Bacteria: Especially as they are related to the economy of nature, to industrial processes, and to the public healthNewman, George, Sir
Science
Bacteria: Especially as they are related to the economy of nature, to industrial processes, and to the public health
Newman, George, Sir
Bacteria; Bacteriology
_The influence of gravity_ upon bacteria in the air may be observed
in various ways, in addition to its action within a limited area
like a sewer or a room. Miquel found in some investigations in Paris
that, whereas on the Rue de Rivoli 750 germs were present in a cubic
metre, yet at the summit of the Pantheon only 28 were found in the
same quantity of air. At the tops of mountains air is germ-free, and
bacteria increase in proportion to descent. As Tyndall has pointed
out, even ultra-microscopic cells obey the law of gravitation. This is
equally true in the limited areas of a laboratory or warehouse and in
the open air.
The conditions which affect the number of bacteria in the air
are various. After a fall of rain or snow they are very markedly
diminished; during a dry wind they are increased. In open fields, free
from habitations, they are fewer, as would be expected, than in the
vicinity of manufactories, houses, or towns. A dry, sandy soil or a dry
surface of any kind will obviously favour the presence of organisms in
the air. Frankland found that fewer germs were present in the air in
winter than in summer, and that when the earth was covered with snow
the number was greatly reduced. Miquel and Freudenreich have declared
that the number of atmospheric bacteria is greater in the morning and
evening between the hours of six and eight than during the rest of the
day. But we venture to express the hope that such coincidental facts
may not be exalted into principles.
There is no numerical standard for bacteria in the air as there is in
water. The open air possibly averages about 250 per cubic metre. On
the seacoast this number would fall to less than half; in houses and
towns it would rise according to circumstances, and frequently in dry
weather reach thousands per cubic metre. When it is remembered _that
air possesses no pabulum_ for bacteria as do water and milk, it will be
understood that bacteria do not live in the air. They are only driven
by air-currents from one dry surface to another. Hence the quality
and quantity of air organisms depend entirely upon environment and
physical conditions. In some researches which the writer made into
the air of workshops in Soho in 1896, it was instructive to observe
that fewer bacteria were isolated by Sedgwick's sugar-tube in premises
which appeared to the naked eye polluted in a large degree than in
other premises apparently less contaminated. In the workroom of a
certain skin-curer the air was densely impregnated with particles
from the skin, yet scarcely a single bacterium was isolated. In the
polishing-room of a well-known hat firm, in which the air appeared to
the naked eye to be pure, and in which there was ample ventilation,
there were found four or five species of saprophytic bacteria. Quite
recently Mr. S. R. Trotman, public analyst for the city of Nottingham,
estimated the bacterial quality of the air of the streets of that town
during "the goose fair" held in the autumn.
Public-domain text, read in full here on John Shaqi.
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