The History of Chemistry, Volume 1 (of 2)Thomson, Thomas
History
The History of Chemistry, Volume 1 (of 2)
Thomson, Thomas
Chemistry -- History
He next treats of the mode of regulating fire for chemical purposes:
then he treats of _air_, his account being chiefly taken from Boyle.
He ascribes the discovery of the law of the elasticity of air both
to Boyle and Mariotte. Boyle, I believe, was the first discoverer of
it. The French are in the habit of calling it the law of Mariotte.
He then treats of _water_, and lastly of _earth_; but even here no
mention whatever is made of lime. In the last part of the theory of
chemistry he treats at great length of menstruums. These are water,
oils, alcohol, alkalies, acids, and neutral salts. He mentions potash
and ammonia, but takes no notice of soda; the difference between potash
and soda not being accurately known. Nor can we expect any particular
account of the difference between the properties of mild and caustic
potash; as this subject was not understood till the time of Dr. Black.
The only acids which he mentions are the _acetic_, _sulphuric_,
_nitric_, _muriatic_, and _aqua regia_. He subjoins a disquisition on
the alcahest or universal solvent, which it is obvious enough, however,
from the way in which he speaks of it, that he was not a believer in.
The object of his practical part is to teach the method of making all
the different chemical substances known when he wrote. This he does in
two hundred and twenty-seven processes, in which all the manipulations
are described with considerable minuteness. This part of the work must
have been long considered as of great utility, and must have been long
resorted to by the student as a mine of practical information upon
almost every subject that could arrest his attention. So immense is
the progress that chemistry has made since the days of Boerhaave, and
so different are the researches that at present occupy chemists, and
so much greater the degree of precision requisite to be attained, that
his processes and directions are now of little or no use to a practical
student of chemistry, as they convey little or none of the knowledge
which it is requisite for him to possess.
Boerhaave made a set of most elaborate experiments, to refute the ideas
of the alchymists respecting the possibility of fixing mercury. He
put a quantity of pure mercury into a glass vessel, and kept it for
fifteen years at a temperature rather higher than 100°. It underwent no
alteration whatever, excepting that a small portion of it was converted
into a black powder. But this black powder was restored to the state of
running mercury by trituration in a mortar. In this experiment the air
had free access to the mercury. It was repeated in a close vessel with
the same result, excepting that the mercury was kept hot for only six
months instead of fifteen years.
Public-domain text, read in full here on John Shaqi.
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