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
Other phosphate minerals occur frequently, but as a rule only in small
amounts, in connection with the ores of most metals. The only ones
of these of interest to agriculture are _Vivianite_ and _Dufrenite_,
the phosphates respectively of the protoxid and peroxid of iron. The
former occurs in mineral deposits as small blue crystals, or more
frequently as blue earthy masses or streaks, in the substrata of rich
alluvial ground (Louisiana, California). Dufrenite sometimes results
directly from the oxidation of the protoxid mineral, which then turns
greenish and finally brown. Unfortunately these minerals, rich as
they are in phosphoric acid, cannot readily be utilized as sources of
phosphate fertilizers, because of the difficulty of getting rid of the
iron. Their occurrence usually suggests the presence of abundance of
phosphoric acid in the soil. But that which is actually combined with
the iron oxids is practically unavailable to plants; especially so in
the case of the peroxid compound, the formation of which is a common
source of loss of phosphoric acid when soils rich in iron are submerged
for any length of time; a point which is discussed below (chapt. 13).
Among the iron phosphate minerals, may also be mentioned “bog ore,”
which results from the reductive maceration of swamped ferruginous
soils, and accumulates in the subsoils and in the bottom of swamps or
moors, forming “moorbedpan”; a dark brown, rather soft mass, which is
sometimes used as an iron ore, especially since the invention of the
“basic process” of iron smelting, one of the products of which is the
phosphate or Thomas slag. (See above).
_Nitrate of Soda or Chile saltpeter._—This mineral being (like all
nitrates) easily soluble in water, can only occur in regions nearly
or quite destitute of rainfall. Such is the case in the Plateau of
Tarapacà in Northern Chile, where it occurs in large quantities; it
is likewise found, but to much smaller extent, in Nevada, southern
California, Egypt and India. By far its most extended occurrence is
that in Chile, where, together with common salt, it fills cavities and
crevices in a gravelly clay that forms the surface of a plateau from
three to six thousand feet above the sea. It is never pure, but always
mingled with a large proportion (up to 50% and over) of common salt;
also some Glauber’s salt (sulfate of soda) and some sodic perchlorate
and iodid; hence it forms an important commercial source of iodine.
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