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
In treating of Copper we promised to shew, under the article of Lead,
how to separate it from Iron. The process is founded on that property
of Lead which renders it incapable of mixing and uniting with Iron,
though it readily dissolves all other metalline substances. Therefore,
if you have a mass compounded of Copper and Iron, it must be fused
with a certain quantity of Lead, and then the Copper, having a greater
affinity with Lead than with Iron, will desert the latter and join the
former, which being incapable of any union with Iron, as was said, will
wholly exclude it from the new compound. The next point is to separate
the Lead from the Copper; which is done by exposing the mass compounded
of these two metals to a degree of fire strong enough to deprive the
Lead of its metalline form, but too weak to have the same effect on
the Copper: and this may be done; since, of all the imperfect metals,
Lead is, next to Tin, the easiest to be calcined, and Copper on the
contrary resists the greatest force of fire longest, without losing its
metalline form. Now what we gain by this exchange, viz. by separating
Copper from Iron and uniting it with Lead, consists in this, that as
Lead is calcined with less fire than Iron, the Copper is less exposed
to be destroyed: for it must be observed that, however moderate the
fire be, it is hardly possible to prevent a certain quantity thereof
from being calcined in the operation.
Lead melted with a third part of Tin forms a compound, which being
exposed to a fire capable of making it thoroughly red-hot, swells,
puffs up, seems in some sort to take fire, and is presently calcined.
These two metals mixed together are much sooner calcined than either of
them separately.
Both Lead and Tin are in some measure affected by water, and by a moist
air; but they are both much less subject than Iron or Copper to be
corroded by these solvents, and of course are much less liable to rust.
The vitriolic acid acts upon and dissolves Lead, much in the same
manner as it doth Silver.
The nitrous acid dissolves this metal with much ease, and in great
quantities; and from this solution a small portion of Mercury may
be obtained. On this subject see our _Elements of the Practice of
Chymistry_.
When this solution of Lead is diluted with a good deal of water, the
Lead precipitates in the form of a white powder; which happens because
the acid is rendered too weak to keep the Lead dissolved.
If this solution of Lead be evaporated to a certain degree, it shoots
into crystals formed like regular pyramids with square bases. These
crystals are of a yellowish colour, and a saccharine taste: they do not
easily dissolve in water. This nitrous metalline salt has the singular
property of detonating in a crucible, without any additament, or the
contact of any other inflammable substance. This property it derives
from the great quantity of phlogiston contained in, and but loosely
connected with, the Lead which is one of its principles.
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