Experimental Researches in Electricity, Volume 1Faraday, Michael
Science
Experimental Researches in Electricity, Volume 1
Faraday, Michael
Electricity; Electricity -- Early works to 1850
794. _Chloride of lead_ was experimented upon in a manner exactly similar,
except that a change was made in the nature of the positive electrode; for
as the chlorine evolved at the _anode_ forms no perchloride of lead, but
acts directly upon the platina, it produces, if that metal be used, a
solution of chloride of platina in the chloride of lead; in consequence of
which a portion of platina can pass to the _cathode_, and would then
produce a vitiated result. I therefore sought for, and found in plumbago,
another substance, which could be used safely as the positive electrode in
such bodies as chlorides, iodides, &c.
The chlorine or iodine does not act upon it, but is evolved in the free
state; and the plumbago has no re-action, under the circumstances, upon the
fused chloride or iodide in which it is plunged. Even if a few particles of
plumbago should separate by the heat or the mechanical action of the
evolved gas, they can do no harm in the chloride.
795. The mean of three experiments gave the number of 100.85 as the
equivalent for lead. The chemical equivalent is 103.5. The deficiency in my
experiments I attribute to the solution of part of the gas (716.) in the
volta-electrometer; but the results leave no doubt on my mind that both the
lead and the chlorine are, in this case, evolved in _definite quantities_
by the action of a given quantity of electricity (814. &c.).
796. _Chloride of antimony._--It was in endeavouring to obtain the
electro-chemical equivalent of antimony from the chloride, that I found
reasons for the statement I have made respecting the presence of water in
it in an earlier part of these Researches (690. 693. &c.).
797. I endeavoured to experiment upon the _oxide of lead_ obtained by
fusion and ignition of the nitrate in a platina crucible, but found great
difficulty, from the high temperature required for perfect fusion, and the
powerful fluxing qualities of the substance. Green-glass tubes repeatedly
failed. I at last fused the oxide in a small porcelain crucible, heated
fully in a charcoal fire; and, as it is was essential that the evolution of
the lead at the _cathode_ should take place beneath the surface, the
negative electrode was guarded by a green-glass tube, fused around it in
such a _manner as to expose only the knob of platina_ at the lower end
(fig. 70.), so that it could be plunged beneath the surface, and thus
exclude contact of air or oxygen with the lead reduced there. A platina
wire was employed for the positive electrode, that metal not being subject
to any action from the oxygen evolved against it. The arrangement is given
in fig. 71.
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