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
Gases alone, such as sulphur dioxide, sulphur trioxide, and others,
do not affect concrete; neither is the usual quantity of moisture
in furnace gases sufficient to damage concrete; but should moisture
penetrate from the outside of the flue, and, meeting gaseous SO₂ or
SO₃, form hydrous acids, then the concrete will be corroded.
_Effect of the Atmosphere Alone._—For outside construction work,
foundations and other structures not exposed to heat, moist acid gases
and chemicals, the concrete has maintained its reputation for cheapness
and durability.
_Effect of Crystallization of Contained Salts._—In chemical works,
floors constructed of concrete are sometimes unsatisfactory, for the
reason that soluble salts, noticeably zinc sulphate, will penetrate
into the floor and, by crystallizing in narrow confines, cause the
concrete to crack and the floor to rise in places.
BAG-HOUSES FOR SAVING FUME
BY WALTER RENTON INGALLS
(July 15, 1905)
One of the most efficient methods of saving fume and very fine dust in
metallurgical practice is by filtration through cloth. This idea is by
no means a new one, having been proposed by Dr. Percy, in his treatise
on lead, page 449, but he makes no mention of any attempt to apply it.
Its first practical application was found in the manufacture of zinc
oxide direct from ores, initially tried by Richard and Samuel T. Jones
in 1850, and in 1851 modified by Samuel Wetherill into the process
which continues in use at the present time in about the same form as
originally. In 1878 a similar process for the manufacture of white
lead direct from galena was introduced at Joplin, Mo., by G. T. Lewis
and Eyre O. Bartlett, the latter of whom had previously been engaged
in the manufacture of zinc oxide in the East, from which he obtained
his idea of the similar manufacture of white lead. The difference
in the character of the ore and other conditions, however, made it
necessary to introduce numerous modifications before the process became
successful. The eventual success of the process led to its application
for filtration of the fume from the blast furnaces at the works of the
Globe Smelting and Refining Company, at Denver, Colo., and later on for
the filtration of the fume from the Scotch hearths employed for the
smelting of galena in the vicinity of St. Louis.
Public-domain text, read in full here on John Shaqi.
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