers Organic dust
Corn-Products Workers Dampness Heat Sudden variations of temperature
Cosmetic Workers Arsenic and its compounds Ethylene glycol monomethyl ether Mercury and its compounds Nitrobenzol Nitro compounds of benzol, toluol and xylol
Cotton Mill Workers Byssinosis Dampness Heat Inorganic dust (no free silica) Organic dust
Cottonseed-Oil Workers Heat
ST0853832
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
29
Cotton Twitters Organic dust
' Repeated motion, vibration
pressure
and
Cranemen (glass industry) Heat
Cranemen (iron and steel) Acrolein Carbon monoxide Heat Inorganic dust (free silica)
Cranemen (non-ferrous) Arsenic and compounds Heat Inorganic dust (free silica) Lead and compounds Metal fume fever Selenium and compounds Sulphur dioxide Zinc and compounds
Crayon (coloured) Makers Chromium and its compounds Lead and its compounds
Creoaotlng-Plant Workers Cresol Dampness Phenol Tar and pitch
Cresol-Soap Makers Cresol
Cresylic Acid Makers Cresol
Crucible Mixers Inorganic dust (no free silica) Organic dust
Crucible-Steel-Department Employees
Heat
Crushermen (clay and stone) Inorganic dust (free silica) Inorganic dust (no free silica)
Crushers (asbestos) Asbestos dust
Cupola Men (foundries) Carbon dioxide Carbon monoxide Heat
Curers, Vapour (rubber) (see vulcanizers)
Curriers (tannery) Anthrax Arsenic and compounds Organic dust Petroleum hydrocarbons
Cut-Glass Workers Arsenic and its compounds Inorganic dust (no free silica) Lead and its compounds
Cutlery Makers Amyl acetate Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds
Cutters (oxyacetyiene and other gases) (see welders)
Cyanamide Makers Calcium cyanamide Heat Inorganic dust (no free silica)
Cyanide Workers Ammonia Cyanides Hydrocyanic add
Cyanogen Makers Cyanogen Hydrogen sulphide Mercury and its compounds
Dairy Workers Anthrax Undulant fever
ST0853833
30 DIAGNOSIS OF OCCUPATIONAL DISEASES
Damascening Workers Nitric acid Nitrous fumes
Depilatory Makers Barium and its compounds Thallium and its compounds
Dancers Repeated motion, pressure and vibration
De-Brassers Nitric add Nitrous fumes
Decorators (pottery) Arsenic and its compounds Benzol and its homologues (toluol and xylol) Lead and its compounds Mercury and its compounds Petroleum hydrocarbons Turpentine
Degreasers Benzol and its holomogues (toluol and xylol) Carbon disulphide Carbon tetrachloride Chlorinated hydrocarbons Chlorinated naphthalenes Cycloparaffins Dichloroethyl ether Diethylene dioxide Ethylene dichloride Methylene chloride Petroleum hydrocarbons Tetrachloroethane Tetrachloroethylene Trichloroethylene
Denatured-Alcohol Workers (see particular denaturant)
Dental Workers Lead and its compounds Mercury and its compounds
Dentists Mercury and its compounds X-rays, radium and other radio active substances
Detlnning Workers Chlorine
Detonator Cleaners Mercury and its compounds
Detonator Fillers Mercury and its compounds
Detonator Packers Mercury and its compounds
Diamond Cutters Inorganic dust (no free silica) Organic dust Repeated motion, pressure vibration
and
Diamond Polishers Lead and its compounds
Dlatomaceous Earth Workers. Inorganic dust (free silica)
Digester-House Workers (paper and pulp)
Heat Hydrogen sulphide Sudden variations of temperature Sulphur dioxide
Dimethyl Sulphate Makers Arsine Dimethyl sulphate Methyl alcohol Nitric acid Nitrous fumes Sulphuric acid
Dinitrobenzol Workers Benzol Nitric acid Nitrobenzol Nitro compounds of benzol, toluol and xylol Nitrous fumes
ST 085383U
OCCUPATIONS AND THBIR POTENTIAL HAZARDS
31
Dinitrophenol Workers Dinitrophenol Nitric add Nitrous fumes Phenol
Dloxan Users Diethylene dioxide
Dippers (gun cotton) Nitric add Nitrous fumes
Dippers (rubber) Benzol and its homologues (toluol and xylol) Carbon tetrachloride Petroleum hydrocarbons
Thallium and its compounds Trichloroethylene Trinitrophenol Ultraviolet rays
Divers Carbon dioxide Carbon monoxide Compressed air (increased atmos pheric pressure)
Doffera (textile) Dampness Heat Organic dust
Dope Workers (see aeroplane dope workers)
Dippers (see also add dippers)
Dish-Washers Fungus infections
Disinfectant Makers (see also insectidde makers)
Acetaldehyde Amino compounds of benzol, toluol
and xylol Aniline Arsenic and its compounds Benzol and its homologues (toluol
and xylol) Brominated hydrocarbons Bromine Carbon dioxide Chloride of lime Chlorine Chlorobenzols Cresol Cyanides Cyanogen Formaldehyde Glycols Hydrocyanic add Mercury and its compounds Ozone Phenol Sulphur dioxide
Dressers (glass) Heat
Dresser Tenders (textile) Dampness Heat Sudden variations of temperature
Driers (lacquer) Amyl acetate Ethyl acetate Ketones Methyl alcohol Petroleum hydrocarbons Infrared rays
Driers (rubber) Benzol and its homologues (toluol and xylol) Carbon disulphide Petroleum hydrocarbons
Drier Workers (foundry) Carbon monoxide
Drillers (rock) Inorganic dust (free silica) Inorganic dust (no free silica)
Drivers (see chauffeurs)
ST0853835
32 DIAGNOSIS OF OCCUPATIONAL DISEASES
Drop Former* Heat
Dry Cleaners
Amyl acetate Benzol and its homologues (toluol
and xylol) Carbon disulphide Carbon tetrachloride Chlorinated hydrocarbons Ethylene dichloride Methyl alcohol Oxalic add Petroleum hydrocarbons Sudden variations of temperature Tetrachloroethane Tetrachloroethylene Trichloroethylene Turpentine
Drying Room Workers (miscellaneous)
Carbon dioxide Carbon monoxide Sudden variations of temperature
Dye Makers
Acetaldehyde Acetone Acridine Alkalis Amino compounds of benzol, toluol
and xylol Ammonia Aniline Antimony and its compounds Aromatic hydrocarbons Arsenic and its compounds Arsine Barium and its compounds Benzol Brominated hydrocarbons (ethyl
bromide, methyl bromide) Bromine Butyl alcohol Carbon dioxide Carbon tetrachloride
Chloride of lime Chlorinated hydrocarbons Chlorine Chlorobenzols Chromium compounds Cresol Cyanides Diethylene dioxide Dimethyl sulphate Dinitrophenol Ethylene chlorohydrin Ethylene glycol monomethyl ether Formaldehyde Formic acid Furfural Heat Hydrochloric add Hydrogen sulphide Lead and its compounds Manganese and its compounds Mercury and its compounds Methyl alcohol
Methyl chloride Methylene chloride Naphthols Nitric add Nitrobenzol
Nitro compounds of benzol, toluol and xylol
Nitrous fumes Oxalic acid Phenol Phenyl hydrazine Phosgene
Pyridine Sudden variations of temperature Sulphur dioxide
Sulphuric add
Thallium and its compounds Toluol
Trichloroethylene Trinitrophenol Turpentine Uranium and its compounds
Vanadium and its compounds Xylol
ST0853836
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
33
Dyers (see also mordanters and other preparatory process workers)
Acetone Amino compounds of benzol, toluol
and xylol Ammonia Amyl acetate Aniline Antimony and its compounds Aromatic hydrocarbons Arsenic and its compounds Chlorinated hydrocarbons Chromium and its compounds Ethylene dichloride Formaldehyde Hydrochloric acid Hydrofluoric add Lead and its compounds Manganese and its compounds Methyl alcohol Nitric add Nitrous fumes Oxalic add Petroleum hydrocarbons Phenol Pyridine Sudden variations of temperature Sulphur chloride Titanium oxide Trinitrophenol Uranium and its compounds Vanadium and its compounds
Electrical Condenser Makers Chlorinated diphenyls Chlorinated naphthalenes
Electrical Transformer Makers Chlorinated diphenyls Chlorinated naphthalenes
Electricians Electrical burns; electrical shock Ozone Ultraviolet and infrared rays
Electric Induction Furnace Workers
Mercury and its compounds
10893--3 '
Electric Linemen (see also cable splicers)
Dampness Electrical burns; electrical shock Ultraviolet and infrared rays
Electrode Makers Organic dust Tar and pitch
Electrolytic Process (copper) Workers
Arsine
Electroplaters Alkalis Antimony and its compounds Arsenic and its compounds Arsine Benzol and its homologues (toluol and xylol) Cadmium and its compounds Carbon disulphide Carbon tetrachloride Chlorinated hydrocarbons Chlorinated naphthalenes Chromium compounds Cyanides Dampness Formic acid Hydrochloric add Hydrocyanic acid Hydrofluoric acid Lead and its compounds Mercury and its compounds Nickel and its compounds Nitric acid Nitrous fumes Petroleum hydrocarbons Sulphuric add Tetrachloroethane Trichloroethylene
Electrotypers (see also electroplaters) Ammonia Antimony and its compounds Inorganic dust (no free silica) Lead and its compounds Organic dust Sudden variations of temperature
$10853837
34 DIAGNOSIS OF OCCUPATIONAL DISEASES
Elevator Operators Repeated motion, pressure and vibration
Embaimers Formaldehyde Mercury and its compounds
Embalming Fluid Makers Mercury and its compounds
Embossers Mercury and its compounds
Embroidery Workers Defective illumination Lead and its compounds
Emery Wheel Makers Inorganic dust (no free silica) Lead and its compounds
Enamelers Amyl acetate Antimony and its compounds Arsenic and its compounds Benzol and its homologues (toluol and xylol) Carbon disulphide Carbon monoxide Chlorinated hydrocarbons Chromium and its compounds Dampness Ethyl acetate Heat Inorganic dust (free silica) Lead and its compounds Manganese and its compounds Nickel and its compounds Petroleum hydrocarbons Repeated motion, pressure and vibration
. Tetrachloroethane Turpentine
Enamel Makers Amyl'acetate Antimony and its compounds Arsenic and its compounds Barium and its compounds
Benzol and its homologues (toluol and xylol)
Carbon disulphide Carbon monoxide Chlorinated hydrocarbons Chromium compounds Ethyl acetate Ethylene glycol monomethyl ether Hydrochloric acid Hydrofluoric add Lead and its compounds Manganese and its compounds Nitric acid Nitrous fumes Petroleum hydrocarbons Tetrachloroethane Turpentine
Engineers (stationary) Carbon monoxide Heat Inorganic dust (no free silica) Sudden variations of temperature
Engravers Alkalis Benzol and its homologues (toluol and xylol)
Copper and its compounds Defective illumination Hydrochloric add Inorganic dust (no free silica) Lead and its compounds Mercury and its compounds Nitric add Nitrous fumes Oxalic acid Repeated motion, pressure and vibration Sulphuric add
Etchers Arsine' Hydrochloric add Hydrofluoric add ' Nitric acid Nitrous fumes Phenol Sulphuric add
ST0853838
OCCUPATIONS AND THE1K POTENTIAL HAZARDS
35
Ethyl Benzene Makers Ethyl benzene
Ethyl Bromide Users Brorainated hydrocarbons (ethyl bromide)
Ethyl Chloride Users Chlorinated hydrocarbons (ethyl chloride)
Ethylene Dibromlde Users Brominated hydrocarbons (ethylene dibromide)
Ethylene Dichloride Users Ethylene dichloride
Ethylene Oxide Users Ethylene oxide
Examiners Using Fluoroscope or X-Ray
X-rays
Excavation Workers Inorganic dust (free silica)
Explosives Workers (see also partic ular occupation)
Acetaldehyde Acetone Amino compounds of benzol, toluol
and xylol Ammonia Amyl acetate Amyl alcohol Aniline Antimony and its compounds Benzol and its homologues (toluol
and xylol) Bromine Carbon dioxide Carbon disulphide Chromium and its compounds Cresol Dampness Dinitrophenol Formaldehyde
10893--3i
Lead and its compounds Mercury and its compounds Methyl alcohol Nitric add Nitrobenzene Nitro compounds of benzol, toluol
and xylol Nitroglycerine Nitrous fumes Phenol Phosphorus and its compounds Pyridine Sulphuric acid Tetryl Trinitrophenol
Exterminators and Fumigators . (see insectidde makers)
Extractor Operators (soap) Dampness Sudden variations of temperature
Extractors (gold and silver) (see gold and silver refiners and extractors)
Extractors (oils and fats) Acetone Alcohols Benzol and its homologues (toluol and xylol) Carbon disulphide Chlorinated hydrocarbons Cydoparaffins Ethylene dichloride Petroleum hydrocarbons Tetrachloroethane Trichloroethylene
Farmers Anthrax Arsenic and its compounds Calcium cyanamide Cyanides D.D.T. 2, 4-D Fungus infections Glanders Lead and its compounds
(
s T 0 8 53839
36 DIAGNOSIS OF OCCUPATIONAL DISEASES
Mercury compounds Nicotine Phosphorus and its compounds Septic infections Tetanus ! Tularaemia Undulant fever
Fat Renderero Acrolein Anthrax Heat Hydrogen sulphide Magnesium and its compounds Ozone Sudden variations of temperature Sulphuric add
Fea_her Gurers Arsenic and its compounds Organic dust
Feather Workers Amino compounds of benzol, toluol and xylol Aniline Arsenic and its compounds Benzol and its homologues (toluol and xylol) Methyl alcohol Organic dust Petroleum hydrocarbons Septic infections Sulphur dioxide Turpentine
Felt Hat Makers Carbon monoxide Heat Mercury and its compounds Methyl alcohol Nitric add Nitrous fumes Organic dust Sudden variations of temperature Sulphuric add
Felt Makers Anthrax Heat Hydrogen sulphide
Ferrosillcon Workers Arsenic and its compounds Arsine Inorganic dust (free silica) Phosphine
Fertilizer Makers (see also phosphate mill workers)
Acrolein Ammonia Anthrax Arsenic and its compounds Arsine Benzol and its homologues (toluol
and xylol) Calcium cyanamide Carbon dioxide Cyanides Dampness Hydrochloric add Hydrofluoric add Hydrogen sulphide Inorganic dust (free silica) Inorganic dust (no free silica) Magnesium and its compounds Manganese and its compounds Nicotine Nitric add Nitrous fumes Organic dust Phosphorus and its compounds Septic infections Sulphur dioxide Sulphuric add
Fiberizers (asbestos) Asbestos dust
Fiber Workers Organic dust
ST0853840
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
37
Filament Makers and Finishers (incandescent lamps)
Amyl acetate Carbon monoxide Methyl alcohol Thallium and its compounds
Firemen (stationary) Carbon monoxide Heat Inorganic dust (no free silica) Sudden variations of temperature Ultraviolet and infrared rays
Tile Makers Inorganic dust (free silica) Inorganic dust (no free silica)
.FUe
Antimony and its compounds Inorganic dust (no free silica) Lead and its compounds
FUling Station Workers Carbon monoxide Lead and its compounds Petroleum hydrocarbons Tetraethyl lead
Film Makers (see photographic film makers)
Filter Press Workers Dampness
Finishers (leather) Organic dust
Fire Extinguisher Makers Brominated hydrocarbons (ethyl bromide, ethylene dibromide, methyl bromide) Carbon dioxide Carbon tetrachloride Chlorinated hydrocarbons (ethyl chloride) .
