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
The method of working an assay may be gathered from the following
example:--In the determination of silver in some buttons left after
cupellation, it was assumed that these would contain 99.5 per cent. of
silver. For the assay it was necessary to take a quantity that should
contain a little more than 1.0075 grams of silver; then
99.5 : 100 :: 1.0075 : _x_
_x_ = 1.0125
To ensure a slight excess, there was taken 1.0150 gram of the buttons,
which was treated in exactly the same way as for the standardising. The
quantity of the weaker salt solution required was 7 c.c.; deducting 1.5
c.c., and dividing by 10, gives 100.55 c.c. of strong salt solution,
which is equivalent to 1.0130 gram of silver. This being obtained from
1.015 gram of alloy, is equal to 99.8 per cent., or 998.0 fine.
~The Effect of Temperature.~--The standardising and the assay must be
done at the same time, since a difference of 5° C. makes a difference of
0.1 c.c. in measuring the 100 c.c. of strong solution of salt. It is
always best to prepare a standard with each batch of assays.
~SULPHOCYANATE METHOD.~--Volhard's process is based upon the
precipitation of silver in nitric acid solutions with potassium
sulphocyanate, the finishing point being the development of a
reddish-brown colour, produced by the action of the excess of
sulphocyanate upon ferric sulphate. The white sulphocyanate settles
readily, leaving the liquor clear; and a persistent brown coloration in
the liquid indicates the finish. The assay must be carried out in the
cold; and water free from chlorides[16] must be used.
_The standard sulphocyanate of potassium_ solution is made by dissolving
4-1/2 or 5 grams of the salt (KCyS) in water, and diluting to 1 litre.
100 c.c. are about equivalent to 0.5 gram of silver.
_The standard silver nitrate solution_ is made by dissolving 5 grams of
fine silver in 50 c.c. of dilute nitric acid, boiling off nitrous fumes,
and diluting to 1 litre.
The _indicator_ is a saturated solution of iron alum, or a solution of
ferric sulphate of equivalent strength made by titrating acid ferrous
sulphate with potassium permanganate. Use 2 c.c. for each assay.
The sulphocyanate solution is standardised by placing 50 c.c. of the
silver nitrate solution in a flask with 20 c.c. of dilute nitric acid,
diluting to 100 c.c. with water, and running in the sulphocyanate until
the greater part of the silver is precipitated; then adding 2 c.c. of
the ferric indicator, and continuing the titration until a reddish-brown
colour is developed, and remains permanent after shaking continuously.
The assay is similarly performed, the silver being used in the state of
a nitric acid solution.
The effect of variations in the conditions of the assay may be seen from
the following experiments, in which 20 c.c. of standard silver nitrate
were used:--
~Effect of Varying Temperature~:--
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