Common Minerals and RocksCrosby, William O. (William Otis)
Science
Common Minerals and Rocks
Crosby, William O. (William Otis)
Geology -- Study and teaching
1. MECHANICALLY FORMED OR FRAGMENTAL ROCKS.—These consist of materials
deposited from _suspension_ in water, and the process of their formation
is throughout chiefly mechanical. The materials deposited are mere
fragments of older rocks; and, if the fragments are large, we call the
newly deposited sediment gravel; if finer, sand; and, if impalpably
fine, clay. These fragmental rocks cannot be classified chemically,
since the same handful of gravel, for instance, may contain pebbles of
many different kinds of rocks, and thus be of almost any and very
variable composition. Such chemical distinctions as can be established
are only partial, and the classification, like the origin, must be
mechanical. Accordingly, as just shown, we recognize three principal
groups based upon the size of the fragments; viz.:—
(1) Conglomerate group.
(2) Arenaceous group.
(3) Argillaceous group.
This mode of division is possible and natural, simply because, as we
observed in an early experiment, materials arranged by the mechanical
action of water are always assorted according to size. When first
deposited, the gravel, sand, and clay are, of course, perfectly loose
and unconsolidated; but in the course of time they may, under the
influence of pressure, heat, and chemical action, attain almost any
degree of consolidation, becoming _conglomerate_, _sandstone_, and
_slate_, respectively. The pressure may be vertical where it is due to
the weight of newer deposits, or horizontal where it results from the
cooling and shrinking of the earth’s interior. The heat may result from
mechanical movements, or contact with eruptive rocks; or it may be due
simply to the burial of the sediments, which, it will be seen, must
virtually bring them nearer the great source of heat in the earth’s
interior, on the same principle that the temperature of a man’s coat, on
a cold day, is raised by putting on an overcoat. The effect of the heat,
ordinarily, is simply drying, coöperating with the pressure to expel the
water from the sediments; but, if the temperature is high, it may bake
or vitrify them, just as in brick-making. Sediments are consolidated by
chemical action when mineral substances, especially calcium carbonate,
the iron oxides, and silica are deposited between the particles by
infiltrating waters, cementing the particles together. This principle is
easily demonstrated experimentally by taking some loose sand and wetting
it repeatedly with a saturated solution of some soluble mineral, like
salt or alum, allowing the water to evaporate each time before making a
fresh application. The interstices between the grains are gradually
filled up, and the sand soon becomes a firm rock. But the student should
clearly understand that, in geology, gravel, sand, and clay are just as
truly _rocks_ before their consolidation as after. It is plain then that
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