Treatise on Poisons: In relation to medical jurisprudence, physiology, and the practice of physicChristison, Robert, Sir
Science
Treatise on Poisons: In relation to medical jurisprudence, physiology, and the practice of physic
Christison, Robert, Sir
Medical jurisprudence; Toxicology
have been poisoned with arsenic remarked in taking it either no taste at
all, or merely a roughness owing to the gritty condition of its powder.
The oxide of arsenic when subjected to heat is sublimed at 380°, or,
according to Dr. Mitchell, 425° F.[499] and condenses in the form of a
crystalline powder, which, if the operation is performed slowly and on a
small quantity proportioned to the size of the tube, evidently consists
of little, adamantine octaedres.—When it is mixed with carbonaceous
matter and heated, it is reduced, and the metal is sublimed. This
constitutes the test of reduction, which, when conducted with due care,
may be rendered singly a certain proof of the presence of arsenic.
Water dissolves it. Its solubility is a point of some medico-legal
importance; for a doubt may arise whether the quantity of a solution
that has been swallowed contained a sufficient dose to cause severe
symptoms or death. Different statements have gone forth on this head.
Klaproth found, that a thousand parts of temperate water take up only
two parts and a half,—and that a thousand parts of boiling water take up
77·75 parts or a thirteenth, and retain on cooling 30 parts or a
thirty-third of their weight.[500] Guibourt found a difference between
the transparent and opaque varieties; for a thousand parts of temperate
water dissolved in thirty-six hours 9·6 of the transparent, 12·5 of the
opaque variety; and the same quantity of boiling water dissolved of the
transparent variety 97 parts, retaining 18 when cooled, but of the
opaque variety took up 115 and retained on cooling 29.[501] More lately
Mr. Alfred Taylor observed that temperate water, simply poured on the
opaque oxide and left for seventy-two hours, contained one grain in a
thousand, but if often agitated, 8·5 grains; that boiling water,
occasionally agitated for the same period, contained 9·27 or 9·54
grains; that water, boiling gently for an hour dissolved 31·5, and on
cooling and resting for three days retained 17; that with violent
ebullition for an hour, it took up 46·3, and retained 24·7 grains on
cooling and resting for three days; that a saturated boiling solution
after six months contained 24 or 26 grains; and that a saturated boiling
solution of the transparent oxide contained 46 or 47·5 grains, and on
cooling and resting for two days retained 18·7 or 13·4 grains.[502] It
is impossible to account for these discrepancies; for all the
experimentalists conducted their investigations with care, and with a
view to the medico-legal question stated above. Hahnemann farther
remarked, that at the temperature of the blood a thousand parts of water
dissolve ten parts with the aid of ten minutes’ agitation;[503] and
Navier, that boiling water kept for an hour on it, and decanted off in
the way an infusion is usually made, dissolves 12·5 grains in every
thousand.[504]
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