Creative Chemistry: Descriptive of Recent Achievements in the Chemical IndustriesSlosson, Edwin E. (Edwin Emery)
Science
Creative Chemistry: Descriptive of Recent Achievements in the Chemical Industries
Slosson, Edwin E. (Edwin Emery)
Chemistry, Technical
When platinum was first discovered it was so cheap that ingots of it
were gilded and sold as gold bricks to unwary purchasers. The Russian
Government used it as we use nickel, for making small coins. But this is
an exception to the rule that the demand creates the supply. Platinum is
really a "rare metal," not merely an unfamiliar one. Nowhere except in
the Urals is it found in quantity, and since it seems indispensable in
chemical and electrical appliances, the price has continually gone up.
Russia collapsed into chaos just when the war work made the heaviest
demand for platinum, so the governments had to put a stop to its use for
jewelry and photography. The "gold brick" scheme would now have to be
reversed, for gold is used as a cheaper metal to "adulterate" platinum.
All the members of the platinum family, formerly ignored, were pressed
into service, palladium, rhodium, osmium, iridium, and these, alloyed
with gold or silver, were employed more or less satisfactorily by the
dentist, chemist and electrician as substitutes for the platinum of
which they had been deprived. One of these alloys, composed of 20 per
cent. palladium and 80 per cent. gold, and bearing the telescoped name
of "palau" (palladium au-rum) makes very acceptable crucibles for the
laboratory and only costs half as much as platinum. "Rhotanium" is a
similar alloy recently introduced. The points of our gold pens are
tipped with an osmium-iridium alloy. It is a pity that this family of
noble metals is so restricted, for they are unsurpassed in tenacity and
incorruptibility. They could be of great service to the world in war and
peace. As the "Bad Child" says in his "Book of Beasts":
I shoot the hippopotamus with bullets made of platinum,
Because if I use leaden ones, his hide is sure to flatten 'em.
Along in the latter half of the last century chemists had begun to
perceive certain regularities and relationships among the various
elements, so they conceived the idea that some sort of a pigeon-hole
scheme might be devised in which the elements could be filed away in the
order of their atomic weights so that one could see just how a certain
element, known or unknown, would behave from merely observing its
position in the series. Mendeleef, a Russian chemist, devised the most
ingenious of such systems called the "periodic law" and gave proof that
there was something in his theory by predicting the properties of three
metallic elements, then unknown but for which his arrangement showed
three empty pigeon-holes. Sixteen years later all three of these
predicted elements had been discovered, one by a Frenchman, one by a
German and one by a Scandinavian, and named from patriotic impulse,
gallium, germanium and scandium. This was a triumph of scientific
prescience as striking as the mathematical proof of the existence of the
planet Neptune by Leverrier before it had been found by the telescope.
Public-domain text, read in full here on John Shaqi.
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