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
In a report read before the Academy of Sciences in 1856, presented by an
examining commission, of which MM. _Dumas_, _Pelouze_ and _Claude
Bernard_ were the reporters, the following results were contained:
Phosphorus may remain, in the _free state_, in the organs fifteen days
after death, and even then its isolation can easily be accomplished. For
this purpose the stomach or intestines, and the articles of food
contained therein, are cut into pieces and treated with bisulphide of
carbon. Upon filtering the liquid, a solution is obtained containing all
the phosphorus present, which exhibits the following properties: 1st,
When ignited, it burns with a very luminous flame; 2nd, if allowed to
spontaneously evaporate (the combustion of the phosphorus being
prevented by the organic matter present [_Naquet_]) an inflammable
residue is obtained, which, if dissolved in boiling monohydrated nitric
acid, gives a solution that, after saturation with ammonia, produces a
precipitate soluble in acids in solutions of barium salts. If the
solution is mixed with perchloride of iron, and the sesquioxide of this
metal subsequently eliminated by the addition of ammonia, it no longer
causes a precipitation in barium solutions. The fluid acquires a yellow
coloration when boiled with a solution of molybdate of ammonia.
According to our personal experience, the apparatus employed by Flandin
and Danger for the detection of arsenic, can also be made use of in the
examination of the bisulphide of carbon solution. To this end, the fluid
supposed to contain phosphorus is mixed with perfectly pure alcohol, and
the mixture placed in a small spirit-lamp provided with a very loose
asbestus wick. The lamp is then ignited and the flame introduced in the
combustion tube _D_ (Fig. 11).
[Illustration: Fig. 11.]
By the combustion of the mixture, sulphurous, carbonic, phosphorous
acids and water are formed. The water condenses in _c_, and, falling
into the dish _F_, carries with it the sulphurous and phosphorous acids.
The acid liquid collected in this way is evaporated to dryness, some
nitric acid added, and the solution again evaporated. The remaining mass
is then dissolved in water to which some ammonia is added, and the
solution tested for phosphoric acid. This method is an advantageous one
as the phosphoric acid formed must originate from phosphorus in the
_free state_, and not from any phosphates which, owing to the presence
of organic matter, might be contained in the bisulphide of carbon
solution. It would, however, lead the analyst into error if the person,
supposed to have been poisoned had eaten cerebral substances or eggs
previous to death, as these contain glycero-phosphoric acid; it is
therefore advisable to compare the results given by this process with
those obtained by the use of other methods.
DETECTION OF PHOSPHOROUS ACID.
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