Lead Smelting and Refining, With Some Notes on Lead Mining
Science
Lead Smelting and Refining, With Some Notes on Lead Mining
Lead -- Metallurgy; Lead mines and mining
Four hundred and fifty pounds of bullion from the Compania Metalurgica
Mexicana, analyzing 0.75 per cent. Cu, 1.22 Bi, 0.94 As, 0.68 Sb, and
assaying 358.9 oz. Ag and 1.71 oz. Au per ton, were refined with a
current of 10 amp. per square foot, and gave a refined lead of the
following analysis: 0.00027 per cent. Cu, 0.0037 Bi, 0.0025 As, 0 Sb,
0.0010 Ag, 0.0022 Fe, 0.0018 Zn and Pb (by difference) 99.9861 per cent.
Although the present method for recovering the precious metals and
by-products from the anode residue leaves much room for improvement,
the use of the Betts process may be recommended to our lead refiners,
because it is a more economical and efficient method than the
fire-refining process now in common use. I will state my belief, in
conclusion, that the present development of electrolytic lead refining
signalizes as great an advance over zinc desilverization and the fire
methods of refining lead as electrolytic copper refining does over the
old Welsh method of refining that metal.
ELECTROLYTIC LEAD-REFINING[50]
BY ANSON G. BETTS
A solution of lead fluosilicate, containing an excess of fluosilicic
acid, has been found to work very satisfactorily as an electrolyte
for refining lead. It conducts the current well, is easily handled
and stored, non-volatile and stable under electrolysis, may be made
to contain a considerable amount of dissolved lead, and is easily
prepared from inexpensive materials. It possesses, however, in common
with other lead electrolytes, the defect of yielding a deposit of lead
lacking in solidity, which grows in crystalline branches toward the
anodes, causing short circuits. But if a reducing action (practically
accomplished by the addition of gelatine or glue) be given to the
solution, a perfectly solid and dense deposit is obtained, having very
nearly the same structure as electrolytically deposited copper, and a
specific gravity of about 11.36, which is that of cast lead.
Lead fluosilicate may be crystallized in very soluble brilliant
crystals, resembling those of lead nitrate and containing
four molecules of water of crystallization, with the formula
PbSiF₆,4H₂O. This salt dissolves at 15 deg. C. in 28 per cent. of
its weight of water, making a syrupy solution of 2.38 sp. gr. Heated
to 60 deg. C., it melts in its water of crystallization. A neutral
solution of lead fluosilicate is partially decomposed on heating, with
the formation of a basic insoluble salt and free fluosilicic acid,
which keeps the rest of the salt in solution. This decomposition ends
when the solution contains perhaps 2 per cent. of free acid; and the
solution may then be evaporated without further decomposition. The
solutions desired for refining are not liable to this decomposition,
since they contain much more than 2 per cent. of free acid. The
electrical conductivity depends mainly on the acidity of the solution.
Public-domain text, read in full here on John Shaqi.
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