75. In extra-tropical latitudes, great accumulations of carbonate of
lime are also taking place. The bottom of the Atlantic has been found to
be covered, over vast areas, by a fine calcareous sticky deposit called
_ooze_, which would appear to consist for the most part of the skeletons
of minute animal organisms, called Foraminifera. This accumulation, when
dried, closely resembled chalk, and there can be no doubt that in the
deep recesses of the Atlantic we have thus a gradually increasing
deposit of carbonate of lime, which rivals, if it does not exceed, in
extent the most widely spread calcareous rocks with which we are
acquainted. A small percentage of siliceous materials occurs in the
ooze, made up partly of granules of quartz, and partly of the skeletons
and coverings of minute animal and vegetable organisms. When in process
of time the chemical forces begin to act upon the siliceous matter
diffused through the Atlantic ooze, _segregation_, or the gathering
together of the particles, may take place, and nodules of flint will be
the result, similar to the flint nodules which occur in chalk, and the
cherty concretions in limestones. Animalcules with siliceous envelopes
and skeletons are by no means so abundant as those that secrete
carbonate of lime, but they are very widely diffused through the oceans,
and in favourable places are so abundant that they may well give rise
eventually to extensive beds of flint. Ehrenberg calculated that 17,946
cubic feet of these organisms were formed annually in the muddy bottom
of the harbour at Wismar, in the Baltic.
It would appear from recent observations (_Challenger_ expedition) that
the calcareous ooze at the bottom of the Atlantic and Southern Oceans,
which occurs at a mean depth of 2250 fathoms, passes gradually as the
ocean deepens into a gray ooze, which is less calcareous, and which
occurs at a mean depth of 2400 fathoms. At still greater depths this
gray ooze also disappears, and is replaced by red clay at a mean depth
of 2700 fathoms. The minute creatures (foraminifera and pelagic
mollusca chiefly) whose shells go to form the calcareous ooze, live for
the most part on the surface, and swarm all over the areas in which ooze
and red clay occur at the bottom. Hence it seems probable that the clay
is merely the insoluble residue or _ash_, as it were, of the
organisms--the delicate shells, as they slowly sink to the more profound
depths, being dissolved by the free carbonic acid, which, as
observations would seem to shew, occurs rather in excess at great
depths. Thus we see how the organic forces may give rise to extensive
accumulations of inorganic matter, closely resembling the finest silt or
mud which is carried down to the sea by rivers, and distributed far and
wide by ocean currents.
SUBTERRANEAN FORCES.
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