A History of Science — Volume 4Williams, Henry Smith
History
A History of Science — Volume 4
Williams, Henry Smith
Science -- History
A little later Priestley discovered that "dephlogisticated air... is a
principal element in the composition of acids, and may be extracted by
means of heat from many substances which contain them.... It is likewise
produced by the action of light upon green vegetables; and this seems to
be the chief means employed to preserve the purity of the atmosphere."
This recognition of the important part played by oxygen in the
atmosphere led Priestley to make some experiments upon mice and insects,
and finally upon himself, by inhalations of the pure gas. "The feeling
in my lungs," he said, "was not sensibly different from that of common
air, but I fancied that my breathing felt peculiarly light and easy for
some time afterwards. Who can tell but that in time this pure air may
become a fashionable article in luxury?... Perhaps we may from these
experiments see that though pure dephlogisticated air might be useful as
a medicine, it might not be so proper for us in the usual healthy state
of the body."
This suggestion as to the possible usefulness of oxygen as a medicine
was prophetic. A century later the use of oxygen had become a matter of
routine practice with many physicians. Even in Priestley's own time such
men as Dr. John Hunter expressed their belief in its efficacy in certain
conditions, as we shall see, but its value in medicine was not fully
appreciated until several generations later.
Several years after discovering oxygen Priestley thus summarized its
properties: "It is this ingredient in the atmospheric air that enables
it to support combustion and animal life. By means of it most intense
heat may be produced, and in the purest of it animals will live nearly
five times as long as in an equal quantity of atmospheric air. In
respiration, part of this air, passing the membranes of the lungs,
unites with the blood and imparts to it its florid color, while the
remainder, uniting with phlogiston exhaled from venous blood, forms
mixed air. It is dephlogisticated air combined with water that enables
fishes to live in it."(5)
KARL WILHELM SCHEELE
The discovery of oxygen was the last but most important blow to the
tottering phlogiston theory, though Priestley himself would not admit
it. But before considering the final steps in the overthrow of Stahl's
famous theory and the establishment of modern chemistry, we must review
the work of another great chemist, Karl Wilhelm Scheele (1742-1786), of
Sweden, who discovered oxygen quite independently, although later than
Priestley. In the matter of brilliant discoveries in a brief space of
time Scheele probably eclipsed all his great contemporaries. He had a
veritable genius for interpreting chemical reactions and discovering
new substances, in this respect rivalling Priestley himself. Unlike
Priestley, however, he planned all his experiments along the lines of
definite theories from the beginning, the results obtained being the
logical outcome of a predetermined plan.
Public-domain text, read in full here on John Shaqi.
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