Essay on the Theory of the EarthCuvier, Georges, baron
Science
Essay on the Theory of the Earth
Cuvier, Georges, baron
Geology; Paleontology
_Chemical_ powers often act in conjunction with mechanical ones, in
breaking down rocks, the former, the chemical, frequently finishing
what had been begun by the latter. Mechanical powers only changing
the _aggregation_ of rocks, may break down their parts to a certain
size, according to their different nature; chemical powers, again,
which change the _nature_ of substances, destroy the connection of
the minute parts of rocks. When chemical is preceded by mechanical
action, it is much assisted by it. The latter has a much more general
effect, as all rocks are subjected to its influence; chemical
decomposition, on the other hand, acts only upon some rocks, and in
these only upon certain parts. The chemical decomposition of rocks is
chiefly effected by the oxygen of atmospheric air and of water; but
we are also persuaded, that certain cryptogamic plants, intimately
attached to the surface of stones, Lichens namely, assist in their
destruction.
The oxygen of air and water can only affect the constituent parts
of rocks, which have a great affinity to it, such as the iron and
sulphur forming pyrites, oxydulous iron, oxydulous manganese, or
the same substances mixed with earth or carbonic acid, charcoal and
bitumen. Very solid and compact masses of rock, such as greenstone,
which are not easily affected by other means, are sometimes corroded
by the chemical change of the pyrites contained in them, by which
it is converted into a hydrate of iron[414]. In certain other
rocks, which are also readily broken down by mechanical agents,
clay-slate for instance, the disintegration is much accelerated by
the decomposition of the pyrites. The oxydulous iron of felspar is
commonly converted by decomposition into a hydrate or ochre. The
carbonate of iron, as well as of manganese, which sometimes occur
in rocks, in limestone rock for example, are deprived of carbonic
acid by the oxidation of their bases. Charcoal and bitumen, which
are sometimes contained in rocks, limestone and argillaceous ones
for example, are dissipated by the contact of air, so that rocks
which were originally of a dark colour, lose it, and become whitish.
Water, as a chemical agent, contributes so much to the decomposition
of certain rocks, that, either in a pure state, or in combination
with carbonic acid, it dissolves their parts, of which gypsum and
limestone afford examples. In certain other minerals, in felspar
for instance, a separation of the constituent parts, produced by
the contact of air and water, is observed, the proximate cause of
which has not hitherto been discovered. The mass is decomposed, its
lamellar structure is converted into an earthy nature, the alkali
contained in the felspar is extracted by the water, a mineral is
produced, to which the Chinese have given the name of _Kaolin_, and
which is adapted for the manufacture of porcelain. Granite and gneiss
occur in some districts, the felspar of which is decomposed in this
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