The colors of sandstone are dependent usually upon iron oxids.
Especially is this true of the red, brown, and yellow colors. In some of
the light grey varieties, the color is that of the minerals comprising
the stone. Some of the darker colored sandstones contain organic matter.
[Illustration:
FIG. 7.
Microscopic Structure of Sandstone.
]
The rocks of the argillaceous group are composed essentially of a
hydrous silicate of alumina, which is the basis of common clay, and
varying amounts of free silica, oxids of iron and manganese, carbonates
of lime and magnesia, and small quantities of organic matter. They may
have originated _in situ_ from the decomposition of feldspars or as
deposits of fine mud or silt at the bottom of large bodies of water. The
older formations of these rocks are known as shales, argillites, and
slates and the fissile structure which enables this to be split into
thin sheets is probably due to the conditions under which they have been
formed and not to any properties of the clays themselves.
One of the purest forms of this rock is kaolin, which is almost a pure
hydrous silicate of alumina formed from the decomposition of feldspathic
rocks from which the alkalies, iron oxids and other soluble constituents
have been removed by water.
Under the volcanic group are included the materials ejected from
volcanic vents in a more or less finely comminuted condition and which
through the drifting power of atmospheric currents may be scattered over
many miles of territory. Various names are applied to such products,
names dependent in large part upon their state of subdivision. Volcanic
dust and sand, or ashes, includes the finer dust-like or sand-like
materials, and lapilli, or rapilli the coarser. The general name tuff
includes the more or less compacted and stratified beds of this
material, while trass, peperino, and pozzuolano are local varietal names
given to similar materials occurring in European volcanic regions.
The second division, namely sedimentary rocks composed of the débris of
plant and animal life includes many forms of great agricultural
importance.
The first subdivision of this group is the infusorial or diatomaceous
earth. It forms a fine white or yellowish pulverulent rock composed
mainly of minute shells, or tests of diatoms, and is often so soft and
pliable as to crumble readily between the thumb and fingers. According
to Whitney the beds are of comparatively limited extent and for this
reason are of little agricultural value, although the weathering of this
diatomaceous material gives rise to a light yellow clay forming very
fertile agricultural lands.
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