According to the theory of Nöllner[15] the deposits are of more modern
origin and due to the decomposition of marine vegetation. Continuous
solution of soils, gives rise to the formation of great lakes of
saturated water, in which occurs the development of much marine
vegetation. On the evaporation of this water, due to geologic isolation,
the decomposition of nitrogenous organic matter causes generation of
nitric acid, which, coming in contact with the calcareous rocks, attacks
them, forming nitrate of calcium, which, in presence of sulfate of
sodium, gives rise to a double decomposition into nitrate of sodium and
sulfate of calcium.
The fact that iodin is found in greater or less quantity in Chile
saltpeter is one of the chief supports of this hypothesis of marine
origin, inasmuch as iodin is always found in sea and not in terrestrial
plants. Further than this, it must be taken into consideration that
these deposits of nitrate of soda contain neither shells nor fossils,
nor do they contain any phosphate of lime. The theory, therefore, that
they were due to animal origin is scarcely tenable.
=13. Boron= occurs chiefly in volcanic regions, but is much more widely
distributed in the soil than formerly believed. It is a regular
constituent of the ash of many plants,[16] and is, therefore, thought to
be a true plant food. It is one of the least abundant of the elements,
not occurring in sufficient quantity to find a place in the table
showing their relative abundance, which is to follow. Boracic acid is
used to some extent as a preservative.
=14. Fluorin= does not occur free in nature, but it exists chiefly in
combination with calcium, forming fluorspar, and traces of it are found
in sea water. It occurs in bone, teeth, blood, and the milk of mammals.
It is the only element that does not combine with oxygen, and it can be
isolated only with the greatest difficulty. Only very small traces of it
are found ordinarily and it is usually not considered in the chemical
analysis of soils. Fluorin is found, however, in considerable quantities
in certain phosphate deposits.
=15. Aluminum= is, probably, next to oxygen and silicon, the most
abundant element of the earth’s crust, of which it is estimated to form
about one-twelfth. It has never been found, in nature, in the free
state, but commonly occurs in combination with silicon and oxygen, in
which form it is an abundant constituent of feldspar, mica, kaolin,
clay, slate, and many other rocks and minerals.
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