The Medals of Creation, Volumes 1 and 2: First Lessons in Geology and the Study of Organic RemainsMantell, Gideon Algernon
Science
The Medals of Creation, Volumes 1 and 2: First Lessons in Geology and the Study of Organic Remains
Mantell, Gideon Algernon
Geology -- England -- Guidebooks; Paleontology
M. Ehrenberg demonstrated that even the fossils discovered by Mr.
Lonsdale are colossal, in comparison with the infinitesimal structures
of which the finer particles of the chalk consist; for one cubic
inch of the limestone is found to contain upwards of a million of
well-preserved animal organisms.
The chalk, therefore, is an aggregation of extremely minute fossils
and inorganic particles. The yellow, soft, writing chalk of the North
of Europe, according to M. Ehrenberg, is composed of about half its
mass of organic remains; but in the chalk of the South of Europe, the
fossils predominate. The amorphous atoms of the cretaceous limestone
do not, as was formerly believed, arise from a precipitate of lime
previously held in solution, but from the disintegration of the
assembled organisms into more minute calcareous particles; and these
have subsequently been reunited by a crystalline action, into regular,
elliptical, granular, bodies.
M. Ehrenberg infers that the compact flint nodules have originated from
an aggregation of pulverulent particles of siliceous organisms; and
upon this hypothesis explains the absence of flint nodules, and the
abundance of siliceous infusoria, in the beds of marl that alternate
with the chalk in the south of Europe, and their presence in the chalk
of northern Europe, in which the marls are wanting. In other words,
he supposes, that in the former case the siliceous shells of the
animalcules were spread abroad and deposited in layers or strata; and
in the latter were aggregated into nodular masses. This opinion is not,
however, supported by facts; for, though the animal origin of lime,
flint, and iron, may be admitted to a great extent, yet the deposition
of silex and lime from aqueous solutions, is carried on at the present
moment upon an enormous scale; and it cannot be doubted that to such a
process is attributable the formation of the nodules, layers, dikes,
and veins of flint, which traverse the chalk, and other rocks.[323]
[323] See my "Memoir on a Microscopical Examination of Chalk and Flint,"
Annals of Nat. Hist., Aug. 1845.
The most abundant microscopic organisms in the English chalk and flint
which I have examined, are _Rotaliæ_, or _Rosalinæ_, and _Textulariæ_.
Immense numbers of minuter Foraminifera also occur, and many shells,
which are unquestionably the young state of testaceous Cephalopoda (as
_Nautilus_, _Ammonite_, &c.).
Spines of Sponges, and of Echinoderms, also frequently appear in the
field of the microscope: and a spongeous structure is so common in
flint, that an eminent observer conceives that all the flints, both
nodular and tabular, have originated from poriferous zoophytes;[324] an
hypothesis altogether inadmissible.
[324] "Memoir on the Siliceous Bodies in the Chalk, Greensands, and
Oolite," by J. S. Bowerbank, Esq. F.R.S. &c. Geol. Trans, vol. vi. p.
181.
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