Scientific American, September 29, 1883 Supplement. No. 404 — John Shaqi
Scientific American, September 29, 1883 Supplement. No. 404Various
Science
Scientific American, September 29, 1883 Supplement. No. 404
Various
Science -- Periodicals
As a rule, bleach and dye works are established where there is a
sufficiency of good and soft water, except in such cases where for
special reasons it is desirable to use town water, and which then
is generally clear. Where, however, water from brooks, rivers,
or lodges is used, as is mostly the case, it is often discolored
after heavy showers by earthy substances which are carried away by
it. These impurities, all existing in the water in suspension, are
not at all desirable for the dyer, and less for the bleacher, who
generally allows the water to settle in a lodge, to give it time to
deposit its impurities by gravitation. We understand that by means
such as these even the water of the much-abused Irwell is made, in a
Salford bleach-works, to produce some of the most beautiful whites
possible. These lodges occupy, however, much space, which is not always
available, and filtration is therefore the best where it can be carried
out. We here produce the description of a cheap and efficient filter
which bleachers or dyers may easily make for themselves. The dimensions
are of course dependent upon the quantity of water to be filtered, and
as a guide we shall describe a filter serving for a volume of water
of about 1½ cubic yards per minute. In the first instance a hole is
dug at a point where the water has sufficient fall to give it a head,
and here a cistern set in cement is bricked out, measuring about 30
yards in length, 2½ yards in width, and 2½ yards in height. Across
this cistern two partition walls are erected, one at the left resting
upon rails, and the other going down to the bottom of the cistern.
Between these two walls railway rails are laid crosswise, and over
these a floor of wooden laths. Over this floor the filtering media are
placed, consisting of a bottom layer of stones, then a layer of coke,
then a layer of gravel, and lastly of a top layer of river sand. The
water enters on the left-hand side into the space between the outer
wall and the partition, and descends under the floor of the filter,
through which it rises and passes in succession through the four layers
of filtering substance until it issues at the top, when it runs over
the partition, and out by the pipe shown in the right hand corner.
It will be seen that the course of the water is upward through the
filter, and in this respect contrary to the usual custom. The filter
is cleaned about once a month by reversing the course of the water,
and turning it indirectly on the top of the filter--causing it to
run but at the bottom--and thus carrying all deposits with it. Both
the central filtering compartments, as also the overflow cistern at
the right hand, contain, near the bottom, doors, through which, when
opened, the cleansing water runs off by a separate channel to the
river. The dimensions of the cistern can, of course, be made to suit
the situation.--_Tex. Manfr._
* * * * *
THE VAL ST. LAMBERT GLASS WORKS.
Public-domain text, read in full here on John Shaqi.
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