The Principles of Chemistry, Volume IIMendeleyev, Dmitry Ivanovich
Science
The Principles of Chemistry, Volume II
Mendeleyev, Dmitry Ivanovich
Argon; Chemistry; Periodic law
The reduction of metallic zinc from its ores is based on the fact that
zinc oxide[7] is easily reduced by charcoal at a red heat: ZnO + C = Zn +
CO. The zinc thus obtained is in a finely divided state and impure, being
mixed with other metals reduced with it, but the greater portion is
_converted into vapour_, from which it easily passes into a liquid or
solid state. The reduction and distillation are carried on in earthenware
retorts, filled with a mixture of the divided ore and charcoal. The
vapours of zinc and gases formed during the reaction escape by means of a
pipe leading downwards, and are led to a chamber where the vapours are
cooled. By this means they do not come into contact with the air, because
the neck of the retort is filled with gaseous carbonic oxide, and
therefore the zinc does not oxidise; otherwise its vapour would burn in
the air.[7 bis] The vapours of zinc, entering into the cooling chamber,
condense into white zinc powder or zinc dust. When the neck of the retort
is heated the zinc is obtained in a liquid state, and is cast into
plates, in which form it is generally sold.
[7] Ores, when extracted from the earth by the miners, are often
enriched by sorting, washing, and other mechanical operations. The
sulphurous ores (and likewise others) are then generally roasted.
Roasting an ore means heating it to redness in air. The sulphur
then burns, and passes off in the form of sulphurous anhydride,
SO_{2}, and the metal oxidises. The roasting is carried on in order
to obtain an oxide instead of a sulphur compound, the oxide being
reducible by charcoal. These methods, introduced ages ago, are met
with in nearly all metallurgical works for practically all ores.
For this reason the preparatory treatment of zinc blende furnishes
zinc oxide: this is already contained in calamine.
[7 bis] with very impure ores, especially such as contain lead (PbS
often accompanies zinc), the vapour of the reduced zinc is allowed
to pass directly into the air. It burns and gives ZnO, which is
used as a pigment.
Commercial zinc is generally impure, containing a mixture of lead,
particles of carbon, iron, and other metals carried over with the
vapours, although they are not volatile at a temperature approaching
1000°. If it be required to obtain pure zinc from the commercial article,
it is subjected to a further distillation in a crucible with a pipe
passing through the bottom, the vapours formed by the heated zinc only
having exit through the pipe cemented into the bottom of the crucible.
Passing through this pipe, the vapours condense to a liquid, which is
collected in a receiver. Zinc thus purified is generally re-melted and
cast into rods, and in this form is often used for physical and chemical
researches where a pure article is required.[8]
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