In case as large an aliquot as fifty cubic centimeters of the original
filtrate be used, ten cubic centimeters of sulfuric acid are added,
and the digestion is conducted in a flask of 300-500 cubic centimeters
capacity; after the liquid has blackened and foaming has progressed to
a considerable extent, the flask is removed from the flame, fifteen
cubic centimeters more of sulfuric acid are added, and the flask and
contents are heated at a moderate temperature for two or three minutes;
the mercuric oxid is then added and the operation completed as before
described.
Following are some of the advantages offered by the method described:
(1) It dispenses with the necessity of the execution of the frequently
tedious operation of bringing upon the filter and washing the residue
from the ammonium citrate digestion, while the ignition of this residue
together with the subsequent digestion with acid and filtration are
also avoided.
(2) It affords a means for the direct estimation of that form of
phosphoric acid which, together with the water-soluble, constitutes the
available phosphoric acid, thus enabling the latter to be determined by
making only two estimations.
(3) In connection with the advantages above mentioned it permits
of a considerable saving of time, as well as of labor required in
manipulation.
In addition to the tests with mercuric oxid, both potassium nitrate and
potassium sulfate were used in the digestion to facilitate oxidation.
With the former, several additions of the salt were necessary to secure
a satisfactory digestion, and even then the time required was longer
than with the mercury or mercuric oxid digestion. With potassium
sulfate, the excessive foaming which took place interfered greatly with
the execution of the digestion process.
=134. Availability of Phosphatic Fertilizers.=—There is perhaps no one
question more frequently put to analysts by practical farmers than
the one relating to the availability of fertilizing materials. The
object of the manufacturer should be to secure each of the valuable
ingredients of his goods in the most useful form. The ideal form in
which phosphoric acid should come to the soil is one soluble in water.
Even in localities where heavy rains may abound, there is not much
danger of loss of soluble acid by percolation. As has before been
indicated, the soluble acid tends to become fixed in all normal soils,
and to remain in a state accessible to the rootlets of plants, and yet
free from danger of leaching. For this reason, by most agronomists, the
water-soluble acid is not regarded as more available than that portion
insoluble in water, yet soluble in ammonium citrate.
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