Cooley's Cyclopædia of Practical Receipts and Collateral Information in the Arts, Manufactures, Professions, and Trades..., Sixth Edition, Volume ICooley, Arnold James
Science
Cooley's Cyclopædia of Practical Receipts and Collateral Information in the Arts, Manufactures, Professions, and Trades..., Sixth Edition, Volume I
Cooley, Arnold James
Formulas, recipes, etc.; Industrial arts -- Dictionaries; Technology -- Dictionaries
The effects resulting from breathing an impure atmosphere are necessarily
dependent upon the extent of the pollution and other conditions. When the
contamination is moderate the first effect is headache, accompanied with
lassitude, and a general paleness of the face and skin, owing to a
diminution of the red corpuscles of the blood or to their imperfect
aëration; the pulse becomes lowered, and at the same time the breathing is
accelerated. When in addition to breathing such air from day to day is
superadded the misfortune of an insufficiency of food, scrofula and
consumption very often follow. Dr Guy has demonstrated the great mortality
that is caused by consumption in those trades in which workmen pursue
their calling in hot, close, gas-lit rooms, in comparison with those who
pass most of their time in the open air. The amount of air required by
each person in a room is no less than 2100 feet per hour; when the
ventilation does not supply this amount of fresh air, the apartment smells
stuffy, the furniture becomes coated with a film of organic matter, unless
constantly cleaned, and the carbonic acid becomes increased beyond its
normal quantity.
Dr Parkes has shown that bronchitis and consumption are more frequently
than not contracted by those who live in an atmosphere of foul air. In the
years 1834 to 1847 the proportion of deaths in the ill-ventilated prison
of Leopoldstadt in Vienna was 86 per 1000, out of which number 51·4 per
1000 was due to phthisis or consumption; while in the well-ventilated
House of Correction in the same city the deaths were 14 per 1000, of which
7·9 were from phthisis; hence 43·5 cases per 1000 of the deaths were
clearly traceable to foul air and nothing else.
Mr Noel Hartley, in his valuable little manual, ‘Water, Air, and
Disinfectants,’ says: “During the outbreak of cattle plague in 1866, in
sheds containing twenty to thirty cows——which the owners kept closed to
such an extent that all chinks in the doors and windows were stuffed with
straw and matting, under an ignorant belief that thus the plague could be
kept out——very frequently the entire stock died in two or three days after
the first appearance of disease; while in other cases where animals were
housed in a well-cleaned and tidily-kept shed, with a plentiful supply of
fresh air, not only did some of them escape the disease altogether, but
the deaths were reduced to one third of the number of beasts attacked.”
The large supply of fresh air necessary in hospitals for contagious
diseases is fully recognised by medical men, and more especially so in
America. Wounds carefully protected from contact with impure air do not
suppurate, and organic fluids do not putrefy. On the other hand, in a bad
atmosphere sores become unhealthy, and are difficult to heal, erysipelas
and hospital gangrene frequently set in, while the best prevention and the
best means of cure for such afflictions is the greatest possible exposure
to fresh air.
Public-domain text, read in full here on John Shaqi.
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