Firemen (city) Acrolein Carbon monoxide Dampness Heat Phosgene Sudden variations of temperature Sulphur dioxide
Fireworks Makers (see also explosive workers)
Antimony and its compounds Arsenic and its compounds Barium and its compounds Manganese and its compounds Mercury and its compounds Phosphorus and its compounds Thallium and its compounds Trinitrophenol
Fishermen
Dampness Septic infections Sudden variations of temperature Tar and pitch
Flatteners (glass) Heat
Flavouring Extract Makers
Amyl acetate
Amyl alcohol
i
Benzol and its homologues (toluol
and xylol)
Butyl alcohol
Nitrobenzol
Nitro compounds of benzol, toluol
and xylol
Flax-Rettery Workers Hydrogen sulphide
Flax Spinners Heat Organic dust
Flint Workers Inorganic dust (free silica) Inorganic dust (no free silica)
Floor Polish Makers (see polish makers)
ST085384 I
'38 DIAGNOSIS OF OCCUPATIONAL DISEASES
Flour Mill Workers Fungus infections Organic dust
Flue Gleaners Carbon monoxide Inorganic dust (no free silica)
-. Sulphur dioxide Tar and pitch
Flue Dust Recoverers (sulphuric add manufacturing)
Thallium and its compounds
Fluorescent Lamp Makers Beryllium and its compounds
Flush Tenders (aluminum) Dampness
Fly Paper Makers Arsenic and its compounds
Food Irradiators Ultraviolet and infrared rays
Forgemen Heat
Formaldehyde Workers Formaldehyde
Formic Add Workers Formic add Oxalic add
Foundry Workers (see also particular metal)
Carbon dioxide Carbon monoxide Heat Inorganic dust (free silica) Inorganic dust (no free silica) Ultraviolet and infrared rays
Freight Handlers Anthrax
Frosters (glass and pottery) Chromium compounds
Fruit Essence Makers (see flavouring extract makers)
Fruit Preservers Sulphur dioxide
Fullers (textiles) Benzol and its homologues (toluol and xylol) Carbon tetrachloride Chlorinated hydrocarbons Dichloroethyl ether Tetrachloroethane
Fulminate Mixers Hydrocyanic acid Mercury and its compounds Nitric add Nitrous fumes
Fumigant Makers (see insecticide makers)
Fumigators and Exterminators (see insectidde makers)
Fur Carders Anthrax Organic dust
Fur Clippers Anthrax Organic dust
Fur Cutters Anthrax Organic dust
Fur Handlers Amino compounds of benzol, toluol and xylol Anthrax Hydrogen sulphide Mercury and its compounds Organic dust
Furnace Workers (see also particular . metal) Carbon dioxide
ST0853842
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
39
Carbon monoxide Heat Inorganic dust (no free silica) Ultraviolet and infrared rays
Furnace Workers (bauxite) Inorganic dust and fume (Group IV) Ultraviolet and infrared rays
Furniture Polishers Amyl acetate Chromium compounds Methyl alcohol Organic dust Petroleum hydrocarbons Repeated motion, pressure vibration Turpentine
and
Fur Preparers Anthrax Formaldehyde Mercury and its compounds Nitric acid Nitrous fumes Organic dust
Fur Pullers Anthrax Organic dust
Fusel Oil Workers Amyl alcohol
Fused Quartz Workers Inorganic dust (free silica)
Galvanizers Acrolein Ammonia Arsenic and its compounds Arsine Dampness Heat Hydrochloric acid Lead and its compounds Metal fume fever Nitric acid Nitrous fumes
Petroleum hydrocarbons Sulphur dioxide Sulphuric acid Trichloroethylene Zinc and its compounds
Garage Workers Acrolein Carbon monoxide Lead and its compounds Oxalic add Petroleum hydrocarbons Tetraethyl lead
Gardeners Arsenic and its compounds Caldum cyanamide Cyanides D.D.T. 2, 4-D. Lead and its compounds Nicotine Phosphorus compounds Tetanus Undulant fever
Gas (illuminating) Workers Ammonia Arsine Benzol and its homologues (toluol and xylol) Carbon monoxide Heat Hydrocyanic add Hydrofluoric add Hydrogen sulphide Phenol Sudden variations of temperature Tar and pitch Trichloroethylene
Gasoline Blenders Aliphatic hydrocarbons Amino compounds of benzol, toluol and xylol Aniline
< Benzol and its homologues (toluol and xylol)
ST0853843
40 DIAGNOSIS OF OCCUPATIONAL DISEASES
Brominated hydrocarbons (ethylene dibromide)
Ethyl benzene Lead and its compounds Nitrobenzol Nitro compounds of benzol, toluol
and xylol Petroleum hydrocarbons Tetraethyl lead
Gasoline Engine Workers Acrolein Carbon monoxide Petroleum hydrocarbons
Gas Purifiers Ammonia Hydrocyanic add Hydrogen sulphide Phenol
Gassers (textile) Carbon monoxide
Gatherers (glass) Heat
Gelatine Makers Acrolein Anthrax Sulphur dioxide
Germicide Makers (see disinfectant makers)
Gliders Amyl acetate Benzol and its homologues (toluol and xylol) Cyanides Ethyl acetate Mercury and its compounds Methyl alcohol Nitric add Nitrous fumes Petroleum hydrocarbons Pyridine
Glass Blowers Heat Inorganic dust (no free silica) Ultraviolet and infrared rays
Glass Colourers Cadmium compounds Chromium compounds Cobalt compounds Selenium compounds Tellurium compounds Thallium compounds
Glass Cutters Dampness Inorganic dust (no free silica)
Glass Etchers Formaldehyde Hydrofluoric add
Glass Finishers Dampness Hydrochloric add Hydrofluoric acid Inorganic dust (no free silica) Lead and its compounds Sulphuric add
Glass Furnace Workers (see also glass mixers)
Carbon monoxide Heat Inorganic dust (free silica) Inorganic dust (no free silica) Ultraviolet and infrared rays
Glass Mixers Alkalis Antimony and its compounds Arsenic and its compounds Barium and its compounds Hydrochloric add Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds Magnesium and it compounds Manganese and its compounds Selenium and its compounds Thallium and its compounds Uranium and its compounds Vanadium and its compounds
Glass Polishers Lead and its compounds
ST0853844
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
41
Glass (safety) Makers Butyl alcohol Chlorinated hydrocarbons Methyl alcohol Tetrachloroethane
Glaze Dippers (pottery) Antimony and its compounds Arsenic and its compounds Chromium compounds Dampness Hydrochloric acid Lead and its compounds Manganese and its compounds
Glaze Mixers (pottery) Antimony and its compounds Arsenic and its compounds Chromium and its compounds Hydrochloric acid Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds Manganese and its compounds
Glost-Kiln Workers Carbon monoxide Lead and its compounds Sudden variations of temperature
Glove Makers (leather preparers) (see also tannery workers)
Dampness Organic dust
Glue Workers Acrolein Ammonia Anthrax Benzol and its homologues (toluol . and xylol) Carbon dioxide Carbon disulphide Carbon tetrachloride Chlorinated hydrocarbons Cresol Dampness Hydrochloric acid Hydrogen sulphide
Nitrobenzo! Nitro compounds of benzol, toluol
and xylol Organic dust Petroleum hydrocarbons Septic infections Sudden variations of temperature Sulphur dioxide Sulphuric add Trichloroethylene
Glycerine Refiners Oxalic acid
Gold Beaters Inorganic dust (no free silica) Repeated motion, pressure vibration
and
Gold and Sliver Refiners Extractors
Arsenic and its compounds Arsine Bromine Chlorine Cyanides Formaldeyhde Hydrocyanic add Hydrofluoric add Inorganic dust (no free silica) Lead and its compounds Mercury and its compounds Sulphur chloride
and
Grain Elevator Workers Carbon dioxide Fungus infections Organic dust
Granite Workers (see stone-cutters)
Graphite Workers Heat Inorganic dust (no free silica) Organic dust
Grinders (colours) (see colour makers)
ST08538U5
42 DIAGNOSIS OF QCCUPATIONAL DISEASES
Grinders (metals) Antimony and its compounds Dampness Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds Repeated motion, pressure vibration
and
Grinders (rubber) Antimony and its compounds Lead and its compounds Organic dust
Grinding Wheel Makers Inorganic dust (free silica) Inorganic dust (no free silica)
Grooms Fungus infections
. Glanders Septic infections Tetanus
Guncotton Dippers Nitric add Nitrous fumes Sulphuric add
Guncotton Pickers Organic dust
Guncotton Washers Dampness
Gypsum Workers Hydrogen sulphide Inorganic dust (no free silica) Sudden variations of temperature
Hair Workers Anthrax Dampness Mercury and its compounds Organic dust Septic infections
Hammermen Repeated motion,: pressure and vibration
Hardeners (see temperas)
Harness Makers Organic dust
Hat Makers (felt) (see felt hat makers)
f
Heel Makers (shoe) Organic dust
Hemp Workers Organic dust
Hide Workers Alkalis Anthrax Chromium compounds Fungus infections Septic infections
Horn Workers Organic dust
Hothouse Workers (see also gardeners)
Arsenic compounds Cyanides D.D.T. 2, 4-D. Lead compounds Nicotine Phosphorus compounds Sudden variations of temperature
Hot Rod Rollers (iron and steel) Heat
Housemaids Alkalis Chlorinated hydrocarbons Repeated motion, pressure vibration
and
House Wreckers Inorganic dust (free silica) Inorganic dust (no free silich)
Hydraulic Construction Workers Dampness
ST0853846
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
43
Hydraulic Miners Dampness
Hydrochloric Add Makers
Arsine Hydrochloric add Hydrogen sulphide Sulphuric add
Hydrocyanic Add Makers Cyanides Hydrocyanic add Sulphuric add
Hydrofluoric Add Makers Hydrofluoric add
Ice (artificial) Makers (see artificial ice makers)
Ice Cream Makers Ammonia Carbon dioxide Dampness Sudden variations of temperature
Incandescent Lamp Makers also particular occupation)
Amyl acetate
Carbon monoxide Lead and its compounds Mercury and its compounds Methyl alcohol Thallium and its compounds
(see
Incandescent Mantle Hardeners Hydrofluoric add Pyridine Thorium and its compounds
Ink Makers Alkalis Ammonia Arsenic and its compounds Barium compounds Benzol and its homotogues (toluol and xylol) Brominated hydrocarbons (methyl bromide)
Bromine Carbon monoxide Carbon tetrachloride Chlorinated hydrocarbons
Chlorine Chromium compounds Cresol Ethylene glycol monomethyl ether
Formaldehyde Glycols Hydrochloric add Lead and its compounds Mercury and its compounds Methyl alcohol Nitrobenzol Nitro compounds of benzol, toluol
and xylol Oxalic add Petroleum hy'i ^carbons
Silver compounds Turpentine Vanadium compounds
Insecticide Makers (see also disinfectant makers)
Arsenic compounds Barium compounds Bromine Carbon dioxide Carbon disulphide Carbon monoxide Carbon tetrachloride Chlorinated hydrocarbons Chlorobenzols Cresol Cyanides D.D.T. Diethylene dioxide Ethylene dichloride Ethylene oxide Formaldehyde Hydrocyanic add Lead and its compounds Mercury and its compounds Methyl formate
Nicotine
Nitric add
Nitrous fumes
.
ST0853847
44 DIAGNOSIS OF OCCUPATIONAL DISEASES
Petroleum hydrocarbons Phosphorus compounds Sulphur chloride Sulphur dioxide Tetrachloroethane Thallium compounds Trichloroethylene Turpentine
Inspectors Using Fluoroscope or X-Ray
X-rays, radium and otherradioactive substances (radiothorium, mesothorium, etc.)
Instrument Dial (luminous) Painters
X-rays, radium and other radioac :ve substances (radiothorium, mesothorium, etc.)
Insulation (sound, heat) Workers Asbestos dust Inorganic dust (free silica) Inorganic dust (no free silica)
Insulators (wire) Antimony and its compounds Arsenic and its compounds Benzol and its homologues (toluol and xylol) Carbon tetrachloride Chlorinated diphenyls Chlorinated hydrocarbons Chlorinated naphthalenes Ethylene dichloride Tar and pitch
Iodine Makers Chlorine
Iron and Steel Workers (all departments) (see also particular occupation and alloy makers)
Arsenic and its compounds Carbon monoxide Heat Inorganic dust (no free silica) Titanium dioxide Ultraviolet and infrared rays
Ironers Carbon monoxide Repeated motion, pressure and vibration Sudden variations of temperature
Irradiators (food) Ultraviolet rays
Japan Makers Arsenic and its compounds Lead and its compounds Methyl alcohol Petroleum hydrocarbons Sudden variations of temperature Turpentine
Japanners Arsenic and its compounds Lead and its compounds Methyl alcohol Petroleum hydrocarbons Turpentine
Jewelers Amyl acetate Arsine Cyanides Defective illumination Hydrochloric acid Inorganic aust (ho free silica) Lead and its compounds Mercury and its compounds Nitric acid Nitrous fumes Repeated motion, pressure vibration Sulphuric acid
and
Junk (metal) Refiners Heat Inorganic dust (no free silica) Lead and its compounds Metal fume fever Zinc and its compounds
Jute Workers Inorganic dust (free silica) Inorganic dust (ho free silica) Organic dust
ST 0853848
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
45
yiln Tenders Carbon monoxide Heat
Knitters Repeated motion, pressure and vibration
Knitting Mill Workers Organic dust
Labelers (paint cans) Lead and its compounds
Laboratory Workers (see also chemists)
Carbon monoxide Mercury and its compounds
Laboratory Workers (radium research)
X-rays, radium and other radio active substances (radiothorium, mesothorium, etc.)
Lace Makers Organic dust
Lacquerers Acetone Amyl acetate Amyl alcohol Arsenic and its compounds Benzol and its homologues (toluol and xylol) Chlorobenzols Ethyl acetate Ethyl benzene Formic acid Ketones Lead and its compounds Methyl alcohol Petroleum hydrocarbons Pyridine Triorthocresyl phosphate Turpentine
Lacquer Makers Acetaldehyde Acetone
Ammonia Amyl acetate Amyl alcohol Arsenic and its compounds Barium compounds Benzol and its homologues (toluol
and xylol) Butanone Butyl alcohol Chlorinated diphenyls Chlorinated naphthalenes Chlorobenzols Diethylene dioxide Ethylene chlorohydrin Ethylene glycol monoethyl ether Ethylene glycol monomethyl ether Formaldehyde Formic add Ketones (hexone, hexanone) Lead and its compounds Methyl alcohol Nitric acid Nitrous fumes Pentanone Petroleum hydrocarbons Propyl alcohol Pyridine Triorthocresyl phosphate Turpentine
Lampblack Makers Organic dust Petroleum oils Phenol
Lamps (electric) (see incandescent lampmakers)
Lapidaries Inorganic dust (no free silica)
Lard Makers Acrolein
Lasters (shoes) Dampness Methyl alcohol Organic dust Sudden variations of temperature
ST0853849
46 DIAGNOSIS OF OCCUPATIONAL DISEASES
Lathe Turners Repeated motion, pressure and vibration
Laundry Workers Carbon monoxide Chloride of lime Chlorine Dampness Formaldehyde Heat Ozone Sudden variations of temperature
Lead Arsenate Makers Arsenic and its compounds Lead and its compounds
Leather Workers (see also tannery workers)
Amino compounds of benzol,, toluol and xylol
Amyl acetate Anthrax Barium compounds Carbon tetrachloride Chlorinated hydrocarbons Chromium and its compounds Hydrochloric add Methyl alcohol Organic dust Trichloroethylene
Lehr Tenders (glass) Heat
Lead Burners Arsine Lead and its compounds
Leadfoil Makers Heat Lead and its compounds
Letter Sorters Defective illumination Repeated motion, pressure vibration
and
Levermen (iron and steel) Heat
Lead Miners (see also miners) Lead and its compounds
Lead Pipe Makers Lead and its compounds
Lead Platers (on iron) Mercury and its compounds
Lead Salts Makers Lead and its compounds
Lead Smelter Workers Antimony and its compounds Arsenic and its compounds Cadmium and its compounds Carbon monoxide Heat Lead and its compounds Selenium and its compounds Sulphur dioxide Tellurium and its compounds
Lime Burners Arsine Carbon dioxide Carbon monoxide Heat Inorganic dust (no free silica) Selenium compounds
Lime Kiln Chargers Carbon dioxide Carbon monoxide Inorganic dust (no free silica)
Lime Pullers (tannery) 1 Anthrax
Dampness
Lime Workers Inorganic dust (no free silica)
Linen Workers Organic dust
ST 0853850
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
47
Linoleum Makers Acrolein Amyl acetate Arsenic and its compounds Barium compounds Benzol and its homologues (toluol and xylol) Carbon tetrachloride Chlorinated hydrocarbons Chromium compounds Dampness Ethylene chlorohydrin Heat Inorganic dust (no free silica) Lead and its compounds Manganese compounds Methyl alcohol Organic dust Petroleum hydrocarbons Sudden variations of temperature Sulphuric acid Turpentine
Llnotypers Antimony and its compounds Carbon monoxide Lead and its compounds
Linseed Oil Boilers Acrolein Carbon dioxide Lead and its compounds
Litharge Workers Lead and its compounds
Lithographers Amino compounds of benzol, toluol and xylol Aniline Arsenic and its compounds Benzol and its homologues (toluol and xylol) Chromium compounds Glycols Hydrochloric acid Inorganic dust (no free silica) Lead and its compounds Mercury and its compounds
Methyl alcohol Nitric add Nitrous fumes Oxalic add Petroleum hydrocarbons Repeated motion, pressure
vibration Sulphuric add Tetrachloroethane Turpentine
and
Llthopone Makers Barium and its compounds Cadmium and its compounds
Lithotransfer Workers Lead and its compounds
Locksmiths Repeated motion, pressure and vibration
Longshoremen Anthrax Manganese compounds Weil's disease
Luminous Dial Factory Workers X-rays, radium, and other^radio active substances (radiothorium, mesothorium, etc.)
