Getting Gold: A Gold-Mining Handbook for Practical MenJohnson, J. C. F. (Joseph Colin Francis)
History
Getting Gold: A Gold-Mining Handbook for Practical Men
Johnson, J. C. F. (Joseph Colin Francis)
Gold mines and mining
I am indebted for the following to Mr. J. M. Drake, who, speaking of his
experience on the Wentworth Mine, N.S.W., says:--
“Fully 90 per cent. of the gold is saved on the outside
plates, only a small quantity remaining in the mortar. The plates
have a slope of 2 in. to 1 ft. No wells are used, the amalgam
traps saving any quicksilver which may leach off the plates. The
quicksilver is added every hour in the mortar. The quantity is
regulated by the mill manager in the following manner: Three pieces
of wood, 8 in. wide by 12 in. long by 2 in. thick, have 32 holes
1 in. deep bored in each of them. These holes will just take a
small 2 oz. phial. The mill manager puts the required quantity of
quicksilver in each bottle and the batteryman empties one bottle in
each mortar every hour; and puts it back in its hole upside down.
Each block of wood lasts eight hours, the duration of one man’s
shift.” This of course is for a 20-head mill with four mortars or
“boxes.”
I commend this as an excellent mode of supplying the mercury
to the boxes or mortars. The quantity to be added depends on
circumstances. A careless battery attendant will often put in too
much or too little when working without the automatic feeder.
I have known an attendant on suddenly awaking to the fact half
through his shift, that he had forgotten to put in any mercury,
to then empty into the stamper box two or three pounds weight;
with what effect may be easily surmised.
HOW WATER SHOULD ENTER STAMPER BOXES.
The following extract which relates to Californian Gold Mill practices
is from Bulletin No. 6 of the California State Mining Bureau. I quite
agree with the practice.
“The battery water should enter both sides of the mortar in an
even quantity, and should be sufficient to keep a fairly thick
pulp which will discharge freely through the grating or screen.
About 120 cubic feet of water per ton of crushed ore may be
considered an average, or 8 to 10 cubic feet per stamp per hour.
“Screens of different materials and with different orifices are
used; the materials comprise wire cloth of brass or steel, tough
Russian sheet iron, English tinned plate, and, quite recently,
aluminium bronze. The ‘aluminium bronze’ plates are much longer
lived than either of the other kinds, and have the further
advantage that, when worn out, they can be sold for the value of
the metal for remelting; these plates are bought and sold by the
pound, and are said to contain 95 per cent. of copper and 5 per
cent. of aluminium. Steel screens are not so much used, on
account of their liability to rust.”
Public-domain text, read in full here on John Shaqi.
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