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
_Exchange of bases in Zeolites._—Although zeolites rarely form a large
proportion of rock-masses and therefore do not enter directly into the
soil minerals to any great extent, their interest in connection with
soil-formation is very great, because of the continuation, within the
soil, of the same processes that bring about their formation in rocks.
Under the conditions existing in soils they will naturally rarely
form crystals, but will appear in the pulverulent or gelatinous form,
leaving the zeolitic nature of the material to be inferred from its
chemical behavior. Among these characters the ready decomposability
by acids has already been mentioned; another of special importance in
the economy of soils is the fact that when a pulverized zeolite is
subjected to the action of a solution containing either of the stronger
bases usually present (potash, soda or lime), such base or bases
will be partially or wholly taken up by the zeolitic powder, while
corresponding amounts of the bases originally present will pass into
solution.
Thus when a hydrosilicate of soda and alumina is digested
with a solution of potassic chlorid or sulphate, the soda
may be partially or wholly replaced by potash, while the
corresponding sodium salt passes into solution. In the case
of zeolites containing lime or magnesia or both, the action
of potassic or sodic chlorid will be to partially replace
the lime, while calcic and magnesic chlorids pass into
solution, resulting in the partial or complete replacement
of the lime by one or the other, or by both bases. It is
important to note that, other things being equal, potash
is usually absorbed in greater amounts and is held more
tenaciously than soda. The process may frequently be
partially or wholly reversed again, by subsequent treatment
with large amounts of solutions of the displaced base or
bases. Thus while a solution of potassic chlorid may be made
to expel almost completely the sodium present in analcite,
subsequent treatment with sodic chlorid solution will again
almost completely displace the potash before taken up.
The same happens when the natural mineral potash leucite,
(see p. 32) of frequent occurrence in certain lavas, is
pulverized and treated with a sodic solution; resulting
finally in the production of a mass corresponding to natural
analcite, the sodium mineral corresponding to leucite.
In other words, in any zeolitic powder the alkaline or alkaline earth
bases present may be partially or wholly displaced by digestion with an
excess of solution of any of these, varying according to the amount of
solution employed, and the length of time and temperature of action.
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