Luters (zinc smelting) Heat Metal fume fever Zinc and its compounds
Lye Makers Alkalis
Machinists Petroleum oils Repeated motion, vibration
pressure
and
Magnesium Alloy Makers Magnesium and its compounds
Mail Sorters Defective illumination Repeated motion, pressure vibration
and
ST085385 I
48 DIAGNOSIS OF OCCUPATIONAL DISEASES
Manganese Dioxide Workers Manganese and its compounds
Manganese Grinders Manganese and its compounds
f Manganese Ore Separators
Manganese and its compounds
Manganese Steel Makers Manganese and its compounds
Manometer Makers Mercury and its compounds
Manure Handlers Septic infections Tetanus Undulant fever
Marble Cutters Inorganic dust (no free silica)
Masons Dampness Inorganic dust (free silica) Inorganic dust (no free silica) Repeated motion, pressure vibration
and
Masseurs Fungus infections Septic infections
Match Factory Workers Alkalis Antimony and its compounds Carbon disulphide Chromium compounds Dampness Hydrogen sulphide Inorganic dust (no free silica) Lead and its compounds Manganese compounds
. Organic dust Phosphorus and its compounds
Mattress Makers Anthrax Organic dust
Meat Inspectors Anthrax Erysipeloid Fungus infections Septic infections Undulant fever
Meat Packing Employees (see packing house employees and slaughterhouse workers)
Mechanics (gas engines) Carbon monoxide Petroleum hydrocarbons Petroleum oils
Melters (foundry, glass) Heat
Mercerizers Alkalis Hydrochloric acid Sulphuric acid
Mercury Alloy Makers Mercury and its compounds
Mercury Boiler Workers Mercury and its compounds
Mercury Bronzers Mercury and its compounds
Mercury Pump Workers Mercury and its compounds
Mercury Salt Workers Mercury and its compounds
Mercury Solder Workers Mercury and its compounds
Mercury Still Cleaners Mercury and its compounds
Mercury Switch Makers Mercury and its compounds
Mercury Vapour Lamp Makers Mercury and its compounds
ST 0853852
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
49
Metallizers
Cadmium and its compounds Copper and its compounds Lead and its compounds Metal fume fever Selenium and its compounds Zinc and its compounds
Metal Polishers and Cleaners (see polishers and cleaners, metal)
Metal Polish Makers (see polish makers)
Metal Turners Inorganic dust (no free silica)
Metal Workers (see particular occupation)
Metal Washers .. Chlorinated hydrocarbons
Petroleum hydrocarbons
Methyl Alcohol Workers Acetone Carbon monoxide Methyl alcohol
Mica Strippers or Splitters Inorganic dust (no free silica)
Mica Workers Inorganic dust (no free silica)
Microscopists Repeated motion, pressure and vibration
Milkers Fungus infections Repeated motion, - vibration Undulant fever
pressure
and
Milk Inspectors Undulant fever
Millers Fungus infections; Mercury and its compounds
10893--4
Millinery Workers ; Acetone
Amino compounds of benzol, toluol and xylol
Amyl acetate Aniline ; Benzol and its homologue i (toluol
and xylol) Defective illumination Methyl alcohol Petroleum hydrocarbons Turpentine
Mineral Earth Workers Inorganic dust (no free silica)
Miners Asbestos dust Carbon dioxide Carbon monoxide Dampness Defective illumination Heat Hydrogen sulphide Inorganic dust (free silica) Inorganic dust (no free silica) Manganese and its compounds Nitrdns fumes Repeated motion, pressure and . vibration Silver and its compounds Sudden variations of temperature
Mlnkery Workers Anthrax Glanders Septic infections
Mirror Sllverers Acetaldehyde Ammonia Benzol and its homologues (toluol and xylol) Cyanides Dampness Formaldehyde Formic acid Lead and its compounds Mercury and its compounds Silver and its compounds Sudden variations of temperature.
S T 0 8 5 3 8 53
50 DIAGNOSIS OF OCCUPATIONAL DISEASES
Mixers (rubber) Amino compounds of benzol, toluol and xylol Aniline Antimony and its compounds Arsenic and its compounds Benzol and its homologues (toluol and xylol) Carbon tetrachloride Chromium compounds Hexamethylene tetramine Inorganic dust (no free silica) Lead and its compounds Paraldehyde Petroleum hydrocarbons Sudden variations of temperature Synthethic rubber
Mixing Room Workers (miscel laneous)
Inorganic dust (no free silica) Organic dust
Mould Breakers (foundry) Heat Inorganic dust (free silica) Inorganic dust (no free silica)
Mould Breakers (pottery) Carbon monoxide
Moulders (asbestos) Asbestos dust
Moulders (foundry) Heat Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds Metal fume fever Zinc and its compounds
Monotypers Antimony and its compounds Carbon monoxide Lead and its compounds
Mordanters Amyl alcohol Antimony-and its compounds
Arsenic and its compounds Benzol and its homologues (toluol
and xylol) Chloride of lime Chromium compounds Cyanides Formic add Nitric add Nitrous fumes Petroleum hydrocarbons Vanadium compounds
Motion Picture Film Workers (see also pyroxylin plastics workers)
Amyl acetate . Butyl alcohol Carbon monoxide Chlorinated hydrocarbons Tetrachloroethane
Motion Picture Machine Operators Mercury and its compounds Nitrous fumes Ultraviolet and infrared rays
Motion Picture Studio Workers and Actors
Ultraviolet and infrared rays
Mottlers (leather) Amyl acetate Methyl alcohol
Muffle Tenders Heat
Mule Handlers Anthrax Glanders
Muriatic Add Makers (see hydro chloric add makers)
Musical Instrument Makers Lead and its compounds
Musicians Repeated motion, pressure and vibration
S T 08 53854
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
51
Naphthylamine Worker*. Amino compounds of benzol, toluol and xylol Aniline Naphthylamines
Neon Lights Lettennakers Carbon monoxide
Nickel Extractors Nickel and its compounds
Nickel Platers (see also electroplaters) Cyanides Dampness
Nickel Purification Workers (mond process)
Carbon monoxide Nickel and its compounds Nickel carbonyl
Nitranlline Workers Amino compounds of benzol, toluol and xylol Aniline
Nitrators Nitric acid Nitrobenzol Nitro compounds of benzol, toluol and xylol Nitroglycerine Nitrous fumes Sulphuric add
Nitric Add Workers Ammonia Lead and its compounds Nitric add Nitrous fumes Sulphuric add
Nitrobenzene Workers (see nitro benzol workers)
Nitrobenzol Workers Benzol and its homologues (toluol and xylol)
10893--4
Nitric add Nitrobenzol Nitro compounds of benzol, toluol
and xylol Nitrous fumes Sulphuric add
Nitrocellulose Workers (see also pyroxylin plastics workers)
Acetone Amyl acetate Amyl adohol Arsine Benzol and its homologues (toluol
and xylol) Ethyl acetate Ethylene glycol monomethyl ether Nitric acid Nitrous fumes Sulphuric add
Nitroglycerine Makers Arsine Lead and its compounds Nitric acid Nitroglycerine Nitrous fumes
. Sulphuric add
Nitrous Oxide Workers Nitrous fumes
Oilcloth Makers (see linoleum makers)
Oilers Petroleum oils
Oil Extractors (see extractors) (oils and fats)
Oil Flotation Plant Workers (see also concentrating mill workers)
Hydrogen sulphide Petroleum oils Sulphur dioxide
Oil Purifiers Sulphuric add
ST0853855
52 DIAGNOSIS OF OCCUPATIONAL DISEASES
Oil Refiners (see petroleum refiners)
pil Well Workers Hydrogen sulphide Petroleum oils
Open Hearth Department Workers (iron and steel)
r Carbon monoxide Heat
Ore Concentrating Mill Workers (see concentrating mQl workers)
Oxyacetylene Cutters (see welders)
Ozonators Ozone
Packing House Employees (see also slaughterhouse workers)
Alkalis Dampness Erysipeloid Heat Hydrogen sulphide Septic infections Sudden variations of temperature Undulant fever Weil's disease
Painters Acetone Amino compounds of benzol, toluol and xylol Amyl acetate Amyl alcohol Aniline Antimony and its compounds Arsenic and its compounds
... Benzol and its homologues (toluol and xylol)
Carbon disulphide .. .Chromium compounds
, Ethyl acetate Ketones Lead and its compounds Manganese compounds Mercury and its compounds Methyl alcohol Nitric acid
Nitrous fumes : Petroleum hydrocarbons
Repeated motion, pressure vibration
Titanium dioxide Turpentine
and
Painters (luminous watch and instru ment dials)
X-rays, radium and other radio active substances (radiothorium, mesothorium, etc.)
Painters (tar) Tar and pitch
Paint Makers
Acetone
Alkalis
Amino compounds of benzol, toluol
and xylol
Amyl acetate
Amyl alcohol
f Aniline Antimony and its compounds
Arsenic compounds
Barium compounds
Benzol and its homologues (toluol
and xylol)
Cadmium compounds
Carbon disulphide
Chlorinated diphenyls
Chlorinated naphthalenes
Chromium compounds
Dampness
Ethyl acetate
Hydrochloric add
Lead and its compounds
Magnesium compounds .
Manganese compounds .. .
Mercury and its compounds
Methyl alcohol
Petroleum hydrocarbons
Phenol
Pyridine
'
Selenium compounds
Sulphuric acid '
Tar and pitch.
Titanium dioxide
ST0853856
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
53
Turpentine Uranium compounds
Paint Remover Makers Ammonia Benzol and its homologues (toluol and xylol) Butanone Cresol Dichloroethyl ether Diethylene dioxide Furfural Ketones Methyl alcohol Methylene chloride Petroleum hydrocarbons Phenol
Paint Removers Ammonia Acetone Amylacetate Benzol and its homologues (toluol and xylol) Dichloroethyl ether Inorganic dust (no free silica) Ketones Lead and its compounds Methylene chloride Petroleum hydrocarbons Phenol
Pair Heaters (tin plate) Heat
Paper Box Makers Repeated motion, pressure and vibration
Paper Glazers Arsenic and its compounds
Paperhanfters . Arsenic and its compounds
Chromium compounds Inorganic dust (no free silica) Lead and its compounds
Paper Makers (see also particular occupation)
Alkalis
Ammonia Amyl acetate Arsine Chlorine Chromium compounds Dampness Excessive noise Formaldehyde Fungus infections Heat Hydrochloric add Hydrofluoric add Hydrogen sulphide Lead compounds Magnesium compounds Sulphur dioxide Sulphuric add Sudden variations of temperature Titanium dioxide
Paper Money Makers Chromium compounds
Paraffin Workers Acetone Benzol and its homologues (toluol and xylol) Carbon disulphide Carbon tetrachloride Ethylene dichloride Petroleum oils
Parakeet Handlers Psittacosis
Paris Green Workers Arsenic and its compounds
Parrot Handlers Psittacosis
Patent Leather Makers Amyl acetate Carbon monoxide Lead and its compounds Methyl alcohol Oxalic acid Ozone Sudden variations of temperature Sulphuric acid Turpentine
ST0853857
54 DIAGNOSIS OF OCCUPATIONAL DISEASES
Pavers
Heat Repeated motion,
vibration Tar and pitch
pressure
aud
Pencil Makers
Acetone Alkalis Amino compounds of benzol, toluol
and xylol Aniline Arsenic and its compounds Benzol and its homologues (toluol
and xylol) Chromium compounds Pyridine
Perfume Makers
Acetone Amino compounds of benzol, toluol
and xylol Ammonia Amyl acetate Aniline Benzol and its homologues (toluol
and xylol) Brominated hydrocarbons (ethyl
bromide) Butyl alcohol Carbon tetrachloride Chlorinated hydrocarbons Cresol Dimethyl sulphate Ethyl acetate Formic add Hydrochloric add Methyl alcohol Methyl chloride Methylene chloride Naphthols Nitrobenzol Nitro compounds of benzol, toluol
and xylol Petroleum hydrocarbons Phenol Sulphuric add Trichloroethylene
Petroleum Refiners Acetone Acrolein Alkalis Amino compounds of benzol, toluol and xylol Ammonia Aniline Benzol and its homologues (tolupl and xylol) Carbon monoxide Chlorinated hydrocarbons Dampness Dichloroethyl ether Heat Hydrochloric acid Hydrogen sulphide Lead and its compounds Methylene chloride Nitrobenzol Nitro compounds of benzol, toluol and xylol Petroleum hydrocarbons Petroleum oils Sulphur dioxide Sulphuric add Trichloroethylene Turpentine
Pewter Makers Antimony and its compounds Lead and its compounds
Pharmaceutical Workers Acetone
. Acrolein Alkalis Amino compounds of benzol, toluol and xylol Aniline Antimony and its compounds Arsenic and its compounds Benzol and its homologues (toluol and xylol) Brominated hydrocarbons (ethyl bromide, ethylene dibromide, methyl bromide) Bromine Calcium cyanamide
ST0853858
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
55
Carbon dioxide Carbon tetrachloride Chloride of lime Chlorinated hydrocarbons Diethylene dioxide Dinitrophenol Ethylene dichloride Formic add Magnesium compounds Manganese compounds Mercury and its compounds Methyl chloride Methylene chloride Naphthols Nitric add Nitroglycerine Nitrous fumes Organic dust Petroleum hydrocarbons Phenol Phenyl hydrazine Phosgene Phosphorus and its compounds Sulphuric add Tellurium compounds Tetrachloroethane Tetrachloroethylene Trichloroethylene Trinitrophenol Turpentine Uranium
Phenol Makers Benzol and its homologues (toluol and xylol) Phenol Sulphuric add
Phenyl Hydrazine Workers Phenyl hydrazine
Phosphate Extractors Hydrochloric add
Phosphate Mill Workers (Bee also fertilizer makers)
Dampness Hydrofluoric add
Inorganic dust (no free silica) , Phosphorus and its compounds Sudden variations of temperature
Phosphide Makers Carbon monoxide Phosphine
Phosphor-Bronze Workers Phosphorus and its compounds
Phosphoric Add Makers Cyanides Nitric add Nitrous fumes Sulphuric add
Phosphorus Compound Makers Hydrogen sulphide Phosphorus and its compounds
Phosphorus Extracters Hydrofluoric acid Phosphine Phosphorus and its compounds
Phosphorus (red) Makers Phosphine Phosphorus and its compounds
Phosphorus Refiners Phosphine Phosphorus and its compounds
Photoengravers Alkalis Ammonia Amyl acetate Benzol and its homologues (toluol and xylol) Chromium compounds Methyl alcohol Nitric add Nitrous fumes
Photographers (see also photogra phic material workers)
Defective illumination Methly alcohol Ultraviolet and infrared rays
s r 0853859
56 DIAGNOSIS OF OCCUPATIONAL DISEASES
Photographic Film Makers (see also pyroxylin plastics workers)
Amyl acetate Bromine Butyl alcohol Defective illumination Ethyl acetate Nitric acid Nitrous fumes Silver and its compounds
Picklers
Arsine Cyanides Dampness Heat Hydrochloric acid Hydrofluoric add Nitric acid Nitrous fumes Sulphuric add
Photographic Material Workers (see also photographic film makers)
Acetaldehyde Acetone Amino compounds of benzol, toluol . and xylol Ammonia Aniline Barium compounds Benzol and its homologues (toluol
and xylol) Chlorine Chromium compounds Cresol Cyanides Formaldehyde Hydrochloric acid Mercury and its compounds Metol Phenol Sulphuric add Tellurium compounds Trichloroethylene Trinitrophenol Turpentine Uranium compounds Vanadium compounds
Photograph Retouchers
Lead and its compounds
Photogravure Workers
Chromium compounds Nitric add Nitrous fumes
Picric Acid Makers Benzol and its homologues (toluol and xylol) Nitric add Nitrous fumes Phenol Sulphuric add Trinitrophenol
Pigment Makers (see colour makers)
Pile Drivers Repeated motion, pressure and vibration
Pipe Fitters (see also particular liquid piped)
Lead and its compounds
Pitch Workers Arsenic and its compounds Cresol Heat Tar and pitch
Planer Men (stone) Inorganic dust (free silica) Inorganic dust (no free silica)
Plasterers Anthrax Dampness Inorganic dust (no free silica)
Plaster of Paris Workers Inorganic dust (no free silica)
Plastics Makers (see pyroxylin plas tics workers, also resin (synthetic) makers)
ST0853860
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
57
Plater* (see electroplaters and metallizers)
Platinum Extractors Bromine
Plumbers (see also particular sub stance piped)
Arsine ' Carbon monoxide
Lead and its compounds
Pneumatic Tool Workers Inorganic dust (free silica) Inorganic dust (no free silica) Repeated motion, pressure vibration
and
Policemen Carbon monoxide Dampness
Polishers and Cleaners (metal) (see also degreasers)
Benzol and its homologues (toluol and xylol)
Cyanides Hydrochloric acid Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds Methyl alcohol Organic dust Oxalic add Petroleum hydrocarbons Pyridine Repeated motion, pressure and
vibration Silver and its compounds Trichloroethylene
Turpentine
Polish Makers
Amino compounds of benzol, toluol and xylol
Amyl acetate Aniline Benzol and its homologues (toluol
and xylol) Carbon tetrachloride ,
Chlorinated hydrocarbons Chlorobenzols Cyanides Diethylene dioxide Inorganic dust (no free silica) Methyl alcohol Nitrobenzo! Nitro compounds of benzol, toluol
and xylol Oxalic add Petroleum hydrocarbons Trichloroethylene Turpentine
Porcelain Makers (see pottery workers)
Porters Repeated motion, pressure and vibration
Potassium Hydroxide Makers Alkalis
Pot Fillers (glass) Heat
Potlifters (iron and steel) Heat
Pot Pullers (foundry) Heat
Pot Room Workers (aluminum foundry; carbide plant)
Heat
Pot Setters Heat
Pottery Workers (see also particular occupation)
Arsenic and its compounds Carbon dioxide Carbon monoxide . Chromium compounds Cobalt compounds Dampness Heat Hydrochloric acid Hydrofluoric add
ST085386I
58 DIAGNOSIS OF OCCUPATIONAL DISEASES
Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds Manganese compounds Mercury and its compounds Selenium compounds Sulphur dioxide
Pourers (foundry)
Heat Ultraviolet and infrared rays
Powder Makers (see smokeless pow der makers)
Preparers (tannery) Anthrax Dampness Septic infections
Preservative Makers and_Handlers Formaldehyde
Presaers Carbon monoxide Repeated motion, vibration
pressure
and
Pressmen (oil refining) Dampness Petroleum oils
Pressmen (printers) (see printers)
Pressroom Workers (rubber) Amino compounds of benzol, toluol and xylol Aniline Antimony and its compounds Arsenic and its compounds Benzol and its homologues (toluol and xylol) Petroleum hydrocarbons Sudden variations of temperature
Primers (explosives) Mercury and its compounds
Printers
Amino compounds of benzol, toluol and xylol
Aniline
Antimony and its compounds Arsenic and its compounds Benzol and its homologues (toluol
and xylol) Carbon monoxide Carbon tetrachloride Chlorinated hydrocarbons Chlorobenzols Cyanides Defective illumination Glycols Inorganic dust (no free silica) Lead and its compounds Mercury and its compounds Methyl alcohol Petroleum hydrocarbons Tetrachloroethylene Turpentine
Printers Textile (see textile printers)
Puddlers (iron and steel) Carbon monoxide Heat Manganese and its compounds
Pulp Mill Workers (see also paper makers)
Dampness Excessive noise Heat
Putty Makers Carbon disulphide Inorganic dust (no free silica) Lead and its compounds Petroleum hydrocarbons
Putty Polishers (glass) Inorganic dust (no free silica) Lead and its compounds
Pyrites Burners Arsenic and its compounds Heat Hydrogen sulphide Inorganic dust (no free silica) Selenium compounds Sulphur dioxide
ST 0853862
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
59
Pyroxylin Plastics Workers
Acetaldehyde Acetone Acrolein Amino compounds of benzol, toluol
and xylol Amyl acetate Amyl alcohol Aniline Arsine Benzol and its homologues (toluol
and xylol) Brominated hydrocarbons (ethylene
dibromide) Butyl alcohol Carbon monoxide Carbon tetrachloride Chlorinated hydrocarbons Cyanides Diethylene dioxide Ethyl acetate Ethylene glycol monomethyl ether Hydrogen sulphide Ketones Lead and its compounds Methyl alcohol Nitric add Nitrous fumes Organic dust Petroleum hydrocarbons Propyl alcohol Sulphuric add Tetrachloroethane Triorthocresyl phosphate
Quarrymen Excessive noise Inorganic dust (free silica) Inorganic dust (no free silica) Repeated motion, pressure vibration
and
Quartz Workers Inorganic dust (free silica)
Radioactive Paint Makers X-rays, radium and other radio
active substances (radiothorium, mesothorium, etc.)
