Getting Gold: A Gold-Mining Handbook for Practical MenJohnson, J. C. F. (Joseph Colin Francis)
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Getting Gold: A Gold-Mining Handbook for Practical Men
Johnson, J. C. F. (Joseph Colin Francis)
Gold mines and mining
To effect the oxidation of sulphur, it is necessary not only to bring
every particle of sulphur into contact with the oxygen of the air, but
also to provide adequate heat to the particles sufficient to raise them
to the temperature that will induce oxidation. No appreciable effect
follows the mere contact of air with sulphur particles at atmospheric
temperature; but if the particles be raised to a temperature of 500°
Fahr., the sulphur is oxidised to the gaseous sulphur dioxide. The same
action effects the elimination of the arsenic and antimony associated
with gold and silver ores, as when heated to a certain constant
temperature these metals readily oxidise.
The science of calcination consists of the method by which the sulphide
ores, having been crushed to a proper degree of fineness, are raised to
a sufficient temperature and brought into intimate contact with
atmospheric air.
It will be obvious then that the most effective method of roasting will
be one that enables the particles to be thoroughly oxidised at the
lowest cost in fuel and in the most rapid manner.
The roasting processes in practical use may be divided into three
categories:
_First or Process A._--Roasting on a horizontal and stationary hearth,
the flame passing over a mass of ore resting on such hearth. In order to
expose the upper surface of the ore to contact with air the material is
turned over by manual labour. This furnace of the reverberatory type is
provided with side openings by which the turning over of the ore can be
manually effected, and the new ore can be charged and afterwards
withdrawn.
_Second or Process B._--Roasting in a revolving hearth placed at a
slightly inclined angle from the horizontal. The furnace is of
cylindrical form, and is internally lined with refractory material. It
has projections that cause the powdered ore to be lifted above the
flame, and, at a certain height, to fall through the flame and so be
rapidly raised to the temperature required to effect the oxidation of
the oxidisable minerals which it is desired to extract.
The rate, or speed, of revolution of this revolving furnace obviously
depends upon the character of the ore under treatment; it may vary from
two revolutions per minute down to one revolution in thirty minutes. Any
kind of fuel is available, but that of a gaseous character is stated to
be by far the most efficient.
Any ordinary cylinder of a length of 25 ft., and a diameter of 4 ft. 6
in., inclined 1 ft. 6 in. in its length, will calcine from 24 to 48 tons
per diem.
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