The Principles of Chemistry, Volume IMendeleyev, Dmitry Ivanovich
Science
The Principles of Chemistry, Volume I
Mendeleyev, Dmitry Ivanovich
Argon; Chemistry; Periodic law
From this it is clear that hydrogen may be obtained by the decomposition
of steam by the action of iron (or zinc) with a rise of temperature.
The experiment is conducted in the following manner: pieces of iron
(filings, nails, &c.), are placed in a porcelain tube, which is then
subjected to a strong heat and steam passed through it. The steam,
coming into contact with the iron, gives up its oxygen to it, and thus
the hydrogen is set free and passes out at the other end of the tube
together with undecomposed steam. This method, which is historically
very significant,[10] is practically inconvenient, as it requires a
rather high temperature. Further, this reaction, as a reversible one
(a red-hot mass of iron decomposes a current of steam, forming oxide
and hydrogen; and a mass of oxide of iron, heated to redness in a
stream of hydrogen, forms iron and steam), does not proceed in virtue
of the comparatively small difference between the affinity of oxygen
for iron (or zinc) and for hydrogen, but only because the hydrogen
escapes, as it is formed, in virtue of its elasticity.[11] If the
oxygen compounds--that is, the oxides--which are obtained from the
iron or zinc, be able to pass into solution, then the affinity acting
in solution is added, and the reaction may become non-reversible, and
proceed with comparatively much greater facility.[12] As the oxides
of iron and zinc, by themselves insoluble in water, are capable
of combining with (have an affinity for) acid oxides (as we shall
afterwards fully consider), and form saline and soluble substances, with
acids, or hydrates having acid properties, hence by the action of such
hydrates, or of their aqueous solutions,[13] iron and zinc are able to
liberate hydrogen with great ease at the ordinary temperature--that
is, they act on solutions of acids just as sodium acts on water.[14]
Sulphuric acid, H_{2}SO_{4}, is usually chosen for this purpose; the
hydrogen is displaced from it by many metals with much greater facility
than directly from water, and such a displacement is accompanied by
the evolution of a large amount of heat.[15] When the hydrogen in
sulphuric acid is replaced by a metal, a substance is obtained which is
called a salt of sulphuric acid or a sulphate. Thus, by the action of
zinc on sulphuric acid, hydrogen and zinc sulphate ZnSO_{4},[15 bis]
are obtained. The latter is a solid substance, soluble in water. In
order that the action of the metal on the acid should go on regularly,
and to the end, it is necessary that the acid should be diluted with
water, which dissolves the salt as it is formed; otherwise the salt
covers the metal, and hinders the acid from attacking it. Usually the
acid is diluted with from three to five times its volume of water, and
the metal is covered with this solution. In order that the metal should
act rapidly on the acid, it should present a large surface, so that a
maximum amount of the reacting substances may come into contact in a
given time.
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