Elements of the Theory and Practice of Chymistry, 5th ed.Macquer, Pierre Joseph
History
Elements of the Theory and Practice of Chymistry, 5th ed.
Macquer, Pierre Joseph
Chemistry -- Early works to 1800
The Copper remaining after this separation is, as we took notice
before, still mixed with a little Lead. If you desire to separate it
entirely therefrom, you must put it into a cupel, and expose it under
the muffle to such a degree of fire as may convert all the Lead into
litharge. This cannot be so done but that some of the Copper also
will be scorified by the heat of the fire, and by the action of the
Lead: but as there is a very great difference between the facility and
readiness with which these two metals calcine, the portion of Copper
that is calcined, while the whole Lead is turning into litharge, is
scarce worth considering.
The Lead, though carefully separated from the Copper by the process
here delivered, is not yet absolutely pure: sometimes it is alloyed
with Gold, and almost always contains some Silver. If you would free
the Lead as much as possible from any mixture of these two metals, you
must convert it into glass, separate the remaining bead, and afterwards
reduce this glass of Lead. But, as these two perfect metals are of no
prejudice to the Lead, it is not usual to separate them from it, unless
they be in a sufficient proportion to defray the charge, and produce
some profit besides.
When we examine by the cupel the just proportion of Gold and Silver
that an ore or a mixed metalline mass will yield, we make a previous
assay of the Lead to be employed in the operation, and afterwards, in
our estimate, deduct a proper allowance for the quantity of fine metal
due to the Lead made use of.
PROCESS III.
_The Calcination of Lead._
Take what quantity of Lead you please; melt it in one or more unglazed
earthen pans: a dark grey powder will be found on its surface. Keep
stirring the metal incessantly till it be wholly converted into such a
powder, which is the _Calx of Lead_.
_OBSERVATIONS._
As Lead is a very fusible metal, and in that respect greatly resembles
Tin, most of the observations we made on the calcination of Tin may be
applied here.
In the calcination of all metals, and particularly in this of Lead,
there appears a singular phenomenon which is not easily accounted for.
It is this: though these matters lose a great deal of their substance,
either by the dissipation of their phlogiston, or because some of the
metal, perhaps, exhales in vapours, yet when the calcination is over
their calces are found to be increased in weight, and this increase is
very considerable. An hundred pounds of Lead, for example, converted
into Minium, which is nothing but a calx of Lead brought to a red
colour by continuing the calcination, are found to gain ten pounds
weight; so that for an hundred pounds of Lead we have one hundred and
ten pounds of Minium: a prodigious and almost incredible augmentation,
if it be considered that, far from adding any thing to the Lead, we
have on the contrary dissipated part of it.
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