Now commences the tedious part of the process. The metallic ingot
is attacked with hot nitro-hydrochloric acid until no more iron
is dissolved. The bulky residue consists chiefly of graphite,
together with translucent chestnut-coloured flakes of carbon,
black opaque carbon of a density of from 3·0 to 3·5 and hard as
diamonds--black diamonds or carbonado, in fact--and a small portion
of transparent, colourless diamonds showing crystalline structure.
Besides these there may be carbide of silicon and corundum, arising
from impurities in the materials employed.
The residue is first heated for some hours with strong sulphuric
acid at the boiling-point, with the cautious addition of powdered
nitre. It is then well washed and for two days allowed to soak in
strong hydrofluoric acid in cold, then in boiling acid. After this
treatment the soft graphite disappears, and most, if not all, the
silicon compounds have been destroyed. Hot sulphuric acid is again
applied to destroy the fluorides, and the residue, well washed, is
attacked with a mixture of the strongest nitric acid and powdered
potassium chlorate, kept warm--but not above 60° C., to avoid
explosions. This treatment must be repeated six or eight times,
when all the hard graphite will gradually be dissolved and little
else left but graphitic oxide, diamond, and the harder carbonado
and boart. The residue is fused for an hour in fluorhydrate or
fluoride of potassium, then boiled out in water and again heated
in sulphuric acid. The well-washed grains which resist this
energetic treatment are dried, carefully deposited on a slide, and
examined under the microscope. Along with numerous pieces of black
diamond are seen transparent, colourless pieces, some amorphous,
others with a crystalline appearance. Fig. 21 B shows one of these
crystalline fragments. Although many fragments of crystals occur,
it is remarkable I have never seen a complete crystal. All appear
shattered, as if on being liberated from the intense pressure
under which they were formed they burst asunder. I have singular
evidence of this phenomenon. A fine piece of artificial diamond,
carefully mounted by me on a microscopic slide, exploded during
the night and covered the slide with fragments. Moissan’s crystals
of artificial diamond sometimes broke a few weeks after their
preparation, and some of the diamonds which cracked weeks or even
months after their preparation showed fissures covered with minute
cubes. I have explained that this bursting paroxysm is not unknown
at the Kimberley mines. So far, all such artificial diamonds are
microscopic. The largest artificial diamond is less than one
millimetre across.
[Illustration: FIG. 21. ARTIFICIAL DIAMOND MADE BY THE AUTHOR FROM
MOLTEN IRON.]
[Illustration: FIG. 22. MOISSAN’S ARTIFICIAL DIAMONDS.
To face p. 120.]
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