Marvels of Scientific Invention: An Interesting Account in Non-Technical Language of the Invention of Guns, Torpedoes, Submarine Mines, Up-to-Date Smelting, Freezing, Colour Photography, and Many Other Recent Discoveries of ScienceCorbin, Thomas W.
Science
Marvels of Scientific Invention: An Interesting Account in Non-Technical Language of the Invention of Guns, Torpedoes, Submarine Mines, Up-to-Date Smelting, Freezing, Colour Photography, and Many Other Recent Discoveries of Science
Corbin, Thomas W.
Inventions
However that may be, and it is the subject of discussion among
geologists and metallurgists, there the gold is to-day, firmly fixed in
the hard rock, and the problem which confronts the metallurgist is to
get it out with the least expense. The old historic way of breaking up
the quartz rock is with what are called "stamps," pestles and mortars on
a huge scale. There are a number of vertical beams of wood, each shod
with iron, fixed in a wooden frame, so that they are free to slide up
and down. Running along behind these stamps is a horizontal shaft with
projections upon it called cams. There is one cam for each stamp, and as
the shaft turns slowly round this projection catches under a projection
on the stamp, and after lifting it up a short distance drops it
suddenly. Thus, as the machine works, the stamps are lifted and dropped
in rapid succession. The rock is fed into a box into which the feet of
the stamps fall, and thus it is pounded until it is quite small.
Meanwhile a stream of water flows through the box and carries away the
finely broken particles through a kind of sieve which forms the front
of the box, and which allows the fine, small pieces to escape, while
holding back the larger ones and keeping them until they too have been
crushed.
An average stamp will weigh 600 to 700 lb., and the repeated blows of
such a hammer are enough to pulverise the hardest rock.
Machines such as these have been employed since the sixteenth century,
at all events, and the improvements of modern times are only as regards
details. It may well be wondered, then, why such an old device is still
in use and how it comes about that it has not been displaced by
something newer and better. The answer, which is an instructive one,
well worth bearing in mind by many inexperienced inventors, is that it
is so simple. It can be shipped in comparatively small parts, and so
taken cheaply to any outlandish place. A good deal of it can be made
roughly of wood, so that if native timber is available it can be made
partly at the mine, and carriage costs saved. Finally, it is so easy to
work and to understand that the most inexperienced workman can handle
it, and there is so little that can go wrong that the most careless
attendant cannot damage it.
In the bottom of the boxes there is placed some mercury, for which gold
has a curious affinity. If a particle of gold once gets into contact
with the surface of the mercury it will not get away again easily. Thus
the mercury catches and holds many of the gold particles which are
liberated when the rock is broken up.
Public-domain text, read in full here on John Shaqi.
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