The Student's Elements of GeologyLyell, Charles, Sir
Science
The Student's Elements of Geology
Lyell, Charles, Sir
Geology
Strata of Organic Origin.—It has been already remarked that there are
rocks in the interior of continents, at various depths in the earth,
and at great heights above the sea, almost entirely made up of the
remains of zoophytes and testacea. Such masses may be compared to
modern oyster-beds and coral-reefs; and, like them, the rate of
increase must have been extremely gradual. But there are a variety of
stone deposits in the earth’s crust, now proved to have been derived
from plants and animals of which the organic origin was not suspected
until of late years, even by naturalists. Great surprise was therefore
created some years since by the discovery of Professor Ehrenberg, of
Berlin, that a certain kind of siliceous stone, called tripoli, was
entirely composed of millions of the remains of organic beings, which
were formerly referred to microscopic Infusoria, but which are now
admitted to be plants. They abound in rivulets, lakes, and ponds in
England and other countries, and are termed Diatomaceæ by those
naturalists who believe in their vegetable origin. The subject alluded
to has long been well-known in the arts, under the name of infusorial
earth or mountain meal, and is used in the form of powder for polishing
stones and metals. It has been procured, among other places, from the
mud of a lake at Dolgelly, in North Wales, and from Bilin, in Bohemia,
in which latter place a single stratum, extending over a wide area, is
no less than fourteen feet thick. This stone, when examined with a
powerful microscope, is found to consist of the siliceous plates or
frustules of the above-figured Diatomaceæ, united together without any
visible cement. It is difficult to convey an idea of their extreme
minuteness; but Ehrenberg estimates that in the Bilin tripoli there are
41,000 millions of individuals of the _Gaillonella distans_ (see Fig.
16) in every cubic inch (which weighs about 220 grains), or about 187
millions in a single grain. At every stroke, therefore, that we make
with this polishing powder, several millions, perhaps tens of millions,
of perfect fossils are crushed to atoms.
Figs 15 and 16: Gaillonella; Fig. 17: Bacillaria parodoxa
A well-known substance, called bog-iron ore, often met with in
peat-mosses, has often been shown by Ehrenberg to consist of
innumerable articulated threads, of a yellow ochre colour, composed of
silica, argillaceous matter, and peroxide of iron. These threads are
the cases of a minute microscopic body, called _Gaillonella ferruginea_
(Fig. 15), associated with the siliceous frustules of other fresh-water
algæ. Layers of this iron ore occurring in Scotch peat bogs are often
called “the pan,” and are sometimes of economical value.
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