RATE OF DEPOSITION. As deposition in the sea corresponds to
denudation on the land, we are able to make a general estimate of
the rate at which the former process is going on. Leaving out of
account the soluble matter removed, the Mississippi is lowering
its basin at the rate of one foot in five thousand years, and we
may assume this as the average rate at which the earth's land
surface of fifty-seven million square miles is now being denuded
by the removal of its mechanical waste. But sediments from the
land are spread within a zone but two or three hundred miles in
width along the margin of the continents, a line one hundred
thousand miles long. As the area of deposition--about twenty-five
million square miles--is about one half the area of denudation,
the average rate of deposition must be twice the average rate of
denudation, i.e. about one foot in twenty-five hundred years. If
some deposits are made much more rapidly than this, others are
made much more slowly. If they were laid no faster than the
present average rate, the strata of ancient sea deposits exposed
in a quarry fifty feet deep represent a lapse of at least one
hundred and twenty-five thousand years, and those of a formation
five hundred feet thick required for their accumulation one
million two hundred and fifty thousand years.
THE SEDIMENTARY RECORD AND THE DENUDATION CYCLE. We have seen that
the successive stages in a cycle of denudation, such as that by
which a land mass of lofty mountains is worn to low plains, are
marked each by its own peculiar land forms, and that the forms of
the earlier stages are more or less completely effaced as the
cycle draws toward an end. Far more lasting records of each stage
are left in the sedimentary deposits of the continental delta.
Thus, in the youth of such a land mass as we have mentioned,
torrential streams flowing down the steep mountain sides deliver
to the adjacent sea their heavy loads of coarse waste, and thick
offshore deposits of sand and gravel (Fig. 156) record the high
elevation of the bordering land. As the land is worn to lower
levels, the amount and coarseness of the waste brought to the sea
diminishes, until the sluggish streams carry only a fine silt
which settles on the ocean floor near to land in wide sheets of
mud which harden into shale. At last, in the old age of the region
(Fig. 157), its low plains contribute little to the sea except the
soluble elements of the rocks, and in the clear waters near the
land lime-secreting organisms flourish and their remains
accumulate in beds of limestone. When long-weathered lands
mantled with deep, well-oxidized waste are uplifted by a gradual
movement of the earth's crust, and the mantle is rapidly stripped
off by the revived streams, the uprise is recorded in wide
deposits of red and yellow clays and sands upon the adjacent ocean
floor.
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