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
Consolidation in these cases is brought about by the action of chemical
affinity on finely comminuted matter previously suspended in water. After
deposition similar particles seem to exert a mutual attraction on each
other, and congregate together in particular spots, forming lumps, nodules,
and concretions. Thus in many argillaceous deposits there are calcareous
balls, or spherical concretions, ranged in layers parallel to the general
stratification; an arrangement which took place after the shale or marl had
been thrown down in successive laminae; for these laminae are often traced
in the concretions, remaining parallel to those of the surrounding
unconsolidated rock. (See fig. 55.) Such nodules of limestone have often a
shell or other foreign body in the centre.[37-A]
[Illustration: Fig. 55. Calcareous nodules in Lias.]
Among the most remarkable examples of concretionary structure are those
described by Professor Sedgwick as abounding in the magnesian limestone
of the north of England. The spherical balls are of various sizes, from
that of a pea to a diameter of several feet, and they have both a
concentric and radiated structure, while at the same time the laminae of
original deposition pass uninterruptedly through them. In some cliffs
this limestone resembles a great irregular pile of cannon balls. Some of
the globular masses have their centre in one stratum, while a portion of
their exterior passes through to the stratum above or below. Thus the
larger spheroid in the annexed section (fig. 56.) passes from the
stratum _b_ upwards into _a_. In this instance we must suppose the
deposition of a series of minor layers, first forming the stratum _b_,
and afterwards the incumbent stratum _a_; then a movement of the
particles took place, and the carbonates of lime and magnesia separated
from the more impure and mixed matter forming the still unconsolidated
parts of the stratum. Crystallization, beginning at the centre, must
have gone on forming concentric coats, around the original nucleus
without interfering with the laminated structure of the rock.
[Illustration: Fig. 56. Spheroidal concretions in magnesian limestone.]
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