The mining engineer must be a very wide-awake man. It is not enough
for him simply to remember what was taught him in the schools of
mining; he must be bright enough to invent new ways of meeting
difficulties. No two mines are alike, and he must be ready for all
sorts of emergencies. A gold mine now consists of a shaft or pit dug
several hundred feet down into the rock, with levels or galleries
running off from it and with big openings like rooms made where the
rock was dug out. The roofs of the rooms are supported by great
timbers. To break away the rock, the miner makes a hole with a rock
drill worked by electricity or compressed air, puts powder or dynamite
into the hole and explodes it. The broken rock is then raised to the
surface and crushed in a "stamping mill." Here the ore is fed into a
great steel box called a "mortar." Five immense hammers, often
weighing a thousand pounds apiece, drop down upon the ore, one after
another, until it is fine enough to go through a wire screen in the
front of the box. When two hundred or more of these hammers are
pounding away with all their might, a stamping mill is a pretty noisy
place. The ore, crushed to a fine mud, now runs over sloping tables
covered with copper. Sticking to the top of the copper is a film of
quicksilver. This holds fast whatever gold there may be and makes an
amalgam, which is scraped off from time to time, and the quicksilver
is driven from the gold by heat.
Gold that is not united with other metals is called "free milling
gold." Much of it, however, is found in combination with one metal or
another, and is known as "rebellious" or "refractory" gold. Such gold
may sometimes be set free by heat, and sometimes by chemicals. One way
is by the use of chlorine gas, and the story of it sounds almost like
"The house that Jack built." It might run somewhat like this: This is
the salt that furnishes the chlorine. This is the chlorine gas that
unites with the gold. This is the chloride that is formed when the
chlorine gas unites with the gold. This is the water that washes from
the tank the chloride that is formed when the chlorine gas unites with
the gold. This is the sulphate of iron that unites with the chlorine
gas of the chloride that the water washes from the tank that is formed
when the chlorine gas unites with the gold--and leaves the gold free.
Another method is by the use of cyanide. More than a century ago a
chemist discovered that if gold was put into water containing a little
cyanide, the gold would dissolve, while quartz and any metals that
might be united with the gold would settle in the tank. The water in
which the gold is dissolved is now run into boxes full of shavings of
zinc and is "precipitated" upon them; that is, the tiny particles of
gold in the water fall upon the zinc and cling to it. Zinc melts more
easily than gold, so if this gilded zinc is put into a furnace, the
zinc melts and the gold is set free.
Public-domain text, read in full here on John Shaqi.
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