Legal Chemistry: A Guide to the Detection of Poisons, Examination of Tea, Stains, Etc., as Applied to Chemical Jurisprudence — John Shaqi
Legal Chemistry: A Guide to the Detection of Poisons, Examination of Tea, Stains, Etc., as Applied to Chemical JurisprudenceNaquet, Alfred
Science
Legal Chemistry: A Guide to the Detection of Poisons, Examination of Tea, Stains, Etc., as Applied to Chemical Jurisprudence
Naquet, Alfred
Chemistry, Forensic; Poisons
The precipitate is washed with water, to which a little sulphide of
ammonium is added, then dried, and fused with four times its weight of a
mixture of equal parts of carbonate and nitrate of potassa. After the
mass has remained in a state of fusion for a quarter of an hour, it is
treated with boiling water, mixed with a little alcohol, in order to
decompose the manganate that would be present were manganese contained
in the materials under examination. The alcohol is then expelled by
boiling the fluid, and the solution filtered. The _filtrate_ may contain
phosphate of potassa, originating from the phosphate of lime present,
and _chromate of potassa_, resulting from the oxidation of the
sesquioxide of chromium. In presence of the latter compound, the
following reactions will occur in the solution: 1st., Upon acidulation
with acetic acid and addition of solution of acetate of lead, a yellow
precipitate, soluble in potassa, is formed; 2nd., if hydrochloric acid
is added and sulphuretted hydrogen conducted into the solution, the
latter acquires a green color, and, upon adding ammonia, a bluish-grey
precipitate of chromic hydrate is produced; 3rd., if nitrate of silver
is added to the solution, a brick-red precipitate is formed.
The _precipitate_ remaining on the filter, may consist of zinc, mixed
with the oxides of iron, nickel, cobalt, aluminium and manganese. It is
dissolved in boiling hydrochloric acid, acetate of soda added, and the
fluid boiled until no further precipitation occurs. The iron is now
completely separated. The solution is then filtered, the precipitate
washed, and an excess of potassa added to the _filtrate_; if the
solution contains cobalt, nickel or manganese--which is improbable--a
permanent precipitate is formed. This is separated from the fluid by
filtration: its further examination is, however, unnecessary, as the
metals of which it consists are not poisonous. The _filtrate_ may
contain aluminium and _zinc_. The latter metal is detected by
acidulating the filtrate with acetic acid, and adding a solution of
sulphuretted hydrogen: in presence of zinc a white precipitate of its
sulphide is formed.
In case organic substances are present, the precipitation of chromium by
sulphide of ammonium may possibly have been hindered, and the metal have
passed into the filtrate. When, therefore, chromium is not detected in
the precipitate, the filtrate should also be examined. For this purpose,
the fluid is evaporated to dryness, and the residue obtained fused with
a mixture of nitrate and carbonate of soda. The fused mass is then taken
up with water, the solution acidulated with acetic acid, and a solution
of acetate of lead added: if chromium be present, a yellow precipitate,
soluble in potassa, is produced.
DETECTION OF ALKALOIDS AND SOME ILL-DEFINED ORGANIC SUBSTANCES.[L]
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