Radiologists X-rays, radium and other radio active substances (radiothorium, mesothorium, etc.)
Radio Tube Makers Mercury and its compounds
Radium Miners X-rays, radium and other radio active substances, (radiothorium, mesothorium, etc.)
Radium Ore Reduction Workers X-rays, radium and other radio active substances (radiothorium, mesothorium, etc.)
Radium Specialists X-rays, radium and other radio active substances (radiothorium, mesothorium, etc.)
Rag Workers Anthrax Organic dust Septic infections
Rayon Makers Alkalis Ammonia Amyl acetate Arsine Butyl alcohol Carbon disulphide Chlorinated diphenyls Chlorinated hydrocarbons Chlorine Cyanides Dampness Diethylene dioxide Formaldehyde Heat Hydrochloric add Hydrogen sulphide Methyl alcohol Methylene chloride Nitric add Nitrous fumes Oxalic acid Sulphuric add Tetrachloroethane
ST0853863
60 DIAGNOSIS OF OCCUPATIONAL DISEASES
Reclaimers (rubber) Amino compounds of benzol, toluol and xylol Aniline Benzol and its homologues (toluol and xylol) Carbon disulphide Hydrochloric add Lead and its compounds Phenol Sulphuric add
Red Lead Workers Lead and its compounds
Refiners (metals) (see also particular occupation)
Arsenic and its compounds Arsine Carbon monoxide Heat Hydrochloric add Lead and its compounds Mercury and its compounds Nitric add Nitrous fumes Selenium compounds Sulphur dioxide Sulphuric add
Refiners (sugar) (see sugar refiners)
Refrigerating Plant Workers Ammonia Brominated hydrocarbons Carbon dioxide Chlorinated hydrocarbons Dampness Freon Methyl chloride Ozone Sudden variations of temperature
Refrigerator (mechanical) Makers and Repair Men
Acrolein Brominated hydrocarbons (ethyl
bromide, methyl bromide) Chlorinated hydrocarbons
Freon Methyl chloride Methyl formate Sulphur dioxide
Resins (synthetic) Makers Acetaldehyde Acetone Alkalis Amino compounds of benzol, toluol and xylol. Aromatic hydrocarbons (naphtha lene, anthracene) Benzol and its homologues (toluol and xylol) Chlorinated diphenyls Chlorinated hydrocarbons Chlorinated naphthalenes Cresol Dichloroethyl ether Diphenyl Ethyl acetate Ethylene glycol monomethyl ether Formaldehyde Furfural Heat Hexamethylene tetramine Methyl alcohol Nitrobenzols Organic dust Oxalic acid Phenol Selenium compounds Styrene Trichloroethylene Triorthocresyl phosphate Vinyl chloride
Riveters Excessive noise
Lead and its compounds Repeated motion, pressure
vibration
and
Road Repairers Heat Inorganic dust (free silica) Inorganic dust (no free silica) Tar and pitch -
ST0853864
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
61
Roentgenologists X-rays, radium and other, radio active substances, (radiothorium, meaothorium, etc.)
Roller Coverera (cotton mill) Heat Organic dust
Rollers (metals) Heat
Roll Setters (iron and steel) Heat
Roll Wrenchers (iron and steel) Heat
Roofers Lead and its compounds Sudden variations of temperature Tar and pitch
Roofing Material Workers Asbestos dust
, Heat Inorganic dust (no free silica) Tar and pitch
Rope Makers Organic dust Tar and pitch
. Rotogravure Workers Acetone Amino compounds of benzol, toluol and xylol Benzol and its homologues (toluol and xylol)
Roughen (iron and ateel) Heat
Rubber Cement Makers (see cement mixers, rubber)
Rubber Glove Makers. Petroleum hydrocarbons
Rubberized Asbestos Board Maken Petroleum hydrocarbons
Rubber (synthetic) Maken Acetaldehyde Acrylonitrile Amino compounds of benzol, toluol and xylol Amyl alcohol Aniline Butadiene Chlorine
. Chlorobutadiene ` Cresol
Isoprene Naphthols Naphthylamines Nitrous fumes Styrene Sulphur chloride
Rubber Tire Builden Benzol and its homologues (toluol and xylol) Heat Petrdleum hydrocarbons Repeated motion, pressure and vibration
Rubber Worken (see also particular occupation)
, Acetaldehyde Acetone Alkalis Amirjo compounds of benzol, toluol and xylol Aniline Antimony and its compounds Arsenic and its compounds Barium compounds Benzol and its homologues (toluol and xylol) Carbon disulphide Carbon tetrachloride Chlorinated hydrocarbons Chromium compounds Ethylene dichloride Formaldehyde Formic acid Heat
ST 0853865
62 DIAGNOSIS OF OCCUPATIONAL DISEASES
Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds Magnesium compounds Methyl alcohol Naphthols Naphthylamines Nitrous fumes Organic dust Petroleum hydrocarbons Phenol Pyridine Repeated motion, pressure and
vibration
Sudden variations of temperature Synthetic rubber Tellurium compounds Tetrachloroethane. Trichloroethylene Triorthocresyl phosphate Turpentine
Sagger Makers Dampness Inorganic dust (no free silica) Lead and its compounds
Sailors
Carbon monoxide Sudden variations of temperature Repeated motion, pressure and
vibration
Salt Extractors products)
Ammonia Sulphuric acid
(coke
oven
by
Salt Preparers Heat Inorganic dust (no free silica) Sudden variations of temperature
Sand Blasters Inorganic dust (free silica) Inorganic dust (no free silica)
Sand Cutters Inorganic dust (free silica)
Sanders Inorganic dust (free silica). Inorganic dust (no free silica)
Sanding Machine Operators Inorganic dust (free silica) Inorganc dust (no free silica),
Sandpaperers (enameling and paint ing auto bodies, etc.)
Inorganic dust (no free silica) Lead and its compounds
Sandpaper Makers Inorganic dust (free silica) Inorganic dust (no free silica)
Sand Pulverizers Inorganic dust (free silica)
Saw Filers
Defective illumination Inorganic dust (no free silica)
Sawmill Workers Organic dust
Sawyers Repeated motion, pressure and vibration
Sawyers (stone) Inorganic dust (free silica) Inorganic dust (no free silica)
Scissors Sharpeners Inorganic dust (no free silica) Repeated motion, pressure vibration
and
Scourers (belts) Benzol and its homologues (toluol and xylol)
Scourers (metals) Carbon tetrachloride Chlorinated hydrocarbons Nitric add Nitrous fumes Petroleum hydrocarbons Sulphuric acid Trichloroethylene
ST0853866
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
63
Scourers (wood lasts) (shoes) Organic dust
Scouring Powder Makers Alkalis Inorganic dust (free silica) Inorganic dust (no free silica)
Scrapers (foundry) Inorganic dust (free silica) Inorganic dust (no free silica)
Screen Tenders (pulp mill) Dampness
Screen Workers (lead and smelting)
Inorganic dust (no free silica) Lead and its compounds
zinc
Sealers (incandescent lamps) Carbon monoxide
Sealing Wax Makers
Arsenic and its compounds Turpentine
Seamstresses
Defective illumination Repeated motion, pressure
vibration
and
Seed Treating Workers Fungus infectons Mercury salts Organic mercury compounds Phosphorus compounds
Selenium Refiners Selenium and its compounds
Sewage Purification Workers Chlorine
Sewer Workers
Aliphatic hydrocarbons etc.)
Ammonia
(methane,
Carbon dioxide Carbon monoxide Dampness Hydrogen sulphide
Petroleum hydrocarbons
Sewing Machine Operators Defective illumination Repeated motion, pressure vibration
and
Shade Cloth Makers Benzol and its homologues (toluol and xylol) Petroleum hydrocarbons
Shale Oil Workers (see petroleum refiners)
Shavers (felt hats; fur; tannery) Anthrax Dampness Organic dust Septic infections
Shearers
Anthrax Fungus infections Undulant fever
Sheep Dip Makers Arsenic and its compounds
Sheet Metal Workers Lead and its compounds Metal fume fever Zinc and its compounds
Shellackers
Amyl acetate Benzol and its homologues (toluol
and xylol) Butyl alcohol Lead and its compounds Methyl alcohol Petroleum hydrocarbons Turpentine
ST0853867
i
64 . DIAGNOSIS OF OCCUPATIONAL DISEASES
Shellac Makers Ammonia Amyl acetate Benzol and its homologues (toluol and xylol) Butyl alcohol Lead and its compounds Methyl alcohol
i Petroleum hydrocarbons
Turpentine
Shell Fillers Dinitrophenol Nitrobenzols Nitro compounds of benzol, toluol and xylol
Nitroglycerine Tetryl Trinitrophenol Trinitrotoluol
Shepherds Anthrax Fungus infections -
Sherardlzers Metal fume fever Zinc and its compounds
Shingle Stainers Petroleum hydrocarbons
Shipyard Workers Lead and its compounds Repeated. motion, pressure vibration Tar and pitch Ultraviolet and infrared rays
and
Shoddy Workers .r: Anthrax.
Arsine Chlorine Hydrochloric acic Organic dust Septic infections Sulphuric add
Shoe Dyers Amino compounds of benzol, toluol and xylol Lead and its compounds Nitrobenzols Nitro compounds of benzol, toluol and xylol
Shoe Factory Operatives (see also particular occupation)
Acetone Amyl acetate Anthrax Benzol and its homologues (toluol
and xylol) Carbon tetrachloride Chlorinated hydrocarbons Organic dust Petroleum hydrocarbons Tetrachloroethane ` Trichloroethylene Turpentine
Shoe Finishers Ammonia Amyl acetate Amyl alcohol Benzol and its homologues (toluol and xylol)
: Ethyl acetate Methyl alcohol Petroleum hydrocarbons Sudden variations of temperature
Shoe Heel (wood) Coverers Acetone Amyl acetate Benzol and its homologues (toluol and xylol) Ethyl acetate Methyl alcohol Petroleum hydrocarbons
Shoemakers (see cobblers)
Shooting Gallery Workers Lead and its compounds Mercury and its compounds Nitrous fumes
S T 0853868
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
65
Shot Makar* Antimony and its compounds Arsenic and its compounds Lead and its compounds
Silicon Alloy Makers Inorganic dust (free silica)
Silk Welghters Lead and its compounds Tin compounds
Silk Workers Organic dust Septic infections
Silo Workers Carbon dioxide
Silverers (mirror) (see mirror silverers)
Silver Foil Makers Silver and its compounds.
Silver Melters Carbon monoxide Cyanides Silver and its compounds Sudden variations of temperature
Silver Miners (see also miners) Arsenic and its compounds
Silver Nitrate Makers Silver and its compounds Nitric acid Nitrous fumes
Silver Platers (see also electroplaters) Silver and its compounds
Silversmiths Silver
Singers (doth) Carbon monoxide
Sintering Plant Workers Inorganic dust (no free silica)
10893-5
Skimmers (glass) Heat Ultraviolet and infrared rays
Slag Workers Heat Inorganic dust (no free silica)
Slate Workers Inorganic dust (free silica) Inorganic dust (no free silica)
Slaughter House Workers Anthrax Dampness . Erysipeloid Fungus infections Glanders Septic infections Undulant fever Weil's disease
Slip Makers (pottery) Dampness Inorganic dust (no free silica) Lead and its compounds
Slushers (porcelain enameling) Lead and compounds
Smelters (see also particular metal) Heat Inorganic dust (free silica) Inorganic dust (no-free silica) Sulphur dioxide
Smokeless Powder Makers Acetone Amyl acetate Amyl alcohol Benzol and its bomologues (toluol and xylol) Carbon disulphide Nitric acid Nitrobenzol Nitro compounds of benzol, toluol and xylol Nitrous fumes Nitroglycerine Phenol Trinitrophenol
ST0853869
66 DIAGNOSIS OF OCCUPATIONAL DISEASES
Smoothers (glass) Dampness Inorganic dust (no free silica)
Soap (abrasive) Workers Inorganic dust (no free silica)' Inorganic dust (free silica)
Soap Makers Acrolein Alkalis . Amyl acetate Arsenic and its compounds Benzol and its homologues (toluol and xylol) Carbon tetrachloride Chlorinated hydrocarbons Dampness Dichloroethyl ether
* Ethyl acetate Ethylene dichloride Formaldehyde Formic acid Hydrochloric add Hydrogen sulphide Manganese compounds Methyl alcohol Nitrobenzol Nitro compounds of benzol, toluol and xylol Organic dust Petroleum hydrocarbons Septic infections Sudden variations of temperature Sulphuric add Tar and pitch Tetrachloroethane Tetrachloroethylene Trichloroethylene
Soda Makers Ammonia Arsine Carbon dioxide Chlorine Dampness Hydrogen sulphide Nitric add Nitrous fumes Sulphuric add
Sodium Hydroxide Makers Alkalis Chlorine Dampness
Sodium Silicate Makers Inorganic dust (free silica)
Sodium Sulphide Makers Hydrogen sulphide
Softeners (tannery) Organic dust
Solderera
Arsine
Cadmium and its compounds
Carbon monoxide
Cyanides
Hydrochloric add
Lead and its compounds
Solder
..
