Document 15BE3E4EXy2LDRdaGMxZJpLYm
American Society of Heating and Ventilating Engineers Guide, 1937
is due to the fact that the combining power of carbon monoxide with the haemoglobin of the red blood corpuscles is about 300 times greater than that of oxygen. Since the resulting stable combination destroys the power of the haemoglobin to unite with oxygen in the lungs and to supply it to the tissues, the effects are due to lack of oxygen, and the symptoms are those of anoxemia, namely, dizziness, headaches, sleepiness, fatigue and, in extreme cases, paralysis and death. The dangerous saturation level of the blood with carbon monoxide is about 50 per cent. Even as little as 0.07 per cent in the air will render, in half an hour, one quarter of the red corpuscles incapable of uniting with oxygen. One to two parts per 10,000 parts of air is set as a safe limit of pollution which may be breathed for a long time without producing perceptible symptoms.
Silicosis
Silicosis is a chronic disease of the lungs which results from the local physio-chemical action of hydrated silica upon the pulmonary tissue causing progressive lymphatic fibrosis, and rendering the tissue suscep tible to tuberculosis. The disease is slow in evolution, requiring usually a number of years of exposure. It occurs principally among granite workers, sand blasters, metal miners, metal polishers, potters, and mill stone workers.
Lead Poisoning
Lead poisoning is the most insidious and most common of all industrial diseases. It occurs principally among lead workers and smelters, lead miners, potters, painters, typesetters, stereotypers, plumbers, and workers with glass, gold and silver. Lead, in practically all forms, is a cumulative poison which is absorbed by way of the blood stream, chiefly from the respiratory tract, but also from the digestive tract and from the skin. The effect may be either an acute or chronic poisoning. The principal symptoms are colic, constipation, anemia, headache, anorexia, a bluish line along the edges of the gums, rheumatic pains, and, in extreme conditions, paralysis, blindness, insanity, and death.
It has been found6 that 2 mg per day is the smallest dose, by inhalation, which in the course of years may result in lead poisoning. Regular inhalation during the usual working hours of air containing less than 0.2 mg of lead per cubic meter does not seem to produce serious lead poisoning in individuals of representative industrial groups7.
Prevention
The prevention of industrial hazards from dusts and poisonous gases is largely a ventilation problem consisting of keeping the impurities in air down to a safe concentration. As yet there are no generally accepted standards on which to base the design of the ventilation equipment. Approximate data on the toxicity of various gases and fumes met with in industrial establishments are given in Table 1. Column 5, giving the maximum allowable concentrations for prolonged exposures, was com piled from experiments in which most exposures lasted not more than a
Lead Poisoning, by Thomas Morrison Legge (,Journal Royal Society Arts, 1929, Vol. 77, p. 1023). *What is a Dangerous Quantity of Lead Dust in Air, by C. M. Sails (Industrial Hygiene Bulletin, New York State Department of Labor, 1925).
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Chapter 15--Air Pollution
eek, and it is reasonable to assume that over more prolonged exposures
sffuch 'concentrations would cause pernicious effects. Much is known concerning the physiological and pathological effects
nduced by various types and concentrations of atmospheric pollutants. In the absence of an accepted standard for safe breathing, and because of the slow, cumulative effects of certain kinds of air contaminants, the best procedure is the periodic medical examination of individuals, and the
Toxicity of Gases and Fumes in Parts per 10,000 Parts of Air* Table 1.
Vapob ob Gas
Rapidlt Fatal
Maximum 1
CONCENTRATION
yiztoob
raou 1 Horn
Maximum CONCENTRATION
roB I Houh
Maximum Allowabls for Prolonged
Exposure
Carbon monoxide-- Carbon dioxide-.-.--Hydrocyanic acid.....
Ammonia.. Hydrochloric acid gas.__-J
Chlorine. Hydrofluoric acid gas.--
Sulphur dioxide.. Hydrogen sulphideCarbon bisulphide--
Phosphene.-------------
Arsine------------------PhosgeneNitrous fumes-------------
Benzene---------------1-- Toluene and xylene.--
Aniline------------------- -- Nitrobenzene------- ---
PetrolCarbon tetrachloride-
ChloroformTetrachlorethane.------Trichlorethylene-------Methyl chloride.-------Methyl bromide......... Lead vapor.--------------
40 800-1000
30 50-100 10-20
10 2 4-5 10-30
20
2X
Over X 2X~7X
190 190
243 480 250 73 370 1500-3000 200-400
15-20
ix
25
X X to
5-7 11 4-6
X X
i-m
100-220 240 140
200-400 20-40
10
X~
3
2-3 5 1-2
X
31-47 31-47
1-1X
Xoo 40 50
70 10
x
i
Xo Xoo
X3
Xo
1
If
1X-3
Xo' Xoo
2
IX
5-10 2 5-6
Original data compiled by Y. Henderson and H. Haggard. (See Noxious Gases, 1927.) Data revised by T. M. Legge. (See Lessons Learned from Industrial Gases and Fumes, Institute of Chemistry of Great
Britain and Ireland, London, 1930.)
routine measurement and study of the concentration and the physical and chemical characteristics of the dusts to which those individuals are
exposed.
SMOKE AND AIR POLLUTION ABATEMENT
Successful abatement of atmospheric pollution requires the combined efforts of the combustion engineer, the public health officer, and the public itself. The complete electrification of industry and railroads, and
the separation of industrial and residential communities would aid
materially in the effective solution of the problem.
1
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