Hygiene: a manual of personal and public health (New Edition)Newsholme, Arthur, Sir
Science
Hygiene: a manual of personal and public health (New Edition)
Newsholme, Arthur, Sir
Hygiene; Public health -- Great Britain; Sanitation
Impurities are much commoner and more abundant in the air of
enclosed spaces than in the external air, as the natural processes
of purification cannot be brought to bear so efficiently in the
former case. In sick rooms, hospitals, etc., impurities arise, which
are not present where only healthy people are collected. The most
important impurities are derived from the respiration of animals,
and the combustion of gases, candles, or lamps in rooms, from sewage
emanations, from various occupations, and the air of marshes, mines,
church-yards, etc. These may be classed under two heads—_solid_
and _gaseous_; the solid being simply suspended in the air in a
finely divided condition, or floated about in a coarser condition
by currents of air. They are revealed in an atmosphere in which one
did not previously suspect their existence, by the passage of a beam
of sunlight. Light itself is invisible, but its course is rendered
visible by the particles from which its rays are reflected. Tyndall
demonstrated the presence of minute particulate matter in the air of
all ordinary situations, and showed that a large proportion of this
matter consists of germs (microbes). In his experiments with vapours
in closed tubes, floating matter was always revealed by a concentrated
beam of light, even though the air entering the tube had been first
drawn through sulphuric acid and through a strong solution of caustic
potash. If this air was then passed through a red-hot platinum tube and
across folds of red-hot platinum gauze, it became _optically empty_;
the floating matter had been burnt, and disappeared. It was therefore
organic. In subsequent experiments, he took organic solutions, as of
meat, turnip, and the like, and rendered them sterile by repeated
boiling. They remained sterile when kept in air-tight vessels or
in vessels covered with a thick layer of cotton-wool, which would
efficiently filter any entering air; but when exposed to the air,
they invariably became turbid, owing to an enormous multiplication of
germs. Clearly, therefore, air contains organic, matter, and much of
this organic matter consists of living germs. Most of these germs are
comparatively harmless under ordinary conditions. They are, however,
the causes of fermentation, putrefaction, and all the processes of
decomposition which occur in organic substances. The importance of the
exclusion of the dust of air has received an important application
in _Lister’s antiseptic_ and in the _aseptic_ system of treatment
of wounds. Formerly accidents and operations were frequently fatal;
now vast numbers of lives are saved by improved surgical methods.
The original _antiseptic_ method acted on the supposition that some
germicidal application to the wounds was necessary; now it is realized
that if, during the operation, germs are not allowed to remain in the
wound, all that is afterwards necessary to insure rapid recovery is
that they shall be prevented from entering the wound from the external
Public-domain text, read in full here on John Shaqi.
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