Merkel found water which originally only boasted of from four to five
bacteria per cubic centimetre, subsequently, when ready for
distribution as seltzer water, contained considerably over 3,000. In
this case storage had been resorted to. Again, insufficient importance
is attached to the efficient cleansing of the syphons on their return
to the factory. The experiments made by Slater in this country and
Abba in Italy have conclusively shown that the gaseous aëration of
water exerts an inhibitory action on the growth of at least some
varieties of water bacteria, for both these investigators found that
in proportion as the amount of gas present was diminished by being
allowed to escape, so was the multiplication of the bacteria present
promoted and their numbers increased. Unsavoury as may be the idea of
swallowing down myriads of even harmless microbes, yet the real
significance of the whole question from a hygienic point of view lies
in the evidence as to the fate of disease germs in aërated waters.
On this important matter there fortunately exists some precise and
conclusive information in regard to the bacteria associated with two
essentially water-borne diseases, _i.e._ typhoid fever and cholera.
The investigations made to test the vitality of the anthrax bacillus
are of significance as again emphasising the superior degree of
vitality possessed by the spore over the bacillar form of this
micro-organism, but the chances of this disease being disseminated by
water are usually regarded as too remote to excite much interest in
the fate of the _b. anthracis_ in seltzer water. It may, however, be
mentioned that whereas the bacilli succumbed after being in the
seltzer water from fifteen minutes to an hour, the spores were still
living after one hundred and fifty-four days. Investigations on the
vitality of cholera bacilli in aërated waters have been made by
Hochstetter in Germany, by Slater in England, and by Abba in Italy,
and these various authorities all agree that the lease of life of
these micro-organisms is a very short one in ordinary unsterilised
carbonated waters, and that they are in fact destroyed in from half an
hour to three hours. As regards typhoid bacilli the case is different,
for the same investigators found that in ordinary unsterilised aërated
water these bacteria can live as long as eleven days. In seltzer water
their vitality is not so marked, but even then it greatly exceeds that
of the accommodating cholera microbes, extending to five days.
Thus supposing typhoid bacilli to be present in the water employed for
the manufacture of aërated waters--and we cannot afford to disregard
such a possibility--we have no guarantee that such waters will be safe
for drinking purposes unless a considerable period has been allowed to
elapse between their production and consumption.
Public-domain text, read in full here on John Shaqi.
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