A text-book of assaying : $b for the use of those connected with mines.Beringer, C. (Cornelius)
Science
A text-book of assaying : $b for the use of those connected with mines.
Beringer, C. (Cornelius)
Assaying
Without addition 2.9 0.3 2.9
With antimony 3.2 0.2 3.2
With copper 4.9 1.7 4.9
Perhaps the antimony has so small an effect because it is eliminated in
the earlier part of the process, while the silver is still alloyed with,
and protected by, a large proportion of lead; whilst the copper on the
other hand makes its fiercest attack towards the close, when the silver
is least capable of resisting it. The ill effects of copper are most
strongly felt when the quantity of lead present is not sufficient to
remove it: the coppery button of silver got under these conditions is
very considerably less than the weight of silver originally taken.
Although the above is a fair statement of the loss attending average
work, it will not do in very important and exact work to place too much
reliance on the figures given, or, indeed, on any other set of figures,
with the object of correcting the result of an assay. Each man must rely
on his own work.
It is easy to determine what allowance must be made for the loss in
cupellation by cupelling side by side with the assay piece an alloy of
similar and _known_ composition. For, if the two pieces are very nearly
alike, we may justly conclude that the loss on each will be the same;
and if, further, we take the average of three or four such
determinations we shall get results accurate within 0.1 per cent. The
method of getting such results may be best explained by one or two
illustrations. This method of working is termed "assaying by checks."
Suppose we have an alloy of silver and lead in unknown proportions and
that by cupelling two lots of 10 grams each there is got from I. 0.1226
gram of silver, and from II. 0.1229 gram. We should know from general
experience that the actual quantity of silver present was from 2 to 4
milligrams more than this. To determine more exactly what the loss is,
the following plan is recommended:--The two silver buttons are wrapped
up each in 10 grams of lead, and cupelled side by side with two other
lots of 10 grams of the original alloy. If now the two buttons I. and
II. weigh 0.1202 and 0.1203, they will have suffered in this second
cupellation an average loss of 2.5 milligrams. Suppose the two fresh
lots of alloy gave 0.1233 and 0.1235 of silver, the average loss on
these would also be 2.5 milligrams. Add this loss to each result, and
take the mean; which is in this case 0.1259.
Public-domain text, read in full here on John Shaqi.
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