A Manual of Elementary Geology: or, The Ancient Changes of the Earth and its Inhabitants as Illustrated by Geological MonumentsLyell, Charles, Sir
Science
A Manual of Elementary Geology: or, The Ancient Changes of the Earth and its Inhabitants as Illustrated by Geological Monuments
Lyell, Charles, Sir
Geology
It is well known that the water of springs, or that which is continually
percolating the earth's crust, is rarely free from a slight admixture
either of iron, carbonate of lime, sulphur, silica, potash, or some other
earthy, alkaline, or metallic ingredient. Hot springs in particular are
copiously charged with one or more of these elements; and it is only in
their waters that silex is found in abundance. In certain cases, therefore,
especially in volcanic regions, we may imagine the flint of silicified wood
and corals to have been supplied by the waters of thermal springs. In other
instances, as in tripoli and chalk-flint, it may have been derived in great
part, if not wholly, from the decomposition of infusoria or diatomaceae,
sponges, and other bodies. But even if this be granted, we have still to
inquire whence a lake or the ocean can be constantly replenished with the
calcareous and siliceous matter so abundantly withdrawn from it by the
secretions of these zoophytes.
In regard to carbonate of lime there is no difficulty, because not only are
calcareous springs very numerous, but even rain-water has the power of
dissolving a minute portion of the calcareous rocks over which it flows.
Hence marine corals and mollusca may be provided by rivers with the
materials of their shells and solid supports. But pure silex, even when
reduced to the finest powder and boiled, is insoluble in water, except at
very high temperatures. Nevertheless Dr. Turner has well explained, in an
essay on the chemistry of geology[42-A], how the decomposition of felspar
may be a source of silex in solution. He has remarked that the siliceous
earth, which constitutes more than half the bulk of felspar, is intimately
combined with alumine, potash, and some other elements. The alkaline matter
of the felspar has a chemical affinity for water, as also for the carbonic
acid which is more or less contained in the waters of most springs. The
water therefore carries away alkaline matter, and leaves behind a clay
consisting of alumine and silica. But this residue of the decomposed
mineral, which in its purest state is called porcelain clay, is found to
contain a part only of the silica which existed in the original felspar.
The other part, therefore, must have been dissolved and removed; and this
can be accounted for in two ways; first, because silica when combined with
an alkali is soluble in water; secondly, because silica in what is
technically called its nascent state is also soluble in water. Hence an
endless supply of silica is afforded to rivers and the waters of the sea.
For the felspathic rocks are universally distributed, constituting, as they
do, so large a proportion of the volcanic, plutonic, and metamorphic
formations. Even where they chance to be absent in mass, they rarely fail
to occur in the superficial gravel or alluvial deposits of the basin of
every large river.
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