The Economic Aspect of GeologyLeith, C. K. (Charles Kenneth)
Science
The Economic Aspect of Geology
Leith, C. K. (Charles Kenneth)
Geology, Economic
GEOLOGIC FEATURES
The chief mineral of mercury, from which probably over 95 per cent of
the world's mercury comes, is the brilliant red sulphide, cinnabar.
Minor sources include the black or gray sulphide, metacinnabar, the
native metal, and the white mercurous chloride, calomel. The ores are
commonly associated with more or less iron sulphide, and frequently with
the sulphides of antimony and arsenic, in a gangue consisting largely of
quartz and carbonates (of calcium, magnesium, and iron). The precious
metals and the sulphides of the base metals are rare.
Mercury deposits are in general related to igneous rocks, and have
associations which indicate a particular type of igneous activity. They
are not found in magmatic segregations, in pegmatites, nor in veins
which have been formed at great depths and under very high temperatures.
On the contrary, the occurrence of many deposits in recent flows which
have not been eroded, their general shallow depth (large numbers
extending down only a few hundred feet), and the association of some
deposits with active hot springs now carrying mercury in solution,
suggest an origin through the work of ascending hot waters near the
surface. The mercury minerals are believed to have been carried in
alkaline sulphide solutions. Precipitation from such solutions may be
effected by oxidation, by dilution, by cooling, or by the presence of
organic matter. Being near the surface, it is a natural assumption that
the waters doing the work were not intensely hot. At Sulphur Bank
Springs, in the California quicksilver belt, deposition of cinnabar by
moderately hot waters is actually taking place at present; also these
waters are bleaching the rock in a manner often observed about mercury
deposits.
The Coast Ranges of California contain a great number of mercury
deposits extending over a belt about 400 miles long. The ore bodies are
in fissured zones in serpentine and Jurassic sediments, and are related
in general to recent volcanic flows. A considerable amount of bituminous
matter is found in the ores, and is believed to have been an agent in
their precipitation.
The Terlingua ores of Texas are found in similar fractured zones in
Cretaceous shales and limestones associated with surface igneous flows.
The occurrence of a few ore bodies in vertical shoots in limestone,
apparently terminating upward at the base of an impervious shale,
furnishes an additional argument for their formation by ascending
waters.
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