Ultraviolet and infrared rays
Zinc and its compounds
Solder Makers Antimony and its compounds Cadmium and its compounds Lead and its compounds Solder Zinc and its compounds
Spice Makers Organic dust
Spinners (asbestos) Asbestos dust
Spinners (textile) Organic dust Repeated motion, vibration
pressure and
Spongers Dampness Heat
Sprayers (metals) (see metallizers)
Sprayers (paint) (see painters)
ST0853870
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
67
Sprayers (tree) (see also Insecticide makers)
Arsenic and its compounds Cyanides D.D.T. Lead and its compounds Phosphorus compounds
Spreaders (rubber works) Carbon tetrachloride Sudden variations of temperature
Stablemen Anthrax Ammonia Fungus infections Glanders Septic infections Tetanus Undulant fever
Stamp Mill Workers Dampness Heat Inorganic dust (free silica) Inorganic dust (no free silica)
Steeple Jacks. Carbon monoxide Sulphur dioxide
Stereotypers ' Antimony and its compounds Lead and its compounds . Sudden variations of temperature
Still (coal tar) Cleaners Benzol and its homologues (toluol and xylol) Heat Tar and pitch
Stillmen (carbolic add) Heat Phenol
Stillmen, Operating (see also parti cular chemical)
Heat
Stitchers (shoes) Methyl alcohol
Starch Makers Carbon dioxide Hydrogen sulphide Organic dust
Statuary Workers Inorganic dust (free silica) Inorganic dust (no free silica)
Steam Fitters (see pipe fitters)
Stearic Add Makers Acrolein Sudden variations of temperature
Steel Alloy Makers (see alloy makers)
Stockmen Anthrax Glanders Septic infections Tetanus Undulant fever
Stockyard Workers (see slaughter house workers)
Stokers Carbon monoxide Heat Inorganic dust (no free silica) Sudden variations of temperature Ultraviolet and infrared rays
Steel (chrome) Makers Chromium compounds
Steel Engravers (see engravers) 10893--fit
Stone (artificial) Makers
Inorganic dust (free silica) Inorganic dust (no free silica) Tar and pitch
S TO 85387 I
63 DIAGNOSIS OF OCCUPATIONAL DISEASES
Stone Cleaners Hydrofluoric acid Oxalic add
Stone Cutters Dampness Inorganic dust (free silica) Inorganic dust (no free silica) Repeated motion, pressure vibration
and
Stone Masons Inorganic dust (free silica) Inorganic dust (no free silica)
Stone Workers Inorganic dust (free silica) Inorganic dust (no free silica)
Storage Battery Makers . Amyl acetate
Antimony and its compounds Arsine Cadmium and its compounds Carbon monoxide Lead and its compounds Mercury and its compounds Nickel and its compounds Sulphur dioxide Sulphuric acid
Straw Cutters Fungus. infections
Straw Hat Makers Acrolein Amyl acetate Chloride of lime Chlorinated hydrocarbons Ethyl acetate Formaldehyde Methyl alcohol Organic dust Petroleum hydrocarbons Sudden variations of temperature Tetrachloroethane
Street Cleaners Inorganic dust (no free silica) Organic dust Septic infections
Street Repairers Excessive noise Heat Inorganic dust (free silica) Inorganic dust (no free sitica) Repeated motion, pressure vibration Tar and pitch
and
Subway Construction Workers Inorganic dust (free silica)
Sugar Refiners Ammonia Barium compounds Carbon dioxide Chlorine Dampness Heat Hydrochloric add Hydrogen sulphide Inorganic dust (no free silica) Organic dust Septic infections Sudden variations of temperature Sulphur dioxide Sulphuric acid
Sulphates Makers Sulphuric add
Sulphides Makers Hydrogen sulphide
Sulphite Cooks (pulp mill) Heat Sudden variations of temperature Sulphur dioxide
Sulphur Dioxide Makers Carbon monoxide Sulphur dioxide
Sulphuric Add Workers
Ammonia Arsenic and its compounds Arsine Hydrogen sulphide
S T 0 8 5 3 8 72
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
69
Lead and it* compounds Nitric add' Nitrous fumes Selenium and its compounds Sulphur dioxide Sulphuric add Vanadium and its compounds
Sumackers (tannery) Anthrax Dampness Septic infections
Surgical Dressing Makers Phenol
Tablehands (tannery) N Anthrax Dampness
Table Operatives (iron and steel) Heat
Table Turners (enamelling) Inorganic dust (no free silica) Lead and its compounds Sudden variations of temperature
Tailors Repeated motion, pressure and vibration
Talc Workers Inorganic dust (no free silica)
Tallow Refiners Acrolein Carbon disulphide . Chlorinated hydrocarbons Septic infections Sulphuric add
Tank Cleaners (see also particular chemical)
Arsine Benzol and its homologues (toluol
and xylol) Hydrofluoric add Petroleum hydrocarbons Tar and pitch Tetraethyl lead
Tank Men Dampness Heat
Tannery Workers Alkalis Amino compounds of benzol, toluol and xylol Ammonia Amyl acetate Aniline Anthrax Arsenic and its compounds Chloride of lime Chromium and its compounds Cyanides Dampness Formaldehyde Formic add Hydrochloric acid Hydrogen sulphide Lead and its compounds Mercury and its compounds Oxalic add Petroleum hydrocarbons Septic infections Sulphur dioxide Sulphuric acid Trinitrophenol
Tapers (aeroplanes) Chlorinated hydrocarbons Tetrach loroethane
Tappers (smelting) (see also particular metal)
Heat Ultraviolet and infrared rays
Tar (distillery) Workers (see also coal tar workers)
Arsenic and its compounds Cresol Heat Tar and pitch
ST 0853873
70 DIAGNOSIS OF OCCUPATIONAL DISEASES
Taxidermists Anthrax Arsenic and its compounds Mercury and its compounds Organic dust Psittacosis Septic infections
Teasers (glass) Carbon monoxide Heat
Telegraphers Repeated motion, pressure and vibration
Telephone Linemen (trench work) (see also cable splicers)
Carbon monoxide Cresol Dampness Electrical burns; electrical shock Lead and its compounds Petroleum hydrocarbons Phenol Poison ivy
Temperers Calcium cyanamide Carbon monoxide Cyanides Heat Lead and its compounds Mercury and its compounds Petroleum oils Sulphuric acid
Tetraethyl Lead Makers Bromine Lead and its compounds Tetraethyl lead
Textile (asbestos) Workers Asbestos dust
Textile Comb Makers Inorganic dust (no free silica)
Textile Finishers (see particular occupation)
Textile Printers Amino compounds of benzol, toluol and xylol Amyl acetate Aniline Antimony and its compounds Aromatic hydrocarbons Arsenic and its compounds Cadmium compounds Carbon monoxide Chlorinated hydrocarbons Chlorine Chlorobenzols Chromium and its compounds Cyanides Ethyl acetate Formaldehyde Glycols Heat Hydrochloric add Lead and its compounds Manganese compounds Mercury and its compounds Methyl alcohol. Nitric add Nitrous fumes Petroleum hydrocarbons Phenol Sudden variations of temperature Sulphuric add Turpentine Vanadium compounds
Textile Workers (see particular occupation)
Dampness Heat Organic dust Sudden variations of temperature
Thallium Workers Thallium and its. compounds'
Thermometer Makers Mercury and its compounds Methyl chloride Thallium and its compounds
ST0853874
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
71
Thread Glazers Heat ' Sodden variations of temperature
Tile Makers (see also pottery workers)
Dampness Heat Inorganic dust (free silica) Lead aiid its compounds Sudden variations of temperature . Uranium compounds
Tin Foil Makers Heat Lead and its compounds
Tinners Acrolein Ammonia Arsenic and its compounds Arsine Dampness Heat Hydrochloric add Lead and its compounds
Tin Plate Mill Workers (see iron and steel workers)
Tin Recovery Workers Chlorine
Tire Builders (see rubber tire builders)
Tobacco Denicotinizera Ethylene dichloride Nicotine and tobacco Trichloroethylene
Tobacco Molsteners , Carbon dioxide
Dahtpness'
Tobacco Seedling Treaters : Benzol and its homologues (toluol and xylol)
Tobacco Wbrkera Nicotine and tobacco. Organic dust
Toogamen (iron and steel) Heat
Tool Makers Inorganic dust (no free silica)
Top Fillers (foundry) Carbon monoxide Heat Inorganic dust (no free silica)
Towermen (sulphuric add) (see also sulphuric add workers)
Arsine
Nitric add Nitrous fumes Sulphur dioxide Sulphuric add
Toy Makers Acetone Amyl acetate Arsenic and its compounds Lead and .its compounds
Train Despatches Defective illumination Repeated motion, pressure vibration
and
Transfer Workers (pottery) Lead and its compounds Turpentine
Transparent Wrapping Materials Workers
Acetone Alkalis Carbon disulphide Chlorinated hydrocarbons Hydrochloric add Hydrogen sulphide Sudden variations of temperature Sulphuric add
Treadera (rubber) Benzol and its homologues (toluol and xylol) Petroleum hydrocarbons - Repeated motion, pressure and vibration
ST0853875
72 DIAGNOSIS OF OCCUPATIONAL DISEASES
Tree Sprayers (see sprayers, tree)
Trichloroethylene Workers Trichloroethylene
Trinitrotoluol Makers Benzol and its homologues (toluol and xylol) Nitric add Nitro compounds of benzol, toluol and xylol Nitrous fumea Trinitrotoluol
T^pe Founders Antimony and its compounds Lead and its compounds
Type Melters Acrolein Lead and its compounds
TVpe Setters (see compositors)
Typists Repeated motion, pressure and vibration
Tube Makers (glass) Heat
Tabulators (incandescent lamps) Carbon monoxide
Tumbling Barrel Workers Inorganic dust (free silica) Inorganic dust (no free silica)
Tunnel Workers Aliphatic hydrocarbons (methane, etc.) Carbon dioxide Compressed air (increased atmos pheric pressure) Dampness Defective illumination Hydrogen sulphide Inorganic dust, (free silica) Inorganic dust (no free silica) Nitrous fumes
Tumers-Out (glass) Heat
Turpentine Extractors Heat Turpentine
Type Cleaners Benzol and its homologues (toluol and xylol) Methyl alcohol Petroleum hydrocarbons
Upholsterers Anthrax Methyl alcohol Organic dust
Uranium Miners Uranium and its compounds X-rays, radium and other radio active substances (radiothorium, mesothorium, etc.)
Uranium Workers Uranium and its compounds X-rays, radium and other radio active substances (radiothorium, mesothorium, etc.)
Vanadium Steel Workers Heat Vanadium and its compounds
Vapour Curera (see yulcanizers)
Vamlshers Acetaldehyde Acetone Amino compounds of benzol, totuol and xylol Amyl acetate Amyl alcohol Aniline Benzol and its homologues (toluol and xylol) Butyl alcohol Ethyl acetate
ST0853876
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
73
Ethylene chlorohydrin Formic add Ketones Lead and its compounds Manganese compounds Methyl alcohol Paraldehyde Petroleum hydrocarbons Turpentine
Varnish Makers Acetaldehyde Acetone Acrolein Alkalis Amino compounds of benzol, toluol and xylol Ammonia Amyl acetate Amyl alcohol Aniline Barium compounds Benzol and its homologues (toluol and xylol) Butyl alcohol Carbon disulphide Chlorinated diphenyls Chlorinated naphthalenes Diethylene dioxide Ethyl acetate Ethylene chlorohydrin Ethylene glycol monomethyl ether Formic add Furfural Ketones Lead and its compounds Manganese compounds Methyl alcohol Ozone Petroleum hydrocarbons Phenol Sulphur chloride Sulphur dioxide
' Sudden variations of temperature Turpentine
Varnish Remover Makers Benzol and its homologues (toluol and xylol)
Dichloroethyl ether Ketones Methylene chloride Petroleum hydrocarbons
Varnish Removers Benzol and its homologues (toluol and xylol) Dichloroethyl ether Ketones Methylene chloride Petroleum hydrocarbons
Vatmen Carbon dioxide Dampness Heat
Vat Vamlahers (see varnishers)
Vault Workers Carbon dioxide
. Velvet Makers Arsenic and its compounds Heat
Veterinarians Anthrax Glanders Septic infections Undulant fever
Vlgnetters Hydrochloric add
Vinegar Workers Carbon dioxide Heat
Vintners Carbon dioxide
Vinyl Chloride Makers Vinyl chloride
Vulcanlzers Amino compounds of benzol, toluol and xylol Ammonia Aniline Antimony and its compounds
I
ST0853877
74 DIAGNOSIS OF OCCUPATIONAL DISEASES
Benzol and its homologues (toluol and xylol)
Carbon dioxide Carbon disulphide Carbon tetrachloride Chlorinated hydrocarbons Chromium compounds
Dampness Heat Hydrogen sulphide Methyl alcohol Petroleum hydrocarbons Selenium compounds Sudden variations of temperature Sulphur chloride Sulphur dioxide
Vulcanizers (steam) Heat Dampness
Wallpaper Printers
Amino compounds of benzol, toluol
and xylol
Arsenic and its compounds
Chromium compounds
Formaldehyde
Heat
Lead and its compounds
Phenol
*
Sudden variations of temperature
Watchmaker* .
Defective illumination Repeated motion, pressure
vibration '
and
Waterproofers (paper and textile)
Benzol and its homologues (toluol and xylol)
Carbon tetrachloride Chromium compounds Formaldehyde Petroleum hydrocarbons Tar and pitch
Water Purifiers Barium compounds Chloride of lime Chlorine
Wax Makers (see also petroleum)
Benzol and its homologues (toluol and xylol)
Chlorinated diphenyls Chlorinated hydrocarbons Chlorinated naphthalenes Ozone Sulphuric acid Tetrachloroethane Turpentine
Warehouse Workers Anthrax
Washers Dampness
Washers (metal) (see also degreasers) Chlorinated hydrocarbons Petroleum hydrocarbons
Washwomen Dampness Repeated motion, vibration
pressure
and
Watch Dial (luminous) Painters X-rays, radium and other radio active substances (radiothorium, mesothorium, etc.)
Wax Ornament Makers Acrolein Arsenic and its compounds Chromium compounds
Weavers
Organic dust Repeated motion,
vibration
pressure
and
Weavers (asbestos) Asbestos dust
Weighers
.. .Inorganic dust (free silica) Organic dust
ST 0853878
OCCUPATIONS AND THEIR POTENTIAL HAZARDS
75
Welder* Arsenic and ita compounds Benzol and its homoiogues (toluol and xylol) Cadmium and its compounds Carbon monoxide Chromium and its compounds Copper. Electrical burns; electrical shock Heat Hydrofluoric acid Lead and its compounds Manganese and its compounds Mercury and its compounds Metal fume fever Nitric acid Nitrous fumes Ozone Phosphine Phosphorus and its compounds Selenium and its compounds Ultraviolet and infrared rays .Zinc and its compounds
Well Workers Aliphatic hydrocarbons etc.) Carbon dioxide Hydrogen sulphide
(methane,
White Lead Workers Carbon dioxide Lead and its compounds
Window Shade' Makers Benzol and its homoiogues (toluol and xylol) Petroleum hydrocarbons
Wire Drawers Arsenic and its compounds Hydrochloric add Sulphuric acid
Wlrers (incandescent lamps) Amyl acetate
Wood Alcohol Distillers Acetone Carbon monoxide Methyl alcohol
Wooden Heel Workers Anthrax
Wood Last Scourers (shoes) Organic dust
Wood Polishers (see furniture polishers)
Wood Preservers Arsenic and its compounds Cresol Dinitrophenol Mercury and its compounds Phenol Sulphuric add Tar and pitch
Wood Stain :rs Chromium compounds Lead and its compounds
Woodworkers Methyl alcohol Organic dust Petroleum hydrocarbons
Wool Carders Anthrax Organic dust
Wool Scourers Acetone Ammonia Anthrax Dampness Sudden variations of temperature
Wool Spinners Anthrax Organic dust
Wool Workers (see also particular occupation)
Anthrax Organic dust
X-Ray Machine Makers . X-rays, radium and other radio active substances (radiothorium, mesothorium, etc.)
ST0853879
76 DIAGNOSIS OF OCCUPATIONAL DISEASES
X-Ray Photographers X-rays, radium and other radio active substances (radiothorium, mesotharium, etc.)
X-Ray Technicians X-rays, radiuih and other radio active substances (radiothorium, mesothorium, etc.)
X-Ray Tube Makers X-rays, tadium and other radio active substances (radiothorium, mesothorium, etc.)
Yeast Makers Acetaldehyde Carbon dioxide Hydrofluoric add Sulphuric, add
Zinc Chloride Makers Arsine Chlorine Hydrochloric add Zinc compounds
Zinc Electrode Makers Mercury and its compounds
Zlncers Cyanides
Zinc Miners (see also miners) Arsenic and its compounds Lead and its compounds Manganese and its compounds
Zinc Smelters and Refiners Antimony and its compounds Arsenic and its compounds Cadmium and its compounds Carbon monoxide Heat Inorganic dust (free silica) Inorganic dust (no free silica) Lead and its compounds Manganese and its compounds Metal fume fever Selenium and its compounds Sulphur dioxide Tellurium and its compounds Zinc and its compounds
Zoological Technicians
Anthrax Glanders Psittacosis Septic infections Tetanus Undulant fever. '
S T 0 8 53880
80 DIAGNOSIS OF OCCUPATIONAL DISEASES
In some industries, it may be a comparatively simple matter to provide good illumination while in others one may require the advice of illuminating engineers. For those who have need for technical knowledge on this subject, a useful reference work is "Recommended Practice of Industrial Lighting," prepared by the Illuminating Engineering Society and available from the Department of Labour, Ottawa. It should* be borne in mind that, in fine work, magnification with good illumination may be more effective than high intensity alone.
Nystagmus has been reported in British coal miners and in train despatches in America. In the case of coal miners, the condition is attributed to the low illumination of the coal face combined with the necessity of working in cramped positions. In train despatchers, the condition is thought to be due to the constant shifting of the eyes associated with the recording of data on the train sheet.
Ultraviolet light is an occupational hazard which frequently causes acute conjunctivitis and photophobia. This haza/d is discussed in Section F, under "Radiant Energy."
Section E. Excessive Noise
The effects produced by excessive noise include fatigue, impaired hearing, decreased efficiency and emotional disturbances.
Noise can be measured by the sound level meter, which determines the intensity of a sound in the immediate environment in terms of decibels. The noise level produced by a riveting machine is about 100 decibels; in a large stenographic room it is about 7Q decibels; the intensity of sound in ordinary conversation varies from 35 to 65 decibels. The normal threshold of audibility is 0 decibels. Inten sities above 80 decibels are annoying and uncomfortable, and noise levels of 100 to 130 decibels have been found to cause temporary and permanent deafness. Levels above 130 decibels are painful to the ear.
Intensity is not the only factor in the evaluation of a noise problem. Industrial noise is usually a combination of sounds of different fre quencies. By measuring the intensity of sound produced at each frequency and determining the frequency of vibration of various parts of a machine, it is often possible to establish the main sources of a noise and take steps to eliminate or reduce it.
By means of an audiometer, the hearing loss in decibels may be determined at each frequency. Investigations of deafness due to noise have shown that the initial loss in acuity occurs for sounds of
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Section J. Dusts and Fumes
Certain industrial processes are associated with the production of considerable quantities of dusts and fumes. The effect of such dusty Environments upon the health of the worker is frequently very difficult to assess. At one time, most dusts were thought to be at least potentially harmful to the body. With the discovery of the effect of silica ota the lungs, the view was finally adopted that only silica (and possibly asbestos) was dangerous, and dusts were classified as harmful or inert, depending upon their silica content. In recent years, with the discovery of lung conditions associated with ton siliceous dusts and fumes, and with the realization that the reaction of the lung to silica is probably modified by the inhalation of concommitant materials, it has become necessary to reconsider the effects on the body of exposure to dusty environments. Though silica still remains the chief cause of pulmonary disease resulting from occupational exposure, some other dusts and fumes are now known to produce disability or even death. It is doubtful whether any dust can be regarded as entirely harmless, under conditions of extreme exposure.
