Spons' Household Manual: A treasury of domestic receipts and a guide for home management
General
Spons' Household Manual: A treasury of domestic receipts and a guide for home management
Home economics
Of the substances in general use for the household filtration of
water, spongy iron and animal charcoal take the first place. Both
these substances possess the property of removing a very large
proportion of the organic matter present in water. They both, in
the first instance, possess this purifying power to about an equal
extent; but whereas the animal charcoal very soon loses its power,
the spongy iron retains its efficacy unimpaired for a much longer
time. Indeed, in spongy iron we possess the most valuable of all
known materials for filtration, inasmuch as, besides removing such a
large proportion of organic matter from water, it has been found to
be absolutely fatal to bacterial life, and thus acts as an invaluable
safeguard against the propagation of disease through drinking-water.
It is satisfactory to learn that in countries where the results of
scientific research more rapidly receive practical application than
is unfortunately the case amongst us, spongy iron is actually being
employed on the large scale for filtration where only a very impure
source of water supply is procurable. This refers to the recent
introduction of spongy-iron filter beds at the Antwerp waterworks.
It would be very desirable that such filter beds should be adopted
by the London water companies until they shall abandon the present
impure source of supply.
Animal charcoal, on the other hand, far from being fatal to the lower
forms of life, is highly favourable to their development and growth;
in fact, in the water drawn from a charcoal filter which has not been
renewed sufficiently often, myriads of minute worms may frequently be
found.
Thus spongy iron enables those who can afford the expense to obtain
pure drinking-water even from an impure source; but this should
not deter those interested in the public health from using their
influence to obtain a water supply which requires no domestic
filtration, and shall be equally bright and healthful for both rich
and poor.
In a publication by Prof. Koch (_Med. Wochenschrift_, 1885, No.
37) on the scope of the bacteriological examination of water, it
is asserted that a large proportion of micro-organisms proves
that the water has received putrescent admixtures, charged with
micro-organisms, impure affluxes, &c., which may convey, along
with many harmless micro-organisms, also pathogenous kinds, i.e.
infectious matters. Further, that as far as present observations
extend, the number of micro-organisms in good waters ranges from 10
to 150 germs capable of development per c.c. As soon as the number
of germs decidedly exceeds this number the water may be suspected of
having received affluents. If the number reaches or exceeds 1000 per
c.c., such water should not be admitted for drinking, at least in
time of a cholera epidemic.
Public-domain text, read in full here on John Shaqi.
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