On the other hand, if the solution be due to the presence of carbon
dioxid and the water reach a place where it is exposed to the air or
where the pressure under which the abundance of the gas has been due is
diminished, the carbon dioxid will escape and the mineral matters which
have been dissolved thereby will be precipitated.
The incrustations which often appear round the mouth of springs and the
occurrence of stalagmites and stalactites in caves are illustrations of
this action.
In respect of the formation of rocks as precipitates from a state of
vapor we have scarcely any illustrations excepting in volcanic regions.
Rocky materials with which we are generally acquainted are practically
non-volatile at the highest temperature which can be secured on the
earth’s surface, but it is possible that in the interior of the earth
the temperature may be so high as to maintain many substances in a state
of vapor.
They may, in this case, become disassociated so that the compounds or
elements exist distinctly in a vaporous condition. Such a vapor
transported to regions of diminished temperature would first of all on
cooling permit a union of the chemical elements forming new compounds
less volatile, which, of course, would be at once precipitated.
The rocks and minerals formed in this way which are of some agricultural
importance may be classified as follows:
Oxids, carbonates, silicates, sulfur, sulfids, sulfates, phosphates,
chlorids, and hydrocarbon compounds, the most important from an
agricultural point of view being the phosphates.
The second group of rocks, namely those formed as sedimentary deposits,
differ from those just described in that they are comprised mainly of
fragmental materials derived from the breaking down of pre-existing
rocks. The formation of fragmental rocks includes, therefore, the same
processes as are active in the formation of arable soil. They are
deposited from water, and are as a rule distinctly stratified.
Through the action of pressure and the heat thereby generated, or simply
through the chemical action of percolating solutions, such rocks pass
over into the crystalline sedimentary forms known as metamorphic. All
metamorphic rocks, however, are not of a sedimentary origin. For
instance, by pressure, heat, and the chemical changes thereby induced,
granite may be changed into gneiss and the latter would then be a
metamorphic rock.
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