From the hygienist's point of view, the question is whether a particular dust or fume exposure may be harmful to the health of Workers. ' The practicing physician must decide whether a worker's disability or impairment of function is the result of exposure to dust or fumes associated with his work, and whether an affected worker should be allowed to return to his job. To answer these questions requires not only a broad knowledge of the effects on the body-of dusts and fumes generally, but also detailed information regarding the particular exposure and its relation to the worker. Thus, in assessing the exposure, information is required concerning such factors as: (1) chemical composition of the dust or fume; (2) the size of the dust or fume particles; (3) the concentration or quantity of the respirable dust or fume in the worker's breathing zone; (4) intermittency of exposure and total length of exposure; (5) severity of the work (as it affects depth of respiration); and (6) efficiency of protective devices and measures aimed at dust control.
1. Chemical Composition of the Dust or Fume.
This information is frequently difficult to secure from the patient. Dusts, which are produced by mechanical action, such as grinding, crushing, drilling and cutting, are, for the most part, similar in
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composition to the substance from which they are derived. The same chemical constituents are present in the dust though sometimes in different proportions than in the parent substance. Fumes, on the other hand, being the result of condensation from the gaseous state, as after volatilization of metals, are frequently oxidized during the condensation process and therefore differ chemically from the substance from which they originate. In order to determine accur ately the composition of the dust or fume, it may be necessary to secure samples for analysis.
2. Site of Dust or Fume Particle.
It has been conclusively established that the vast majority (over 90 per cent) of the particles which reach the alveoli are less than 3 microns (3/l,OOOths of a millimetre) in diameter. Most particles larger than 3 microns either settle out of the air before it is breathed, or are trapped in the secretions of the nose and throat and eliminated or swallowed. As a rule, dust particles vary greatly in size, depending to some extent upon the mechanical processes involved in their pro duction. The dust produced by the wet drilling of hard rock contains a higher percentage of respirable dust than that produced by dry dril ling, since most of the larger particles are trapped in the wet process while many of the finer particles escape. The number of particles of respirable size produced by dry drilling is, of course, very much greater than that produced by wet drilling. In the case of fumes, the particles are usually more uniform in size and their diameter, such that the greater proportion of the fume is respirable. However, fume particles tend to flocculate, producing larger particle masses.
3. Concentration of Respirable Dust or Fume in Air.
A healthy respiratory system is capable of handling a certain amount of dust or fume without impairment of function or systemic poisoning resulting. However, the inhalation of amounts beyond this threshold is harmful. The concentration of dust or fume which can safely be inhaled varies widely according to the composition of the material inhaled and the duration of the exposure. There is also a wide variation in individual susceptibility. Of two men, working at the same job and in the same exposure over a period of years, one may develop occupational dust disease while the other remains Apparently unaffected. This individual susceptibility is often observed by the industrial physician dealing with groups of workers in similar exposures. For most of the mineral dusts and fumes,
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values have been set for the concentrations of the material in air which are regarded as permissible for repeated 8-hour exposures.
4.Intermittent of Exposure and Length of Exposure.
In the case of certain acutely irritant dusts and fumes, {e.g., cad mium), harmful effects may result from single, massive exposures. With the majority of dusts however, months or years may be required before the worker is affected. Frequently the man concerned has changed his job before symptoms develop. For this reason, a careful occupational history should start from the time the patient left school, and account for his employment during the subsequent years up to the time of his present illness.
The securing of adequate information concerning the above four factors in the worker's exposure, and the assessment of other factors such as the efficiency of the measures taken to control dust within the plant, frequently require laboratory and other facilities not readily available to the general practitioner. In such cases, assist ance should be requested from the Provincial Department of Health or its Division of Industrial Hygiene.
1. Organic Dusts
Organic dusts contain carbon and are largely derived from sub stances of animal or plant origin. Common examples are dusts and fibres arising from the handling or manufacture of: wood, bone and shell; fur, skins, hides and leather; feathers; brooms and straw; flour and grain; tobacco; jute, flax (linen), hemp, cotton, wool (worsted, etc.); felts and carpets; rags and paper; sweepings.
Though most organic dusts do not cause pneumoconiosis or pul monary fibrosis of a specific disabling nature, many are irritant to the upper respiratory passages and to the conjunctivae and skin, causing bronchitis, conjunctivitis and dermatitis. Many organic dusts may elicit allergic reactions in sensitized persons, with pro duction of asthma, urticaria, etc. Such irritative and allergic effects are usually relieved by termination of the exposure, and tend to recur when the patient returns to the job. A few dusts of the organic type have been reported to cause rather specific illnesses, outlined below. In some cases, it is doubtful whether the dust itself is respon sible, bacteria and fungi present in the dust having been incriminated ,by certain investigators.
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COTTON DUST
The term "byssinosis" has been applied to a respiratory affection occurring in certain workers exposed to cotton dust. The condition has been recognized in England lor some years. The persons affected were employed in carding rooms and were mainly the operators of carding engines. As yet, no definite cases have been reported in Canada.
The clinical picture usually takes the following course: After working for some time in the dusty atmosphere, the worker develops a feeling of irritation in the throat and chest, sneezing, and a dry, short cough. At first, complaints are noticed only on Monday mornings or after a short absence from work and subside after only a few hours or a day or two, even though the worker remains in expo sure. Symptoms return each Monday morning and a low-grade fever may be present in a few of the affected workers. The condition may gradually wear off and not recur, or it may never entirely clear, the symptoms recurring upon each return to work after a short absence. In the early stages there is no disability. However, after 10 or more years' exposure, the symptoms of fever, cough and tightness in the chest return, in greater severity than in the early stage. The worker tires easily, loses weight, and suffers from asthma and bron chitis. Removal from work may produce some improvement in his condition, but return to work results in further recurrence of symptoms. As the condition progresses, dyspnoea becomes marked, the cough is more productive, with expectoration of mucoid or muco purulent sputum, and there is marked emphysema. In the later stages, the condition is disabling and incurable. Physical findings in the early stages are not remarkable. In the later stages the usual clinical findings are those of chronic bronchitis and emphysema. The radiographic appearances are consistent with chronic bronchitis . and emphysema though the hilar shadows are somewhat more prom inent than is usually found in these conditions. Autopsies have revealed only a non-specific chronic bronchitis and emphysema. The condition is regarded by most authorities as the result of allergy occurring in sensitized persons.
In addition to the fairly distinct entity described above, there have been several reports of an acute febrile illness, with cough, dyspnoea, tightness in the chest, and general systemic symptoms, , occurring in cotton weavers in England and in mattress makers, cotton seed treaters and cotton millworkers in the United States.
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DIAGNOSIS OF OCCUPATIONAL DISEASES
These illnesses were regarded as being a form of acute bronchitis. Residual symptoms lasted for one or two months. The American investigators believed the illness to be caused by a gram-negative, rod-shaped bacillus; the English workers attributed their cases to mycotic agents in the cotton du6t.
"thresher's lung" and "farmer's lung"
Men exposed to dust from hay, straw and grain have been reported to suffer from a group of diseases which are often called "asthma", "bronchitis" or "pneumonia". Investigators in England, Switzer land and Scandinavia consider the condition to be a fairly discrete entity, probably .due to mycotic infection of the lungs. Exposure occurs when grain has stood out in wet weather before threshing. Under these conditions the grain is frequently heavily contaminated with fungi, and when dried, the dust contains the spores. The condition is characterized by gradually increasing dyspnoea, slight fever, unproductive cough and an increased sedimentation rate. Clinical findings include areas of dullness to percussion and moist crepitations in the lungs. In more severe cases the shortness of breath is marked, the fever is higher, and there may be muco-purulent sputum or haemoptysis. Radiologically there is a fine reticulation in the early stages, later followed by a soft mottling through both lungs. As the disease progresses, the mottling becomes more dense, the hilar shadows enlarge, and eventually the lungs show large, dense patches due to coalescent areas of fibrosis, and there are considerable areas of emphysema. In the early stages, the condition responds to potassium iodide therapy. In the later stages response to therapy is poor, and the fibrosis advances. One case coming to autopsy showed emphy sema of the lung, with bands of fibrosis traversing the lung substance.
WHEAT DUST
Large amounts of grain dust, when inhaled, may produce asthma and bronchitis in sensitive individuals. The fine hairs of the wheat grain have been reported to cause asthma in workers exposed to the dust arising from the first cleaning of the wheat. Injection of minute amounts of the wheat hair extract gave rise to severe local reactions and to asthma in sensitive millers.
BAGASSE
The term "bagassosis" is applied to a lung condition occurring in workers handling bagasse--a fibrous material which remains after the
1
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sugar has been extracted from sugar cane. The condition has been reported in England, United States and Mexico, and consists of an acute bronchiolitis and pneumonia, with symptoms beginning usually about 8 weeks after first commencing work with the bagasse. There is usually fever, extreme dyspnoea, cough with scanty, black stringy sputum, and signs scattered throughout both lungs. Radiography shows the presence of miliary shadows throughout both lung fields. Symptoms gradually lessen over a period of 6 weeks, with the lung fields clearing completely. Occasionally the pneumonia fails to resolve and fibrosis of the lung may develop. The exact cause of the condition has not been definitely established, the vegetable dust and fungi both being suspect. No cases have been noted in Canada, as yet.
2. Inorganic Dusts and Fumes
These materials are metallic or mineral in orgin. Included in the mineral dusts are coal and graphite, though strictly speaking the latter are organic materials. The inorganic dusts and fumes may be divided into five main groups, according to their action upon the body.
Group I. Inert Dusts and Fumes:
These substances produce no systemic symptoms when inhaled, and prolonged exposure does not result in the development of any disability. Though the lungs may show radiographic changes after some years of exposure, such changes are. not accompanied by symptoms or measurable impairment of function, and there is no predisposition to pulmonary tuberculosis. The radiographic shadow ing is caused, for the most part, by the deposition of radio-opaque materials in relation to the lymphatic system of the lung, where they remain, causing no injury. The lung changes produced by the inert dusts are of importance chiefly because of the difficulty they present in differential diagnosis, since their radiographic appearances some times closely resemble those due to silica. Included in the group of inert dusts and fumes are:
CARBON DUSTS
Graphite is a crystalline form of carbon; ash-free anthracite coal is an amorphous form of the same element. In the pure state, these dusts cause no fibrosis of the lung; as they occur in nature, however, graphite and anthracite frequently contain considerable amounts of
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free silica, and workers exposed may develop a modified form of silicosis, or anthracosilicosis, Like true silicosis, anthracosilicosis may.produce a disabling fibrosis of the lung. The incidence of the* disease has been shown to be related to the concentration of silica dust in the air and to the length of the exposure.
IRON DUSTS AND FUMES
Exposure to these materials occurs in haematite miners, welders, polishers (who use the red oxide of iron, or rouge), tool makers, cutlery makers, and many other occupations. The deposition of these dusts or fumes in the lungs produces a non-disabling condition known as siderosis, which is characterized radiologically by a fine, generalized mottling of the lung fields. There are usually no symptoms or impairment of health. Certain exposures to iron dusts and fumes are associated with exposure to silica. Thus silicosis is a recognized hazard in iron and steel foundries, and the mining of iron ores in certain regions, particularly in England', is associated with the pro duction of a modified form of silicosis which may be disabling if infected.
DUSTS OF CALCIUM AND MAGNESIUM COMPOUNDS
Calcium carbonate occurs naturally as limestone,, marble and chalk. Gypsum is calcium sulphate. Calcined magnesium car bonate is used in making bricks for furnace linings and other types of insulating material. Inhalation of the dusts of these materials may produce radiographic changes, but there is no evidence that any disabling lung fibrosis results, even after prolonged exposures. Talc, a hydrated magnesium silicate, is discussed below (see Group V).
CEMENT DUST
Cement is essentially a mixture of calcium silicate and calcium aluminate, with an excess of lime. Though there may be up to 23 per cent of silica in cement, this silica is present as silicate, combined with the calcium. There is no definite evidence that prolonged exposure to cement dust causes any disability. Characteristic radiographic changes do not occur.
SILICATE DUSTS
Most of the silicate dusts including clay and kaolin (aluminum silicate), sodium silicate (or "water glass", an adhesive used in sealing cardboard cartons), and the dusts of fibrous glass insulating materials (composed of silicates of sodium, potassium, calcium and
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other metals) produce no fibrosis of the lungs even after long exposure. The only silicate which at present is definitely known to cause dis abling lung fibrosis is asbestos, a fibrous silicate of magnesium and other metals (see Group IV). In the case of two other silicates, mica and talc, their role in producing pulmonary disease is still under investigation (see Group V).
Recommended M.A.C.: For inert dusts, such as cement, limestone, chalk, iron, etc., containing no free silica, the recommended maximum allowable concentration is regarded by most authorities as being 50 M.P.P.C.F. (million particles per cubic foot of air).
Group II. Dusts and Fumes Producing Systemic Effects:
Some metallic dusts and fumes are absorbed through the lungs, causing systemic effects in other parts of the body while the lungs escape damage. Inhalation of lead dust and fumes plays an important part in the causation of lead poisoning, and mercury poison;ng may follow the inhalation of mercury vapour. The chronic form of manganese poisoning usually follows inhalation. While the lungs are generally not affected in such cases, mice exposed to manganese dust have developed a pneumonitis, and British and European reports have indicated a higher incidence of pneumonia and other respiratory infections in persons exposed to manganese dusts and fumes than in the general population. The inhalation of fumes of certain other metals causes a general systemic effect known as "metal fume fever". While zinc oxide is regarded as the commonest cause, the oxides of magnesium, copper, lead, antimony, arsenic, nickel, silver and cobalt have been reported as capable of producing the condition. Some investigators think that the fever is a reaction to proteids liberated following the destruction of epithelial cells of the respiratory tract by the action of the metallic oxide. The only respiratory symptoms reported are a dry cough and tightness of the chest. In any case, the effects on the respiratory system cause little discomfort, and no permanent disability is produced. See Section K, for further details regarding systemic poisons and metal fume fever.
Group III. Dusts and Fumes Producing Inflammatory Lung Changes:
Inhalation of dusts or fumes of cadmium, vanadium, osmium and beryllium may produce acute inflammatory changes in the lungs. Exposure to certain compounds of beryllium may result in the develop ment of an acute pneumonitis, or the worker may apparently escape injury and have no symptoms while in exposure, only to develop a
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DIAGNOSIS OF OCCUPATIONAL DISEASES
Hiflahling and sometimes fatal lung condition after leaving exposure. The latent period may be as long as five years. Cadmium, beryllium and vanadium are discussed in Section K, since their effect upon the body is not restricted to the respiratory system.
Group IV. Dusts and Fumes Producing Disabling Lung Fibrosis:
Two dusts and one fume are known to produce disabling pulmonary fibrosis--silica, asbestos, and the fume produced during the fusion of bauxite in the manufacture of artificial alumina abrasives.
SILICA
From the point of view of numbers of men exposed and cases of disability produced, silica is still the chief cause of pulmonary dust disease. The distinction between "free" silica (silicon dioxide, SiOi) and "combined" silica (or silicate, having the radicle --SiO<) is most important, since the silicates, with the exception of asbestos, are probably inert. The prolonged inhalation of dusts containing free silica, on the other hand, may result in the development of a dis abling pulmonary fibrosis known as silicosis. The Committee on Pneumoconiosis of the American Public Health Association defines silicosis as "a disease due to the breathing of air containing silica (SiOj), characterized by generalized fibrotic changes and the develop ment of miliary nodules in both lungs, and clinically by shortness of breath, decreased chest expansion, lessened capacity for work, absence of fever, increased susceptibility to tuberculosis (some or all of which symptoms may be present), and characteristic X-ray findings."
Silica occurs in the pure state in nature as quartz. It is the main constituent of sand, sandstone, tripoli and diatomaceous earth, and is present in high amounts (up to 35%) in granite. Several ores, especially iron and coal, may contain a variable amount of silica. Exposure to silica occurs in hard rock mining, in foundries, in the manufacture of porcelain and pottery, in the spraying of vitreous enamels, in sandblasting, in granite-cutting and tombstone-making, in the manufacture of silica firebrick and other refractories, in grinding and polishing operations where natural abrasive wheels are used, and other occupations.
The duration of exposure which is associated with the development of silicosis varies widely for different occupations. Thus, the average duration of exposure required for the development of silicosis in sand-blasters is 2 to 10 years, in moulders and granite cutters
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about 30 years, and in hard rock miners 10 to 15 years. There is, i also, much variation in individual susceptibility, certain workers
i showing radiological evidence of the disease years before their fellow
workmen who are similarly exposed. Such susceptible individuals are fortunately rather rare.
