The Rare Earths: Their Occurrence, Chemistry, and TechnologyLevy, Stanley Isaac
Science
The Rare Earths: Their Occurrence, Chemistry, and Technology
Levy, Stanley Isaac
Rare earths
Of the methods of volumetric analysis which have been proposed, that put
forward by Feit and Przibylla appears to be the most suitable. A
convenient quantity of oxide, which has been ignited until constant in
weight, is dissolved by gently heating with a known excess of N/2
sulphuric acid, in a conical flask of Jena glass. The excess of acid is
titrated with N/10 sodium hydroxide, using methyl orange as indicator.
This method, which has the advantages of ease and quickness, is very
reliable, if suitable precautions are taken, in the case of the more
strongly basic oxides; but with the least strongly basic members of the
yttria group, the erbia and ytterbia oxides, the end point is not very
sharp, whilst with the weakly basic scandia, the method breaks down
entirely.[194]
[194] _Zeitsch. anorg. Chem._ 1905, ~43~, 202; 1906, ~50~, 249.
CHAPTER XI
THE CERIUM GROUP--CERIUM
The extraction of the rare earth elements from minerals, by which they
are obtained in the form of the oxalates, and the methods of bringing
these into solution, have already been described. From the solution,
before any separation of the rare earths is attempted, thorium should be
removed; for this purpose, any of the methods described under estimation
of thorium (see p. 286) may be used, the most convenient being the
peroxide precipitation of Wyrouboff and Verneuil.
The solution is then treated with potassium sulphate until the
absorption bands of didymium (praseodymium and neodymium) can no longer
be observed, or appear only very faintly, when a layer of the solution
is examined with a spectroscope; the precipitate then consists of the
potassium double sulphates of the cerium with some of the terbium
elements. If the mixture is very rich in the cerium elements, and
correspondingly poor in the yttrium elements--as, for example, the
mixture of earths obtained from monazite--Drossbach[195] recommends a
preliminary separation by means of the double carbonates; the double
sulphate method may then be employed to remove the last of the yttrium
and most of the terbium elements. The sparingly soluble double sulphates
of the cerium metals may be transformed into the hydroxides by digestion
with potassium hydroxide, and these taken into solution, after washing,
by hydrochloric or nitric acid.
[195] _Ber._ 1900, ~33~, 3506.
~Cerium~, Ce = 140·25
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