Scientific American Supplement, No. 447, July 26, 1884Various
Science
Scientific American Supplement, No. 447, July 26, 1884
Various
Science -- Periodicals
In 1859, MM. Maumene and Rogelet patented the use of the water in
which wool has been washed as a source of potash, and at present the
extraction of potash from _suint_ is practiced in France on a large
scale. The wool is washed in a systematic manner, in casks, with cold
water, which runs out of the last cask with specific gravity 1.1. These
washings are evaporated to dryness, and the residue is calcined in iron
retorts, the gas evolved being used for illuminating purposes. The
remaining cinder, consisting of a mixture of charcoal and carbonate of
potash, is treated with water, whereby the latter is dissolved out.
The residue left on evaporation of this water consists largely--almost
entirely--of white carbonate of potash. At present there are works at
Rheims, Elboeuf, Fourmier, and Vervier, which yield about 1,000 tons of
carbonate of potash annually. Now, only 15,000 tons are made per annum
by Leblanc's process. In 1868, 62,000 tons of wool were imported into
Britain from Australia alone, and from this 7,000 to 8,000 tons of
carbonate of potash might have been recovered, the value of which is
£260,000. Yet it was all wasted! And this estimate does not include the
fats of the _suint_, which are worth an even greater sum.
Now, it is evident that there is here a profitable source of economy. So
far as I am aware, no work in this country saves its washings. The water
all goes to pollute the nearest river.
The use of carbon disulphide has again been introduced, and it is to be
hoped with better success, for methods have been devised whereby the
wool is not injured by it, but is even rendered better than when scoured
by the old process of washing with carbonate of soda and water, or by
soap. The process is due to Mr. Thomas J. Mullings. Briefly described,
it consists in exposing the wool, placed in a hydro-extractor, to the
action of bisulphide of carbon; the machine is then made to revolve, and
the excess of solvent is expelled, carrying with it the fatty matters;
the solvent finds its way into a tank, from which it flows into a still,
heated with steam; the carbon disulphide, which boils at a very low
temperature, distills over, and is again ready for use, while the
residue in the still consists of _suint_ washed from the wool. To
remove the last trace of carbon disulphide from the wool in the
hydro-extractor, cold water is admitted, and when the wool is soaked,
the machine again revolves. On expulsion of the water, the wool is ready
for washing in the ordinary machines, but with cold water only instead
of hot soapsuds.
Public-domain text, read in full here on John Shaqi.
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