Cooley's Cyclopædia of Practical Receipts and Collateral Information in the Arts, Manufactures, Professions, and Trades..., Sixth Edition, Volume ICooley, Arnold James
Science
Cooley's Cyclopædia of Practical Receipts and Collateral Information in the Arts, Manufactures, Professions, and Trades..., Sixth Edition, Volume I
Cooley, Arnold James
Formulas, recipes, etc.; Industrial arts -- Dictionaries; Technology -- Dictionaries
The normal solution or test-liquor is prepared by adding to an aqueous
solution of sulphate of copper, pure ammonia water, until the precipitate,
which at first forms, is just redissolved, carefully avoiding excess. Or
better, by adding a rather strong solution of sulphate of copper, to a
quantity of a rather strong solution of ammonia containing exactly 17 gr.,
or one equiv. of pure ammonia, as long as the precipitate which forms is
redissolved on agitation; the resulting liquid being afterwards diluted
with pure distilled water, until it accurately measures 1000 water-grains,
or fills 100 divisions of an acidimeter, at 60° Fahr. In either case, the
strength of the resulting ‘test-solution’ must be carefully determined by
means of standard sulphuric acid, and adjusted, if necessary.
This method answers well with all the stronger acids (excepting oxalic
acid), even when dilute; and it has the advantage of not being affected by
the presence of a neutral metallic salt with an acid reaction, as sulphate
of copper, or of zinc.
Besides this process a solution of lime in sugar may be used, as proposed
by M. Peligot, and made as follows:——
Pure caustic lime is carefully slaked by sprinkling with water, and 50
grains (or grammes), made up by water to a milky solution, and 100 grains
of pure sugar candy dissolved in 1000 grains of water, are added, and the
whole well shaken. It is allowed to settle in a closed bottle, and the
clear solution poured off and diluted, until 1000 grains neutralise
exactly 100 grains of pure hydrochloric acid of sp. gr. 1·1812. Of course
it only answers with acids whose calcium salts are readily soluble in
water.
_b._ GRAVERMETRICALLY:——
The test-liquors or standard solutions of the above methods are made up so
as to _weigh_ exactly 1000 grains, instead of to ‘measure’ 100 acidimeter
divisions. Every grain of the test-liquor thus represents 1/10th gr. of
alkali; and every 10 gr., 1 gr. of alkali; or respectively, 1/10th per
cent. and 1 per cent. The vessel used for containing the solutions is
carefully weighed whilst empty, and 1000 gr. being placed in the opposite
scale, the test-solution, containing exactly one equivalent of base, is
poured in, and the whole made up with distilled water (if necessary) so as
to restore the balance to an equilibrium. After the process of
neutralisation, the acidimeter, with its contents, is again placed in the
scales; its previous weight still remaining there. The number of grains
required to restore the equilibrium of the balance (_i.e._, the loss of
weight), gives the exact weight of the test-liquor consumed. In all other
respects the process is the same as in the ‘volumetrical method’ already
described.
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