Getting Gold: A Practical Treatise for Prospectors, Miners and StudentsJohnson, J. C. F. (Joseph Colin Francis)
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Getting Gold: A Practical Treatise for Prospectors, Miners and Students
Johnson, J. C. F. (Joseph Colin Francis)
Gold mines and mining
To make a temporary small "draw-lift" pump, which will work down to
a hundred feet or more if required, take a large size common suction
Douglas pump, and, after removing the top and handle, fix the pump as
close to the highest level of the water in the shaft as can be arranged.
Now make a square water-tight wooden column of slightly greater capacity
than the suction pipe, fix this to the top of the pump, and by means
of wooden rods, work the whole from the surface, using either a longer
levered handle or, with a little ingenuity, horse-power. If you can
get it the iron downpipe used to carry the water from the guttering of
houses is more easily adapted for the pipe column; then, also, iron pump
rods can be used but I have raised water between 60 and 70 feet with a
large size Douglas pump provided only with a wooden column and rods.
SQUEEZING AMALGAM
For squeezing amalgam, strong calico, not too coarse, previously soaked
in clean water, is quite as good as ordinary chamois leather. Some gold
is fine enough to escape through either.
MERCURY EXTRACTOR
The mercury extractor or amalgam separator is a machine which is very
simple in construction, and is stated to be most efficient in extracting
quicksilver from amalgam, as it requires but from two to three minutes
to extract the bulk of the mercury from one hundred pounds of amalgam,
leaving the amalgam drier than when strained in the ordinary way by
squeezing through chamois leather or calico. The principle is that
of the De Laval cream separator--i.e., rapid centrifugal motion.
The appliance is easily put together, and as easily taken apart. The
cylinder is made of steel, and is run at a very high rate of speed.
The general construction of the appliance is as follows: The casing or
receiver is a steel cylinder, which has a pivot at the bottom to receive
the step for an upright hollow shaft, to which a second cylinder of
smaller diameter is attached. The second cylinder is perforated, and
a fine wire cloth is inserted. The mercury, after passing through the
cloth, is discharged through the perforations. When the machine
is revolved at great speed, the mercury is forced into the outside
cylinder, leaving the amalgam, which has been first placed in a calico
or canvas bag, in a much drier state than it could be strained by hand.
While not prepared to endorse absolutely all that is claimed for this
appliance, I consider that it has mechanical probability on its side,
and that where large quantities of amalgam have to be treated it will be
found useful and effective.
SLUICE PLATES
I am indebted to Mr. F. W. Drake for the following account of sluice
plates, which I have never tried, but think the device worth attention:
Public-domain text, read in full here on John Shaqi.
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