In the absence of pulmonary tuberculosis, silicosis does not com monly cause symptoms or disability. The action of silica on the lungs results in the production of a diffuse, nodular fibrosis in which the parenchyma and the lymphatic system are involved. This fibrosis is, to a certain extent, progressive, and may continue to increase for several years after exposure is terminated. It would appear that the- fibrosis is commonly self-limiting, a point of equili brium being reached where the reparative processes of the lungs effect ively counteract the irritant action of the retained and dissolved silica. The exact point of equilibrium is determined chiefly by the amount of silica retained in the lungs, and by the effectiveness of the response elicited in the individual's lung tissue. In most instances, the pulmonary reserve greatly exceeds the amount of lung tissue which is replaced by the fibrotic process, and no symptoms or disability result. Where the pulmonary reserve is sufficiently reduced, the worker complains of shortness of breath on exertion. This is the first and most common symptom in cases of uncomplicated silicosis. If severe, it may incapacitate the worker for heavy, or even light, physical exertion, and in extreme cases there may be shortness of breath even while at rest The most common physical sign of silicosis is a limitation of expansion of the chest. There may be a dry
cough, sometimes very troublesome. The characteristic radiographic appearance is one of diffuse, discrete nodulation, scattered throughout both lung fields. Where the disease advances, the shortness of breath becomes worse, and the cough more productive and troublesome. There is no fever or other evidence of systemic
I reaction. Further progress of the disease results in marked fatigue, extreme dysnopea and cyanosis, loss of appetite, pleuritic pain and total incapacity to work. If tuberculosis does not supervene, the
condition may eventually cause death either from cardiac failure or
from destruction of lung tissue, with resultant anoxaemia. In the
later stages, the X-ray may show large, conglomerate shadows, due
to the coalescence of the silicotic nodules, with areas of emphysema
between them. Such advanced cases are rare, and are usually the
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106 DIAGNOSIS OF OCCUPATIONAL DISEASES
result of prolonged massive exposures occurring in individuals who are unduly susceptible.
The most serious feature of silicosis lies in the fact that its presence predisposes to tuberculous infection, and that tuberculosis in persons with silicosis tends to progress regardless of any therapeutic measures taken, although rest may delay the process. In some silicotics the tuberculosis runs an acute course; more commonly, the combination of tubercle bacilli and inhaled quartz produces chronic fibrosis of the lungs, which slowly spreads over a period of many years. Contraction of the masses of fibrosis results in the formation of areas of compen satory emphysema. Such disease causes shortness of breath, and if severe, may produce total disability. The usual symptoms of tuberculosis, such as fever, night sweats, loss of weight and productive cough may make their appearance only a year or so before death, The dyspnoea and disability which were formerly believed to be characteristic of silicosis were in most instances due to the massive fibrosis and emphysema which followed the combined action of tubercle bacilli and silica. Silicosis, alone, rarely causes significant emphysema, with its resultant shortness of breath and disability.
In making a diagnosis of silicosis, it is essential to ascertain whether the man worked in a silica exposure, and if he has, whether he had sufficient exposure to cause the disease. Though this seems ele mentary, cases have been labelled silicosis where there was never any exposure to silica, or where there had been exposure for only several months. The tendency to rely solely upon a single chest film, with no enquiry made as to past exposure, frequently results in such mistakes in diagnosis. Much harm can be done a man in telling him that his disability is due to silicosis, if it should be shown subsequently that he does not have the disease.
Recommended M.A.C.: For dusts containing over 50% free silica, the recommended maximum allowable concentration for prolonged exposure is 5 million particles per cubic foot (M.P.P.C.F.)
For dusts containing 5 to 50% free silica, the recommended M.A.C. is 20 M.P.P.C.F.
For dusts containing less than 5% free silica, the recommended M.A.C. is'50 M.P.P.C.F.
ASBESTOS
Canada is one of the principal countries producing asbestos. This material is chiefly hydrated magnesium silicate, occurring as a white
*
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fibrous ore. The fibres, when separated, may be spun into yarn and woven in much the same manner as ordinary textiles or they may be ground and mixed with other materials to form insulating boards or sheets. Exposure to the dust occurs in the crushing, carding, spinning and weaving of the material, and in the manufacture of brake linings and asbestos insulating products.
The essentia] lesion produced is a diffuse fibrosis which probably begins as a "collar" about the terminal bronchioles. Usually, at least 4 to 7 years of exposure are required before the production of a seri ous degree of fibrosis. There is apparently less predisposition to tuberculosis than is the case with silicosis.
Clinically, the most striking sign is shortness of breath of gradually increasin intensity, often associated with a dry cough. In the early stages physical signs are absent or slight; in the later stages r&les may be heard, the diastolic blood pressure is raised, the second ' pulmonary sound is accentuated, and in long-standing cases there is frequently clubbing of the fingers. In the early stages of the disease the chest X-ray reveals a ground-glass or granular change, chiefly in the lower lung fields; as the condition progresses the heart outline becomes, "shaggy" and irregular patches of mottled shadowing may be seen.
At autopsy, the pleurae are thickened and adherent and thick subpleural fibrous plaques are often present. Where the disease is far advanced there are usually large areas of fibrosis, with emphy sematous changes in the apices and bases. The alveolar walls are thickened, and the characteristic "asbestos bodies" are found.
Recommended M.A.C.: 5 to 10 M.P.P.C.F.
FUME PRODUCED DURING THE FUSION OF BAUXITE
In 1942 an occupational lung disease caused by the fumes produced during the fusion of bauxite in the manufacture of artificial alumina abrasives was discovered by Dr. C. G. Shaver, Superintendent of the Niagara Peninsula Sanatorium. Bauxite is a natural hydrated alumina or aluminum oxide (AUOj) containing small amounts of silica. When fused, a crystalline alumina or artificial corundum is formed. In the manufacture of corundum the bauxite is heated in open metal pots by means of an electric arc. During the fusion, dense white fumes are given off. The fumes consist chiefly of alumina (40 to 60%) and amorphous silica (30 to 45%). The greatest exposure occurs among men operating overhead cranes and among those who shovel mix into the furnaces.
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The lesion produced is essentially a diffuse interstitial fibrosis. The nodule formation, which characterizes silicosis, is absent. In the early stages there are no symptoms or clinical signs. The radiographic changes consist Qf an indefinite granular or lace-like appear ance in the apices and sub-apical regions. As the condition pro gresses, the lace-like shadowing extends into the lower lung filelds In the later stages the whole lung field may present a granular, or irregular, nodular appearance. The diaphragm is distorted and the mediastinum widened. Up to this point, the patient has usually had no complaints, and the only physical sign is a decreasing vital capacity. In such cases, spontaneous pneumothorax, frequently bilateral, may occur, with complaint of sudden extreme dyspnoea and/or severe chest pain. With the occurrence of the pneumothorax the man is nearly always totally incapacitated. The heart is retracted to the uncollapsed side, and the periphery of the collapsed lung may show large emphysematous blebs or bullae. The lungs of cases coming to autopsy have shown massive strands of interstitial hyaline fibrosis, with areas of compensatory emphysema. The pleurae are thickened or adherent, and sub-pleural bullae are usually present. There is no nodule formation. Extensive lung fibrosis may follow as little as 2 or 3 years of exposure, though usually the period of exposure is longer. The exact factor in the fumes which is responsible for causing the condition has not yet been isolated. The possibility that the fibrosis may be due to silica, modified in its action by the presence of alumina or of other materials present in the fumes, has to be considered. On the other hand, exposure of workmen in Germany during the past war to aluminum powder resulted in the development of a lung condition which, from the reports published, appears to be essentially the same as that discovered by Shaver. There is some suggestion that similar cases have also occurred in Sweden following exposure to aluminum powder. These exposures are being inves tigated.
Recommended M.A.C.: No values have been set, as yet. Periodic chest X-ray is essential to the early detection of cases.
Group V. Dusts and Fumes of Undetermined Pathogenicity to the Lung:
The effect of certain dusts and fumes on the body and the role they play in causing lung disease has not yet been clearly determined.
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TALC
Talc or soapstone, a hydrated magnesium silicate, is used as a filler in rubber, plastics, paints, insulating materials, cosmetics and dusting powders. Exposure may occur in the mixing, crushing and milling of the material, and in its use as a filler. Reports published indicate that exposure to talc dust may be associated with the development of a diffuse fibrosis, with symptoms of dyspnoea, cough and fatigue, and with the production of disability. Radiologically there may be a diffuse, fine granular shadowing throughout both lung fields, or the shadowing may be of a nodular type, resembling silicosis. Autopsy reports describe irregular areas and bands of cellular fibrosis sur rounding the vessels and bronchi, producing thickening of the alveolar walls. No silicotic nodules were found. Though some investigators believe that talc, per se, is responsible, the possibility that the con dition is produced by a modified action of free silica present in the talc has to be borne in mind. Further investigation is needed to decide the question.
Recommended M.A.C.: It is felt by some authorities that the concentration of talc dust in air should not exceed 20 M.P.P.C.F. where men are exposed repeatedly for 8 or more.hours each day.
MICA
A potassium-aluminum or magnesium-aluminum silicate. There is no definite evidence that exposure to mica dust causes pulmonary fibrosis. The possibility of free silica being present in the earth from which mica is obtained must be remembered.
Recommended M.A.C.: 50 M.P.P.C.F., where the mica contains less than 5% silica.
DIATOMACEOUS EARTH
Natural diatomaceous earth is an amorphous form of silica. In the amorphous state, the material does not cause disabling lung fibrosis. When calcined with certain fluxes, a portion of the amorphous silica is converted into crystalline silica, and men exposed to this form of the earth have been reported to develop a lung fibrosis which does not exhibit the nodule formation characteristic of silicosis. Pneumo thorax has been reported to occur frequently in the men affected.
Recommended M.A.C.: No limit has been set.
ARSENIC, CHROMIUM AND RADIOACTIVE DUSTS
There is some evidence that exposure to dusts of arsenic, chromium and radioactive materials has been associated with a higher incidence
ST0853895
110 DIAGNOSIS OF OCCUPATIONAL DISEASES
of pulmonary cancer than occurs in the general population. In the case of arsenic and the radioactive dusts, the evidence that these materials may cause carcinoma of the lung is fairly strong. How ever, in the case of an individual with lung cancer, it is as yet impos sible to say that the carcinoma is the result of his exposure, even where there has been prolonged exposure to one or more of these materials. The role played by exposure to dusts and fumes in the development of pulmonary carcinoma is extremely difficult to assess and it may be many years before the relationship is clear.
Section K. Harmful Chemicals
Acetaldehyde (Acetic Aldehyde; Acetyl Hydride; Aldehyde;
Ethanal; Ethyl Aldehyde). Formula: CH*CHO. Properties: A colourless liquid, having a strong, pungent,
fruity odour. Inflammable. Specific Gravity: 0-78 times as heavy as water. Boiling Point: 69*4 F. Vapour Density: 1-5 times heavier than air. Volatility: Is quite volatile at ordinary room temperatures. Acetaldehyde is miscible with water, alcohol, benzol, ether, acetone and gasoline.
Uses and Occurrence: Used in the manufacture of chemicals and dyes, plastics, synthetic rubber, disinfectants and preservatives, drugs and perfumes. Is employed in photography and in the silvering of mirrors.
Mode of Entry into Body: As a vapour, through inhalation. Physiological Action and Toxicity: Acetaldehyde is eliminated
in the bile by the liver. The vapour is irritant to the mucous membranes of the eyes, mouth and respiratory tract. The majority of subjects find 50 ppm irritating to the eyes, and a concentration of less than 200 ppm is definitely irritating to the nose and throat. Acetaldehyde possesses anaesthetic properties, but this action is masked by the more intense irritant action on the upper respiratory tract. Continued exposure to very high concentrations may result in death from respiratory paralysis. Acetaldehyde is less toxic than
ST0853896
310 DIAGNOSIS OF OCCUPATIONAL DISEASES
SELECTED BIBLIOGRAPHY
Industrial Hygiene and Toxicology. (Two volumes). Frank A; Patty. IntendeOoe Publishers, Inc., New York, 1949.
Occupational Medicine and Industrial Hygiene. Rutherford T. Johnstone. C. V. Mosby Company, St. Louis, 1948.
Toxicity of Industrial Organic Solvents. Summaries of published work. Ethel Browning; Medical Research Council, Industrial Health Research Board. , Report No. 80. His. Majesty's Stationery Office, London, 1937.
Toxicology and Hygiene of Industrial Solvents. K. B. Lehmann and F. Flury. William & Wilkins Company, Baltimore, 1943.
Industrial Toxicology. Alice Hamilton. Harper & Bros. New York, 1934.
Industrial Toxicology. " Alice Hamilton and Rutherford T. Johnstone. Oxford University Press. New York, 1945.
Noxious Gases, 2nd Edition. Yandell Henderson and Howard W. Haggard. Reinhold Publishing Co. New York, 1943.
Manual of Industrial Hygiene. Division of Industrial Hygiene, National Institute of Health, U.S. Public Health Service. W. B. Saunders Company. Philadelphia, 1944.
Industrial Hygiene. A. J. Lanza and Jacob A. Goldberg. Oxford University Press. New York, 1939.
Silicosis and Asbeetosis. A. J. Lanza. Oxford University Press. New York, 1938.
Industrial Maladies. Sir Thomas Legge. Oxford University Press. London, 1934.
Occupational Diseases of the Skin, 2nd Edition. Louis Schwartz, Louis Tulipan and Samuel N. Peck. Lea & Febiger. Philadelphia, 1947.
The Dermatergosea; or Occupational Affections of the Skin. R. Prosser White. H. K. Lewis & Co. Ltd. London, 1934.
Condensed Chemical Dictionary. Chemical Engineering Catalog. Reinhold Publishing Corp. New York, 1942.
Factory Mutual Data Sheet No. 34.10. Properties of Flammable Liquids, Gases and Solids.
The Associated Factoiy Mutual Fire Insurance Companies, 184 High Street, Boston, Mass., 1940.
National Fire Codes, Vol. 1, Flammable Liquids, Gases, Chemicals and Explosives.
National Fire Protection Association, Boston, Mass., 1945.
ST0853897
INDEX
B
Acetaldehyde, 110-11
Babbitt metal, 133
Acetanilide, see Amino compounds of
Bagaaspais, 100-1
benzol, `toluol, xylol
Banana oil, see Amyl acetate
Acetic aldehyde, see Acetaldehyde
Barium and its compounds, 133
Acetic ether, see Ethyl acetate
Bauxite, 107-8
Acetone, 111-12
Benzene, see Benzol
Acetylene, 112
Benzine, see Petroleum hydrocarbons
Acetylene dichloride, see Dichloroethyfene under Chlorinated hydrocar*
Benzino-form, see Carbon tetrachloride Benzol, 134-6
bons
Beryllium and its compounds. 136-8
Acetylene tetrachloride, see Tetra-
dust, 103-4
chloroethane
Bebuiaphthyiamine, see Naphthyla-
Acetylene trichloride, see Trichloroe
mines
thylene
Bleaching powder, see Chloride of lime
Acetyl hydride, see Acetaldehyde
Brass ana bronze, 138
Acraldehyde, see Acrolein
Bromic ether, see Ethyl bromide under
Acridine, 113
Brominated hydrocarbons
Acrolein, 113-14
Brominated hydrocarbons, 139-40
Acrylic aldehyde, see Acrolein
Bromine, 141
Acrylonitrile, 114-15
Bromoetbane, see Ethyl bromide under
Adorin, see Formaldehyde
Brominated hydrocarbons
Air pressure, abnormalities of, 77 Alconols, 115
Bromomethane, see Methyl bromide under Brominated hydrocarbons
Aldehydes, 115
Butadiene, 141-2
Aldoform, see Formaldehyde
Butane, see Aliphatic hydrocarbons
Aliphatic hydrocarbons, 116-18
Butanol, see Butyl alcohol
Alkalies, 118
.
