The direct volumetric precipitation of the phosphoric acid by a uranium
salt or otherwise is practiced only when the acid is combined with the
alkalies and when iron and alumina are absent and only small quantities
of lime present. This method has therefore but little practical value
for agricultural purposes. In all volumetric analyses the accuracy of
the burettes, pipettes, and other graduated vessels should be proved by
careful calibration. Many of the disagreements in laboratories where
the analytical work is conducted equally well can be due to no other
cause than the inaccuracy of the graduated vessels which are found in
commerce. Burettes should not only be calibrated for the whole volume
but for at least every five cubic centimeters of the graduation.
URANIUM METHOD AS PRACTICED BY THE FRENCH CHEMISTS.
=87. The Uranium Method.=—Since the phosphoric acid of practical use
for agricultural purposes is nearly always combined with lime, alumina,
and iron, its volumetric estimation by means of a standard solution of
a uranium salt is to be preceded by a preliminary separation by means
of an ammoniacal magnesium citrate solution. The principle of the
method was almost simultaneously published by Sutton,[77] Neubauer,[78]
and Pincus.[79] The phosphoric acid may also be separated by means of
molybdic solution or by tin or bismuth.[80] In practice, however, it
has been found that when the uranium method is to be used the magnesium
citrate separation is the most convenient. Since this is the method
practiced almost universally in France, the method there used will be
given in detail. It is based essentially on the process described by
Joulie.[81]
=88. Preparation of Sample.=—(1) _Incineration._—Since the organic
matters present in a phosphatic fertilizer often interfere with the
employment of uranium as a reagent, it is necessary to incinerate the
sample taken for analysis.[82]
(2) _Solution of the Material._—All phosphates, with the exception
of certain aluminum phosphates, amblygonite for example, are easily
dissolved in nitric and hydrochloric acids more or less dilute,
especially on ebullition. The best solvent, however, for calcium
phosphates for the uranium method is incontestably hydrochloric acid
which also very easily dissolves the iron and aluminum phosphates,
which are often found present with calcium phosphates.
(3) _Nitric Acid._—In many laboratories nitric acid is preferred in
order to avoid, in part, the solution of ferric oxid which interferes
with the determination of phosphoric acid in certain processes. Since
it does not act in this way for the citro-magnesium uranium method,
it is preferable to employ hydrochloric acid, especially because it
dissolves the iron completely and permits thus the operator to judge of
the success of the solvent action by the completely white color of the
residue.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account