Rocks and Their OriginsCole, Grenville A. J. (Grenville Arthur James)
Science
Rocks and Their Origins
Cole, Grenville A. J. (Grenville Arthur James)
Rocks
When we consider the distribution of quartz in nature, we look
to igneous and metamorphic rocks for the origin of the grains in
sandstone. Quartz is one of the commonest minerals; but in granite and
quartz-diorite it rarely forms more than half the bulk of the rock,
felspar and mica and hornblende being its associates. Veins of quartz
(quartz-rock) traverse many rocks, and become broken up into granular
forms on weathering; but they are inconsiderable in comparison with
the bulk of the slates or schists in which they lie. Mica-schists
contribute a good deal of quartz-sand when they decay; but this is
mixed with ferruginous clayey matter, and the soils produced are yellow
loams.
We are easily impressed, then, by the enormous amount of denudation
that was requisite to produce our existing sandstones. Though nowadays
sandstones can be built up by the decay of older rocks of the same
kind, the quartz must have come originally from igneous or metamorphic
sources. Even in the metamorphic rocks, a large part of the quartz is
probably detrital.
The microscopic characters of the quartz in sandstone commonly attest
its origin. The minute liquid inclusions, with moving bubbles, that
arise in the quartz of igneous and metamorphosed rocks, are easily seen
in sections of sandstone. In some quartzites, these inclusions run in
continuous bands from grain to grain, and have clearly arisen since the
detritus was cemented. But in ordinary sandstones the inclusions in
one grain have no relation to those in its neighbours. The felspars,
moreover, of igneous rocks are commonly found, as rolled fragments, in
sandstone. Their grains are usually whiter and duller than those of
quartz, and may easily be distinguished by the naked eye.
Small gleaming plates of mica from the parent rock may accumulate with
the quartz grains. The dark micas of decaying rocks, rich in iron and
magnesium, together with mineral silicates of calcium, magnesium, and
iron, such as the amphiboles and pyroxenes, form on hydration soft
green chlorite. This mineral, in films and easily deformed flakes,
at times occurs as a sort of groundwork to the coarser grains in
sandstone, and colours the rock a delicate grey-green. Fine-grained
sandstones of this type are difficult to distinguish from altered
"greenstones," such as basaltic andesites. When the quartz grains,
however, are large, as in the grits quaintly styled in old days
"greywacke," they form a ready clue to the origin of the rock.
Nature sifts the products of decay so thoroughly, on any slope exposed
to wind or rain, that the finest materials are carried far away, and
the undecomposable quartz remains predominant. The alluvium in the
upper reaches of streams is thus far more sandy than the mixed material
supplied at the outset from the surrounding rocks. The more rapid flow
of the water on the steeper upland slopes naturally removes the mud
into the lowland.
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