From one ton of residue 10 to 20 kilogrms. of crude sulphates are
obtained, the activity of which is from thirty to sixty times as great
as that of metallic uranium. They must now be purified. For this purpose
they are boiled with sodium carbonate and transformed into the
chlorides. The solution is treated with sulphuretted hydrogen, which
gives a small quantity of active sulphides containing polonium. The
solution is filtered, oxidised by means of chlorine, and precipitated
with pure ammonia. The precipitated hydrates and oxides are very active,
and the activity is due to actinium. The filtered solution is
precipitated with sodium carbonate. The precipitated carbonates of the
alkaline earths are washed and converted into chlorides. These chlorides
are evaporated to dryness, and washed with pure concentrated
hydrochloric acid. Calcium chloride dissolves almost entirely, whilst
the chloride of barium and radium remains insoluble. Thus, from one ton
of the original material about 8 kilogrms. of barium and radium chloride
are obtained, of which the activity is about sixty times that of
metallic uranium. The chloride is now ready for fractionation.
_Polonium._
As I said above, by passing sulphuretted hydrogen through the various
hydrochloric acid solutions obtained during the course of the process,
active sulphides are precipitated, of which the activity is due to
polonium. These sulphides chiefly contain bismuth, a little copper and
lead; the latter metal occurs in relatively small amount, because it has
been to a great extent removed by the soda solution, and because its
chloride is only slightly soluble. Antimony and arsenic are found among
the oxides only in the minutest quantity, their oxides having been
dissolved by the soda. In order to obtain the very active sulphides, the
following process was employed:—The solutions made strongly acid with
hydrochloric acid were precipitated with sulphuretted hydrogen; the
sulphides thus precipitated are very active, and are employed for the
preparation of polonium; there remain in the solution substances not
completely precipitated in presence of excess of hydrochloric acid
(bismuth, lead, antimony). To complete the precipitation, the solution
is diluted with water, and treated again with sulphuretted hydrogen,
which gives a second precipitate of sulphides, much less active than the
first, and which have generally been rejected. For the further
purification of the sulphides, they are washed with ammonium sulphide,
which removes the last remaining traces of antimony and arsenic. They
are then washed with water and ammonium nitrate, and treated with dilute
nitric acid. Complete solution never occurs; there is always an
insoluble residue, more or less considerable, which can be treated
afresh if it is judged expedient. The solution is reduced to a small
volume and precipitated either by ammonia or by excess of water. In both
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