Legal Chemistry: A Guide to the Detection of Poisons, Examination of Tea, Stains, Etc., as Applied to Chemical JurisprudenceNaquet, Alfred
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Legal Chemistry: A Guide to the Detection of Poisons, Examination of Tea, Stains, Etc., as Applied to Chemical Jurisprudence
Naquet, Alfred
Chemistry, Forensic; Poisons
This method is exceedingly simple: _Aqua regia_ (a mixture of two parts
of hydrochloric and one part of nitric acids) is placed in a tubular
retort provided with a receiver, and the organic materials, which have
previously been cut into small pieces, added; the reaction commences
immediately; if it is not sufficiently active, it is accelerated by a
gentle heat: lively effervescence now occurs, and the destruction of all
non-oleaginous substances is soon accomplished. The latter substances
alone are not immediately decomposed by _aqua regia_, which attacks them
only after prolonged action. As soon as the operation is concluded, the
apparatus is removed from the fire and taken apart. The fluid condensed
in the receiver is added to that remaining in the retort, and the whole
thoroughly cooled in an open dish. The fatty matters now form a solid
crust upon the surface of the fluid, which is removed and washed with
distilled water, and, the washings being added to the rest of the
solution, the latter is directly examined for metallic poisons. It is
recommended by _Gaultier de Claubry_, in cases where the detection of
arsenic is desired, to saturate and afterwards boil the suspected fluid
with sulphuric acid, in order to remove the nitric and hydrochloric
acids present.
DIALYSIS.
The application of the dialytic method was first proposed by _Graham_.
By its use we are enabled to distinguish between two large classes of
bodies, viz., _colloids_ and _crystalloids_. Albumen, gelatine, and
analogous substances are typical of colloid bodies; crystalloid
substances, on the other hand, are those that are capable of
crystallization, either directly or in their compounds, or, in case they
are fluids, would possess this property when brought to the solid state.
Graham discovered that when an aqueous solution containing a mixture of
colloid and crystalloid substances is placed in a vessel having for its
bottom a piece of parchment or animal membrane, and this is immersed in
a larger vessel filled with water, all of the crystalloids contained in
the first vessel transverse the porous membrane and are to be found in
the larger vessel, the colloid bodies being retained above the membrane.
The organic matter to be eliminated in toxicological researches being
colloids, and the poisons usually employed being crystalloids, the value
of dialysis as a method of separation is evident. The process is
executed as follows:
[Illustration: Fig. 1.]
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