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 nitrous acid dissolves Iron with great ease. This solution is of a
yellow colour, inclining more or less to a russet, or dark-brown, as it
is more or less saturated with Iron. Iron dissolved by this acid, also,
falls spontaneously in a kind of calx, which is incapable of being
dissolved a second time; for the nitrous acid will not act upon Iron
that has lost its phlogiston. This solution does not crystallize, and
if evaporated to dryness attracts the moisture of the air.
Spirit of salt likewise dissolves Iron, and this solution is green. The
vapours which rise during the dissolution are inflammable, like those
which ascend when this metal is attacked by the vitriolic acid. _Aqua
regis_ makes a solution of Iron, which is of a yellow colour.
Iron hath a greater affinity than either Silver or Copper with the
nitrous and vitriolic acids: so that if iron be presented to a solution
of either in one of these two acids, the dissolved metal will be
precipitated; because the acid quits it for the Iron, with which it has
a greater affinity.
On this occasion it must be observed, that if a solution of Copper in
the vitriolic acid be precipitated by means of Iron, the precipitate
has the form and splendour of a metal, and does not require the
addition of a phlogiston to reduce it to true Copper; which is not the
case, as has been shewn, when the precipitation is effected by earths
or alkaline salts.
The colour of this metalline precipitate hath deceived several persons,
who being unacquainted with such phenomena, and with the nature of blue
vitriol, imagined that Iron was transmuted into Copper, when they saw
a bit of Iron laid in a solution of that vitriol become, in form and
external appearance, exactly like Copper: whereas the surface only of
the Iron was crusted over with the particles of Copper contained in the
vitriol, which had gradually fallen upon and adhered to the Iron, as
they were precipitated out of the solution.
Among the solvents of Iron we mentioned fixed alkalis; and that they
have such a power is proved by the following phenomenon. If a large
proportion of alkaline salts be suddenly mixed with a solution of Iron
in an acid, no precipitation ensues, and the liquor remains clear and
pellucid; or if at first it look a little turbid, that appearance lasts
but a moment, and the liquor presently recovers its transparency.
The reason is, that the quantity of alkali is more than sufficient
to saturate all the acid of the solution, and the super-abundant
portion thereof, meeting with the Iron already finely divided by the
acid, dissolves it with ease as fast as it falls, and so prevents
its muddying the liquor. To evince that this is so in fact, let the
alkali be applied in a quantity that is not sufficient, or but barely
sufficient, to saturate the acid, and the Iron will then precipitate
like any other metal.
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