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
A wash-bottle with cold distilled water and two beakers, one with
distilled water and the other with alcohol, are got ready. The block is
then removed, the spiral loosened and lowered with the beaker. The
cylinder is next detached and washed with a stream of water from the
wash-bottle, the washings being added to the original solution. The
current from the battery is not stopped until all the cylinders are
washed. After being dipped in the beaker of water and once or twice in
that with the alcohol, it is dried in the water-oven for about three
minutes, and then weighed. The increase in weight is due to deposited
copper. This should be salmon-red in colour, satin-like or crystalline
in appearance, and in an even coherent deposit, not removed by rubbing.
It is permanent in air when dry, but sulphuretted hydrogen quickly
tarnishes it, producing coloured films. With ores containing even very
small proportions of bismuth, the deposited copper has a dark grey
colour, and when much of this metal is present the copper is coated with
a grey shaggy deposit.
It still remains to determine any copper left undeposited in the
solution. This does not generally exceed four or five milligrams, and
is estimated colorimetrically. Thirty c.c. of dilute ammonia (one of
strong ammonia mixed with one of water) are added to the electrolysed
solution, which is then diluted up to the 150 c.c. mark with water. It
is mixed, using the spiral as stirrer, and, after standing a few minutes
to allow the precipitate to settle, 100 c.c. of it are filtered off
through a dry filter for the colorimetric determination. Since only
two-thirds of the solution are taken for this, the quantity of copper
found must be increased by one-half to get the quantity actually
present.
[Illustration: FIG. 55.]
The ~colorimetric determination~ may be made in the manner described
under that head, but where a number of assays are being carried out it
is more convenient to have a series of standard phials containing known
amounts of copper in ammoniacal solution. By comparing the measured
volume of the assay solution with these, the amount of copper present is
determined at a glance. These standard bottles, however, can only be
economically used where a large number of assays are being made daily.
A convenient plan is to get a quantity of white glass four-ounce phials,
like that in fig. 55, and to label them so that they shall contain 100
c.c. when filled up to the bottom of the labels. The labels should be
rendered permanent by coating with wax, and be marked with numbers
indicating the milligrams of copper present. The bottles are stopped
with new clean corks, and contain, in addition to the specified quantity
of copper, 6 c.c. of nitric acid and 10 c.c. of strong ammonia, with
sufficient water to make up the bulk to 100 c.c. The copper is best
added by running in the requisite amount of a standard solution of
copper, each c.c. of which contains 0.001 gram of the metal.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account