Soils, their formation, properties, composition, and relations to climate and plant growth in the humid and arid regionsHilgard, Eugene W. (Eugene Woldemar)
Science
Soils, their formation, properties, composition, and relations to climate and plant growth in the humid and arid regions
Hilgard, Eugene W. (Eugene Woldemar)
Soils
Quartz and its allied rocks—jasper, hornstone, siliceous schist,
etc., are all, as already stated, acted on with difficulty by the
“weathering” agencies. Crystalline quartz rock may be considered as
practically refractory against all but the mechanical agencies, and
hence remains in the form of sand and gravel, more or less rounded
by attrition, as a prominent component of most soils; sometimes to
the extent of over 92 per cent, even in soils highly esteemed in
cultivation, especially in the arid region. Such soils are mostly
the result of the disintegration of sandstones, the cement of which
has been dissolved out in the course of weathering; or they may be
derived directly from geological deposits of more or less loose and
unconsolidated sand. Among crystalline rocks, granites, gneiss and
mica-schists are those most usually concerned in the formation of
sandy soils; since in common parlance, quartz is understood to be the
substance of the sand unless otherwise stated. The exceptions are
especially important in the regions of deficient rainfall.
But while crystalline quartz is practically insoluble in all natural
solvents, the same is not true of the jaspers and hornstones. These
consist of a mixture of crystalline and amorphous (non-crystalline)
silica, which is more readily soluble than the crystalline, and is
attacked by many natural waters, especially by those containing even
very small amounts of the carbonates of potash or soda. We thus
often find that hornstone and jasper pebbles buried in the soil,
while still hard internally, have externally been converted into a
friable, almost chalky substance, consisting of crystalline quartz
from which the cementing amorphous silex has been removed by the
soil water. In the course of time such pebbles may be completely
destroyed by this process, so as to be light and chalky throughout, and
readily crushed in tillage. The change is the more striking when, as
frequently happens, the hornstone pebble is traversed by small veins of
crystalline quartz, which remain as a skeleton.
_Solubility of Silica in Water._—It is easily shown experimentally that
the compound of silica with water (hydrate) is under certain conditions
readily soluble not only in pure water, but also in such as contains
carbonic acid. It thus occurs in nearly all spring and well waters;
some hot springs deposit large masses of it (sinter); and geological
evidence clearly demonstrates that quartz veins have as rule been
formed from water-solutions of silica.
That silica in its soluble form circulates freely in the soil water, is
abundantly evident from the large amounts of it which are secreted on
the outside of the stems of grasses, horsetail rushes and other plants,
imparting a gritty roughness to their outer surface. In the case of
the giant bamboo grass of Asia, the silica accumulated on the outside
of the joints forms a hard sheath of considerable thickness, known to
commerce as tabashir.
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