=18. Potassium= combined with silica is an important element in many
mineral silicates as, for instance, orthoclase. Granitic rocks usually
contain considerable quantities of potassium, and on their decomposition
this becomes available for plant food. In the form of chlorid, potassium
is found in small quantities in sea water, and as a nitrate it forms the
valuable salt known as niter or saltpeter. Potassium, as is the case
with phosphorus, is universally distributed in soils, and forms one of
the great essential elements of plant food. Under the form of kainite
and other minerals large quantities of potassium are used for
fertilizing and for the manufacture of pure salts for commercial and
pharmaceutical purposes. The ordinary potassium salts are very soluble
and for this reason they can not accumulate in large quantities in soils
exposed to heavy rain-fall. In the form of carbonate, potassium forms
one of the chief ingredients of hard wood ashes, and in this form of
combination is especially valuable for fertilizing purposes. Potash
salts, being extremely soluble, are likely to be held longest in
solution. Some of them, are recovered in animal and vegetable life, but
the great mass of potash carried into the sea still remains unaccounted
for. The recovery of the waste of potash is chiefly secured by the
isolation of sea waters containing large quantities of this salt and
their subsequent evaporation. Such isolation of sea waters takes place
by means of geologic changes in the level of the land and sea. In the
raising of an area above the water level there is almost certain to be
an enclosure, of greater or less extent, of the sea water in the form of
a lake. This enclosure may be complete or only partial, the enclosed
water area being still in communication with the main body of the sea by
means of small estuaries. If this body of water be exposed to rapid
evaporation, as was doubtless the case in past geologic ages, there will
be a continual influx of additional sea water through these estuaries to
take the place of that evaporated. The waters may thus become more and
more charged with saline constituents. Finally a point is reached in the
evaporation when the less soluble of the saline constituents begin to be
deposited. In this way the various formations of mineral matter,
produced by the drying up of enclosed waters, take place.
The most extensive potash deposits known are those in the neighborhood
of Stassfurt, in Germany. The following description probably represents
the method of formation of these deposits:[17]
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