The filtration of public water-supplies: Third edition, revised and enlarged.Hazen, Allen
Science
The filtration of public water-supplies: Third edition, revised and enlarged.
Hazen, Allen
Filters and filtration; Water-supply
The action of a continuous filter throughout is mainly that of an
exceedingly fine strainer, and like a strainer is mainly confined to
the suspended or insoluble matters in the raw water. The turbidity,
sediment, and bacteria of the raw water are largely or entirely
removed, while hardness, organic matter, and color, so far as they are
in solution, are removed to only a slight extent, if at all. Hardness
can be removed by the addition of lime in carefully determined quantity
before filtration (Clark’s process), by means of which the excess of
carbonic acid in the water is absorbed and the lime added, together
with that previously in the water, is precipitated.
Ordinary filtration will remove from one fourth to one third of the
yellow-brown color of peaty water. A larger proportion can be removed
by the addition of alum, which by decomposing forms an insoluble
compound of alumina with the coloring matter, while the acid of the
alum goes into the effluent either as free acid, or in combination with
the lime or other base in the water, according to their respective
quantities. Freshly precipitated alumina can be substituted for the
alum at increased expense and trouble, and tends to remove the color
without adding acid to the water. These will be discussed more in
detail in connection with mechanical filters. Alum is but rarely used
in slow sand filtration, the most important works where it is used
being in Holland with peaty waters.
After all, the most conclusive test of the efficiency of filtration is
the healthfulness of the people who drink the filtered water; and the
fact that many European cities take water-supplies from sources which
would not be considered fit for use in the United States and, after
filtering them, deliver them to populations having death-rates from
water-carried diseases which are so low as to be the objects of our
admiration, is the best proof of the efficiency of carefully conducted
filtration.
It is only necessary to refer to London, drawing its water from the
two small and polluted rivers, the Thames and the Lea; to Altona,
drawing its water from the Elbe, polluted by the sewage of 6,000,000
people, 700,000 of them within ten miles above the intakes; to Berlin,
using the waters of the Havel and the Spree; to Breslau, taking its
water from the Oder charged with the sewage of mining districts in
Silicia and Galicia, where cholera is so common; to Lawrence, with its
greatly decreased death-rate since it has had filtered water, and to
the hundred other places which protect themselves from the infectious
matters in their raw waters by means of filtration. A few of these
cases are described more in detail in Appendices V to IX, and many
others in the literature mentioned in Appendix X.
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