Soils, their formation, properties, composition, and relations to climate and plant growth in the humid and arid regionsHilgard, Eugene W. (Eugene Woldemar)
Science
Soils, their formation, properties, composition, and relations to climate and plant growth in the humid and arid regions
Hilgard, Eugene W. (Eugene Woldemar)
Soils
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It will be noted that the greater fineness of grain in the Washington
dust soil induces a higher absorption of moisture than occurs in the
sandy soil from Mississippi, although the latter contains more clay.
Comparison of the figure for the Mississippi pipe-clay and clay soil
with the ferruginous soils, from the same state and from Oahu, indicate
plainly the influence of the ferric hydrate in increasing absorption;
although in the latter case the clay determination was not made,
because of the excess of ferric hydrate. The influence of humus is
plainly shown in the case of the marsh muck and soil, neither of which
contain any appreciable amount of either clay, or ferric hydrate in
the finely diffused condition. The relatively slight difference in the
absorptions of muck and soil is due to the only partial humification of
the organic matter in the former, while in the soil the humification is
sensibly complete, and the sand forming the body of the material serves
to render it more loose.
These data, referring to natural materials, while not as complete
as could be desired, are sufficient to prove the facts, and seem
preferable to any artificially devised imitation of their kind.
_Influence of Temperature, and Degree of Air-Saturation._—The amount
of moisture absorbed varies materially both with the temperature,
and with the degree of saturation of the air to which the soil is
exposed. Schübler, Knop and other earlier observers, operating with
earth exposed to air only partly saturated, and with soil layers of
considerable thickness (in watch glasses), found that the absorption
decreased as the temperature increased, according to a law formulated
by Knop. The writer found that under the conditions established in the
experiments of Knop and others, the air was not nearly saturated,[70]
so that these determinations are marred by ineliminable faults, the
more as the soils used are only designated in general terms, as “garden
soil,” “loam,” “peaty land,” etc., without any definite indication of
their actual physical or chemical constitution. The writer therefore
undertook to correlate these coefficients, determined with respect to
completely saturated air, with the physical composition of certain
soils, as determined by means of the methods heretofore described.
[70] It should be understood that it is by no means easy to insure full
saturation in any considerable volume of air.
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