Butanone, 142-3
Ally! aldehyde, see Acrolein
Butylene, see Aliphatic hydrocarbons
Aluminum, 118-19
Butyl acetate, 143
. daft, 119
Butyl alcohol, 144-5
Aminooenzene, aminobenzol, resAniline
Butyl hydride, see Butane under
Amino compounds of benzol, toluol, xylol, 119-22
Ammonia, 122-3 Amylacetate, 123-4
Aliphatic hydrocarbons Butyric alcohol, see Butyl alcohol Byssinosis, 99-100
Amyl acetic ester, see Amyl acetate
Amyl.alcohol, 124
Amyl anhydride, see Pentane under
, Aliphatic hydrocarbons
Amyl hydride, see Pentane under A'ilipnhaati'c hydrocarbons
Armaylene, see Aliphatic hydrocarbons Aniline, 125-6
Cadmium and its compounds, 145-6 dust, 103-4
Calcium cyanamide, 146-7 Calcium hypochlorite, see Chloride of
lime
Anthracene, see Aromatic hydrocar bons
Anthrax, .91
Antimony and its compounds, 126-7 dust, 103
Cauadol, see Benzine under Petroleum hydrocarbons
Caproyf hydride, see Hexane under Aliphatic hydrocarbons
Carbolic add, see Phenol
Aromatic hydrocarbons, 128-9 Arsenic and its compounds (except
arsine), 129-31
dust, 109-10
Arseniuretted hydrogen, see Arsine Arsine, 131-2 Asbestos, 106-7
Carbon bichloride, see Tetrachloroethylene
Carbon dioxide, 147-8
Carbon disulphide, 148-50 Carbon dusts, 101-2
Carbon monoxide, 150-2 Carbon^ tetrachloride, 152-4
Azotic add, see Nitric add
Carbonic add, see Carbon dioxide
311
ST0853898
312 INDEX
Carbonyl chloride, ;m Phoegene Carrene No. 2, see Monofluoro-tri-
chlorometfaane under Freon Caustics, see Alkalies Cellosolve, see Ethylene glycol
monoethyl ether Cement dust, 102 Chloride of lime, 154-5 Chlorinated diphenyls, 155-6 Chlorinated hydrocarbons, 156-60 Chlorinated lime, see Chloride of lime Chlorinated naphthalenes, 160-1 Chlorine, 161-2 ChloroaniHnes, see Amino compounds
of benzol, toluol and xylol Chlorobenzols, 162-3 Chlorobutadiene, 163-4 Chloro-dinitrobenzol, see Nitro com
pounds of benzol, toluol and xylol Chloroethane, see Ethyl chloride under
Chlorinated hydrocarbons Chloroetfiylene, see Vinyl chloride Chloroform, see Chlorinated hydro
carbons Chlorohydric add, see Hydrogen
chloride Chlororoethane, see Methyl chloride Chloro-nltrobenrol, see Nitro com
pounds of benzol, toluol, xylol
Chloroprene, see Chlorobutadiene
Chlonotoluidines, see Amino com pounds of benzol, toluol, xylol
Chlorylene, iw Trichloroethylene
Chromic' add and the chromates, 164-5
Chromium, 165
Cinnamene, res Styrene
Cinnamol, see Styrene
Chlorex, see Dichloroethyl ether
Coal dust,-101--2
Coal naphtha, see Benzol
Cobalt and its compounds, 166 dust, 103
Cologne spirits, seeEthyl alcohol
Colonial spirits, see Methyl alcohol
Columbian spirits, see Methyl alcohol
Copper and its compounds, 166 dust, 103
Cotton dust, 99-100
Cresol, 167-8
Cresyiic add, see Cresol
Cyanamide, see Caldum cyanamide
Cyanides, 168--9
Cyanhydric add, see Hydrocyanic add
Cyanogen and its compounds, 169-70
Cydohexa'ne, see Cydoparaffins
Cycloparaffins, 170-1
D
D.D.T., 172-3 Dampness, 79 _ Decane, see Aliphatic hydrocarbons Definitions, 10-14 Dermatoses, occupational, 279-97
diagnosis of, 284-5 from adds and alkalies, 282 from chromic add, 282 from cyanide solutions, 283 from drags, 284 from explosive chemicals, 283-4 from nickel, 282 from plastics and waxes, 282-3 from oils and greases, 281-2 from rubber ingredients, 283 from solvents, 282 list of occupations with their skin
irritants, 289-97 prevention of, 285-88 Diagnosis of occupational diseases, 7-9
Diaminobenzol, see Phenylene diamine under Amino compounds of benzol, toluol, xylol
Diatomaceous earth, 109 Dibromoethane, see Ethylene dibro
mide under Brominated hydro carbons Dichlorobenzene, dichlorobenzol, see Chlorobenzol Dichloro-difluoro-methane, see Freon Dichloroethane, see Ethylene dichlor ide
Dichloroethylene, see Chlorinated hydrocarbons
Djchloroethyl ether, 173-4 Dichloromethane, see Methylene
chloride Dichloro-monofluoro-methane, see
Freon
2, 4, Dichlorophenoxy acetic add (2, 4-D), 174-5
Dichloro-tetrafluoro-ethane, see Freon Diethylene dioxide, 175-6 Diethylene glycol, see Glycols Difluoro-mooochloro-methane, see
Freon
Dimethyl benzene, dimethyl benzol, res Xylol
Dimethyl ketal, see Acetone Dimethyl ketone, see Acetone Dimethyl methane, res Propane under
Aliphatic hydrocarbons Dimethyl sulphate, 176-7 Dinitrobenzol, see Nitro compounds of
benzol, toluol, xylol Dinitrophenol, 177--8 Dioxan, see Diethylene dioxide
Diphenyl, 179
ST0853899
INDEX
313
Dry ice, see Carbon dioxide Dusts, 96-110
aluminum, 107-8, 119 antimony, 103 arsenic, 109--10 asbestos, 106-7 bagasse. 100-1 beryllium, 103-4, 137-8 cadmium, 103-4 carbon, 101-2 cement, 102 chemical composition of, 96 chromium, 109-10 cobalt, 103 concentration of, 97 copper, 103 cotton, 99-100 definition of, 10-11 diatomaceous earth, 109 grain, 100 inorganic, 101-10 iron, 102 lead, 103 length of exposure to, 98 manganese, 103 mercury, 103 mica, 109 nickel, 103 of calcium compounds, 102 of magnesium compounds, 102
organic, 98-101 osmium, 103 radioactive, 109-10 silica. 104-6 silicate, 102-3 silver, 103 size of, 97 talc, 109 vanadium, 103-4 wheat, 100 zinc, 103 Dutch liquid, dutch oil, see Ethylene
dichloride
E
Elayl chloride, see Ethylene dichloride Electricity, bums and shocks from,
88-9 Ervsipeloid, 92 Ethane, see Aliphatic hydrocarbons Ethanal, see Acetaldehyde Ethanol, see Ethyl alcohol Ethine, see Acetylene Ethyl acetate, 179-80 Ethyl alcohol, 180--1 Ethyl aldehyde, see Acetaldehyde Ethyl benzene (ethyl benzol), 181-2 .. Ethyl bromide, see Brominated hydro
carbons
Ethyl chloride, see Chlorinated hydro carbons
Ethyl hydroxide, see Ethyl alcohol Ethyl mercury phosphate, see Mercury Ethyl silicate, 182-3 Ethylene, see Aliphatic hydrocarbons Ethylene bromide, see Ethylene dibro
mide under Brominated hydro carbons Ethylene chloride, see Ethylene di chloride Ethylene chlorohydrin, 183-4 Ethylene dibromide, see Brominated hydrocarbons Ethylene diehloride, 184-5 Ethylene glycol, see Glycols Ethylene glycol monoethyl ether, 185-6 Ethylene glycol monomethyl ether, 186-7 Ethylene oxide, 187-8 Ethylene trichloride, see Chlorinated hydrocarbons
Festoform, see Formaldehyde Fluorine and the fluorides, 188-9 Fluorohydric add, see Hydrogen
fluoride Formaldehyde, 189-91 Formalin, see Formaldehyde Formal!th, see Formaldehyde Formic add, 191 Formic aldehyde, see Formaldehyde Formitrol, see Formaldehyde Formol, tee Formalddiyde Formolyptol, see Forinaldehj'de Formonitrile, see Hydrocyanic add Formyl trichloride, see Chloroform
under Chlorinated hydrocarbons Freon, 191-3 Fumes (see Dusts)
definition of, 11 from bauxite, 107-8 nitrous, 230-2 Fungus infections, 92-3 Furfural, 193-4
Gasoline, see Petroleum hydrocarbons Glanders, 92 Glycol chlorohydrin, see Ethylene
chlorohydrin Glycols, 194-5 Grain alcohol, see Ethyl alcohol Grain dust, 100 Graphite dust, 101-2
1
ST 0853900
314 INDEX
H
"Halowax", see Chlorinated naphtha lenes
Hearing, noise and, 80-1 Heat, illness from, 78-9 Heptane, see Aliphatic hydrocarbons Hexahydrobenzene (hexahydroben-
zol), see Cyclohexane under Cyclo paraffins Hexamethylene tetramine, 195-6 Hexanaphthene, see Cyclohexane under Cycloparaffins Hexane, see Aliphatic hydrocarbons Hexanone, see Ketones Hexone, see Ketones Hexylene, see Aliphatic hydrocarbons Hexyl hydride, see Hexane under Aliphatic hydrocarbons Hydrobromic ether, see Ethyl bromide under Brominated hydrocarbons Hydrochloric add, 196-7 Hydrochloric ether, see Ethyl chloride under Chlorinated hydrocarbons Hydrocyanic add, 197-8 Hydrofluoric add, 198-9 Hydrogen arsenide, see Arsine Hydrogen chloride, see Hydrochloric add Hydrogen cyanide, see Hydrocyanic add Hydrogen fluoride, see Hydrofluoric add Hydrogen nitrate, see Nitric add Hydrogen sulphide, 199-200 Hydroxybenzene (hydroxybenzol), see Phenol
I
Illumination, defective, 79-80 Infections, 91-5
fungus, 92-3 septic, 95 Iodine, 200-1 Infrared rays, 86-7 Iron carbonyl, 201 Iron dust, 102 Isoprene, 201-2
K
Kerosene, see Petroleum hydrocarbons Ketones, 202
L
Leaching powder, see Chloride of lime Lead and its compounds, 202-6
dust, 103 Lead arsenate, see Lead Litharge, see Lead
M
Magnesium and its compounds, 206-7 dust, 102
Manganese and its compounds, 208-9 dust, 103
March gas, see Methane under Ali phatic hydrocarbons
Maximum allowable concentration, definition of, 12-13
M.E.K., see Butanone Mercury and its compounds, 210-11
dust, 103 Metal fume fever, 212 Methane, see Aliphatic hydrocarbons Methanol, see Methyl alcohol ' Methenyl, see Methyl formate Methyl-acetal, see Acetone Methyl acetate, 213 Methyl alcohol, 213-5 Methyl aldehyde, see Formaldehyde Methyl aniline, see Amino compounds
of benzol, toluol and xylol Methyl benzene (methyl benzol), see
Toluol Methyl bromide, see Brominated
hydrocarbons Methyl butyl ketone, see Hexanone
under Ketones Methyl cellosolve, see Ethylene glycol
mooomethyl ether Methyl chloride, 215-6 Methyl ethyl ketone, see Butanone Methyl ethyl methane, see Butane
under Aliphatic hydrocarbons Methyl ethylene glycol, see Propylene
glycol under Glycols Methyl formate, 216-7 Methyl glycol, see Propylene glycol
under Glycols Methyl hydrate, see Methyl alcohol Methyl hydride, see Methane under
Aliphatic hydrocarbons Methyl hydroxide, see Methyl alcohol Methyl iaobutyl ketone, see Hexone
under Ketones Methyl mercury phosphate, see Mer
cury Methyl propanone, see Pentanone Methyl propyl ketone, see Pentanone Methyl trichloride, see Chloroform
under Chlorinated hydrocarbons
STO85390I
INDEX
315
Methylene chloride, 217-8
P
Methylene dichloride, see Methylene
chloride
Paracetaldehyde, see Paraldehyde
Metol, 218-9 Mirbane, eaaence of, oil of, see Nitro-
Paraldehyde, 233-4 Paraphenylene-diamine, see' Amino
benzol Monochlorobenzene (raonochloroben-
zol), see Chlorobenzols
Monochloroethane, see Ethyl chloride
under Chlorinated hydrocarbons Monochloromethane, see Methyl chlor
ide Monofluoro-trichloro-methane, see
compounds of benzol, toluol, xylol Paris green, see Arsenic
Pear oil, see Amyl acetate
Pentane, see Aliphatic hydrocarbons Pentanol, see Amyl alcohol
Pentanone, 234-5 Perchloroethylene, see Tetrachloro-
ethylene
Freon Monohydroxybenzol, see Phenol
Perchloromethane, see Carbon tetra chloride
Monomeric styrene, see Styrene Mononitrobehrol, see Nitrobenzol
Muriatic add, see hydrochloric add Muriatic ether, see Ethyl chloride
under Chlorinated hydrocarbons
Petroleum hydrocarbons, 235-9 Petroleum ether, see Petroleum hydro
carbons
Petroleum naphtha, see Petroleum hydrocarbons
Phenic add, see Phenol N Phenol, 239-41
Phenyiamine, see Aniline
Naphtha, 219 Naphthois, 219-20
Naphthyiamines, 220-1 Neoprene, see Chlorobutadiene
Phenyl ahiBne, see Amino compounds of benzol, toluol, xylol
Phenyl ethane, see Ethyl benzene Phenyl ethylene, see Styrene
Nickel and its compounds, 221-2
Phenyl hydrate; see Phenol
dermatitis from, 282
Phenyl hydrazine, 241-2
dust, 103
Phenyl hydride, see Benzol
Nickel carbonyl, 222-3
Nicotine and tobacco, 224-5 Nitric add, 225-6
Phenyl methane, see Toluol Phenylic add, see Phenol
i!
Nitroanilines, see Amino compounds of benzol, toluol, xylol
Phosgene, 242-3 Phosphine, 243-4
Nitrobenzene, see Nitrobenzol Nitrobenzide, see Nitrobenzol Nitrobenzol, 226-7
Nitrochlors, see Nitro compounds of benzol, toluol, xylol
Nitro compounds of benzol, toluol, xylol, 228-9
Nitroglycerine, 229-30 "Nitrous fumes", 230-2 Noise, 80-1
Phosphorus and its compounds, 244-7 Phosphor*tted hydrogen, see Phos
phine
Picric add, see Trinitrophenol Pitch, see Tar and pitch
Potassium cyanide, see Cyanides Potassium hydroxide, see Alkalies
Preservaline, see Formaldehyde Propane, see Aliphatic hydrocarbons
Nonane, see Aliphatic hydrocarbons Nystagmus, 80
Propanol, see Propyl alcohol Propanone, see Acetone
Propenal, see Acrolein O Propyl alcohol, 247;-8
Occupations and their potential haz ards, list of 15-76,
with their skin irritants, list of, 289-97
Propylene, see Aliphatic hydrocarbons Propylene glycol, see Glycols
Prussic add, see Hydrocyanic add Psittacosis, 93
Octane, see Aliphatic hydrocarbons
Pyridine, 248-9
Oxalic add, 232-3 Oxides of nitrogen, see "Nitrous
fumes"
Oxymethylene, see Formaldehyde
Pyroraudc aldehyde, see Furfural 0
Ozone, 233
Quicksilver, see Mercury.
ST 0853902
316 INDEX
R
Rabies, 93 Radiant energy, 81-8
from infrared rays, 86-7 from ultra high frequency radiations,
87-8 from ultra violet rays, 85-6 from x-rays, 83 Radioactive substances, 84-5 dusts from, 109-10 Radium, 84-5
S
Scheel's green, see Arsenic Schweinlurth green, see Arsenic Selenium and its compounds, 249-50 Siderosis, 102 Silica, 104-6 Silicate dusts, 102-3 Silicosis, 104-6
tuberculosis and, 105-6. Silver and its compounds, 250-51
dust, 103 Sodium hydroxide, see Alkalies Solder, 251 Stoddard solvent, see Petroleum hydro
carbons Styrene, 251-2 Styrol, stvrolene, see Styrene Sugar of lead, see Lead Sulphur chloride, 252-3 Sulphur dioxide, 253-4 Sulphur monochloride, see Sulphur
chloride Sulphur subchloride, see Sulphur chlor
ide Sulphur trioxide, 254 Sulphuretted hydrogen, see Hydrogen
sulphide Sulphuric add, 255 Sulphuric anhydride, see Sulphur tri
oxide Sulphurous add anhydride, see Sul-
hur dioxide etic rubber, 255-6
T
Talc dust, 109 Tar and pitch, 256-7 Tellurium and its compounds, 257-8 Temperature, abnormalities of, 78-9 Tetanus, 94 Tetrachloroethane, 258-9 Tetrachloroethylene, 260 Tetrachloromethane, see Carbon tetra
chloride Tetraethyl lead, see Lead
Tetryi, 260-1 Thallium and its compounds, 261-2 Thorium and its compounds, 262-3 Thresher's lung, 100 Tin and its compounds, 263 Titanium dioxide, 264 Tobacco, see Nicotine and tobacco
dust, 98 Toluene, see Toluol Toluidine, see Amino compounds of
benzol, toluol, xylol Toluol, 264-5 "Tri'\ see Trichloroethylene Trichloroethane, see Ethylene tri
chloride under Chlorinated hydro carbons Trichloroethylene, 265-6 Trichloromethane, see Chloroform under Chlorinated hydrocarbons Trichloro-trifluoro-ethane, see Freon Trimethylene glycol, see propylene glycol under glycols Trimtrobenzol, see Nitro compounds of benzol, toluol, xylol Trinitroglycerine, see Nitroglycerine Trinitrophenol, 266-7 Trinitrotoluol, 267-9 Triorthocresyl phosphate, 269-70 Tuberculosis, 105-6 Tularaemia, 94 Turpentine, 270-2 Type metal, 272
U
Ultra high frequency radiations, 87-8 Ultraviolet rays, 85-6 Undulant fever, 94-5 Uranium and its compounds, 272-3 Urotropine, see Hexamethylene tetra-
mme
V
Vanadium and its compounds, 273-4 dust, 103-4
Vibration, 89-90 tools causing, 90-1
Vinegar naphtha, see Ethyl acetate Vinyl benzene, see Styrene Vinyl chloride, 274-5 Vinyl cyanide, see Acrylonitrile Vinyl ethylene, see Butadiene Vitriol, oil of, see Sulphuric add
W
Weil's disease, 95 `Westrosol", see Trichloroethylene Wheat dust, 100-1
ST 0853903
INDEX
317
Wood alcohol, see Methyl alcohol Wood naphtha, wood spirits, see
Methyl alcohol Workmen's compensation acts, 299-
309 accidents covered by, 301
accident fund, 299-300 administration of, 299 choice of doctor under, 303
first aid regulations under, 303 industries covered by, 300-1 medical aid under, 302-3
employers' schemes, for, 302-3
occupational diseases covered by, 301-2 reporting of, 304 table of, 306-7
physicians' functions under, 303
purpose of, 299 rehabilitation under, 303 submission of claims under, 304 waiting period under, 302
X
X-rays, 83-4 Xylene, see Xylol Xylidine, see Amino compounds of
benzol, toluol, xvlol Xylol, 275
Z
Zinc and its compounds, 275-7 dust, 103