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
Shafts are sunk to a depth of 10 ft. below the point determined upon
as the lower cage landing. From the end at the bottom a narrow drift
is driven horizontally to a distance of 15 ft.; at that point it is
widened out to 10 ft. and driven 20 ft. further. The whole area (10 ×
20 ft.) is then raised to a point 28 or 30 ft. above the bottom of the
drift from the shaft. The lower part of this chamber constitutes the
sump. Starting from this chamber (on one side and at a point 10 ft.
above the cage landing, or 20 ft. above the bottom of the sump), the
“pump-house” is cut out. This pump-house is cut 40 ft. long and is as
wide as the sump is long, namely, 20 ft. A narrow drift is driven to
connect the top of the pump-house with the shaft. Through this drift
the various pipes enter the pump-house from the shaft.
The pumps are thus placed at an elevation of 10 ft. above the bottom
of the mine. Flooding of mines, due to failure of pumps or to striking
underground bodies of water, taught the necessity of placing the pumps
at such an elevation that they would be the last to be covered, thus
giving time for getting or keeping them in operation. The pumps are
placed on the solid rock, the air pumps and condensers at a lower level
on timbers over the sump.
With this arrangement, the bottom of the shaft serves as an antechamber
for the sump, in which is collected the washing from the mine and the
dripping from the shaft. The sump proper rarely needs cleaning.
The pumps are generally of high-grade, compound-and triple-expansion,
pot-valved, outside-packed plunger pattern. Plants with electrical
power distribution have recently installed direct-connected compound
centrifugal pumps with entire success.
Pumps of the Cornish pattern have never been used much in this region.
One such pump has been installed, but the example has not been followed
even by the company putting it in.
The irregular disposition of the ore renders any systematic plan of
drifting or mining (as in coal or vein mining) impossible. On each
side of the shaft and in a direction at right angles to its greater
horizontal dimension, drifts 12 to 14 ft. in width are driven to a
distance of 60 or 70 ft. In these broad drifts are located the tracks
and also the “crossovers” for running the cars on and off the cage.
When a deposit is first opened up, it is usually worked on two, and
sometimes three, levels. These eventually cut into one another, when
the ore is hoisted from the lower level alone.
The determination of the depth of the lower level is a matter of
compromise. Much good ore may be known to exist below; when it comes
to mining, it will have to be taken out at greater expense; but the
level is aimed to cut through the lower portions of the main body. It
is generally safe to predict that the ore lying below the upper levels
will eventually be mined from a lower level without the expense of
local underground hoisting and pumping.
Public-domain text, read in full here on John Shaqi.
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