A Treatise on the Plague and Yellow Fever: With an Appendix, containing histories of the plague at Athens in the time of the Peloponnesian War; at Constantinople in the time of Justinian; at London in 1665; at Marseilles in 1720Tytler, James
History
A Treatise on the Plague and Yellow Fever: With an Appendix, containing histories of the plague at Athens in the time of the Peloponnesian War; at Constantinople in the time of Justinian; at London in 1665; at Marseilles in 1720
Tytler, James
Plague -- Early works to 1800; Yellow fever -- Early works to 1800
The same theory was applied to explain the doctrine of evaporation, and
that in the most decisive and satisfactory manner. The Doctor found,
that, in the distillation of water, much more heat was communicated
to that in the worm-tub of the still, than could be supposed necessary
to raise the water distilled to 212 degrees, which is the utmost that
water can bear. In prosecuting the experiment he found the quantity of
heat absorbed by the water, when raised into vapour, truly surprising;
no less than _a thousand_ degrees; an heat more than sufficient to
have made the whole quantity of fluid that came over red hot. Some
objections, however, were made to this theory, even by the Doctor’s
friends. Mr. Watt, particularly, though he could not deny the theory
derived from Dr. Black’s experiments, yet suggested one, which, had
it proved successful, would have overthrown the whole. It was this:
Let water be distilled _in vacuo_, where it boils with a heat of 97
degrees, and the operation must be carried on with much less fuel, and
with much greater ease, than in the common mode. It was said that, in
this experiment, Dr. Black was equally concerned with Mr. Watt; but,
in a personal conversation with the Doctor himself, he assured me
that he had no farther concern than foretelling that the experiment
would not succeed, which it seems did not. The event was as follows:
Mr. Watt, determining at all events to try the experiment, caused to
be made a copper retort and receiver, joined together in one piece.
In the receiver he pierced a small hole, and, heating both retort and
receiver, plunged the latter into cold water. The consequence was,
that a considerable quantity of water entered the vessel, and was
easily poured back into the retort, as a subject for distillation. A
fire being now applied, the water was soon raised into steam, which
filled both retort and receiver, and in a great measure expelled the
external air. The small orifice in the receiver being now closed, and
the receiver itself plunged into cold water, the distillation went
on _in vacuo_; for, as soon as any of the steam was condensed, the
space which it had occupied (according to Dr. Black _one thousand and
sixty-six_ times more than the original water) was become absolutely
empty, and more steam, rarefied, not by any quantity of sensible heat,
but merely by that which it contained in a _latent_ state, would occupy
the place of the former. The event of the experiment showed the truth
of Dr. Black’s theory. The water boiled, and steam was raised as well
as if access had been given to the air; but with this difference,
that the upper part of the distilling vessel was never heated above
what the hand could easily bear. With the water in the cooler it was
quite otherwise. It became hot as usual, and, by the quantity of heat
it received, plainly demonstrated that the vapour, though destitute
of most of its _sensible_ heat, yet contained an immense quantity in
a _latent_ state.
Public-domain text, read in full here on John Shaqi.
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