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
Equivalent to 4.20 per cent.
The same ore gave by separation of the lead with sulphuretted hydrogen,
and conversion into sulphate, 4.16 per cent.
With fairly pure ores, free from sulphate, the assay may be made more
quickly as follows: Dissolve 1 gram of the finely powdered ore by
boiling gently with 40 c.c. of dilute hydrochloric acid for 15 minutes;
cool; add a few drops of permanganate; neutralise with ammonia, add
acetic acid and a little sodium acetate. Titrate with standard chromate.
COLORIMETRIC PROCESS.
This is based upon the brown coloration produced in very dilute
solutions of lead by the action of a solution of sulphuretted hydrogen.
The quantity of lead in the 50 c.c. of the assay solution must not much
exceed 0.5 milligram, nor be less than 0.01. The sulphuretted hydrogen
is used in the form of a solution, and is not bubbled through the assay.
The principle of working is the same as previously described.
_Standard Lead Solution._--Each c.c. of this should contain 0.1
milligram of lead. It is made by diluting 10 c.c. of the solution of
lead nitrate, described under the volumetric process, to 1 litre.
_Sulphuretted hydrogen water_ is made by passing a current of the washed
gas into water till the latter is saturated.
Five c.c. of the sulphuretted hydrogen water are put into a Nessler
tube, the measured portion of the assay solution added, and the whole
diluted with water to the 50 c.c. mark. Into the standard Nessler tube
the same amount of the sulphuretted hydrogen water is put, and diluted
to nearly 50 c.c. The standard lead solution is then run in till the
tints are equal. The assay solution must not contain much free acid, and
if the conditions will allow it, may with advantage be rendered alkaline
with ammonia. The chief cause of disturbance is the precipitation of
lead sulphide forming a black turbid solution instead of a brown clear
one. This may be caused by using hot solutions or an excess of acid.
Other metals precipitable by sulphuretted hydrogen must be absent as
well as strong oxidising agents.
~Effect of Varying Temperature.~--The effect of increased temperature is
to change the colour from brown to black, and to render the estimation
difficult.
1 c.c. at 15° C. showed the colour of 0.5 c.c. at 60° C.
2 " " " " 1.5 " at 60° C.
3 " " " " 5.0 " at 50° C.
~Effect of Varying Time.~--The colour becomes lighter on standing: 2
c.c. on standing 10, 20, and 40 minutes became equal in colour to 1.7
c.c.
~Effect of Acids and Ammonia.~--Two c.c. of the solution with 2 c.c. of
dilute hydrochloric acid became cloudy and equivalent to about 2.5 c.c.;
and a similar result was got with 2 c.c. of dilute sulphuric acid. With
2 c.c. of dilute ammonia the solution became somewhat darker, or equal
to 2.3 c.c.; but gave a very clear solution easy to compare.
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