The Principles of Chemistry, Volume IMendeleyev, Dmitry Ivanovich
Science
The Principles of Chemistry, Volume I
Mendeleyev, Dmitry Ivanovich
Argon; Chemistry; Periodic law
The influence of heat on reversible reactions is particularly
instructive. If, for instance, a compound which is capable of being
reproduced from its products of decomposition be heated up to the
temperature at which decomposition begins, the decomposition of a mass
of the substance contained in a definite volume is not immediately
completed. Only a certain fraction of the substance is decomposed, the
other portion remaining unchanged, and if the temperature be raised, the
quantity of the substance decomposed increases; furthermore, for a given
volume, the ratio between the part decomposed and the part unaltered
corresponds with each definite rise in temperature until it reaches that
at which the compound is entirely decomposed. This partial decomposition
under the influence of heat is called _dissociation_. It is possible
to distinguish between the temperatures at which dissociation begins
and ends. Should dissociation proceed at a certain temperature, yet
should the product or products of decomposition not remain in contact
with the still undecomposed portion of the compound, then decomposition
will go on to the end. Thus limestone is decomposed in a limekiln
into lime and carbonic anhydride, because the latter is carried off
by the draught of the furnace. But if a certain mass of limestone be
enclosed in a definite volume--for instance, in a gun barrel--which is
then sealed up, and heated to redness, then, as the carbonic anhydride
cannot escape, a certain proportion only of the limestone will be
decomposed for every increment of heat (rise in temperature) higher
than that at which dissociation begins. Decomposition will cease
when the carbonic anhydride evolved presents a maximum _dissociation
pressure_ corresponding with each rise in temperature. If the pressure
be increased by increasing the quantity of gas, then combination begins
afresh; if the pressure be diminished decomposition will recommence.
Decomposition in this case is exactly similar to evaporation; if the
steam given off by evaporation cannot escape, its pressure will reach a
maximum corresponding with the given temperature, and then evaporation
will cease. Should steam be added it will be condensed in the liquid;
if its quantity be diminished--_i.e._ if the pressure be lessened,
the temperature being constant--then evaporation will go on. We shall
afterwards discuss more fully these phenomena of dissociation, which
were first discovered by Henri St. Claire Deville. We will only remark
that the products of decomposition re-combine with greater facility the
nearer their temperature is to that at which dissociation begins, or, in
other words, that the initial temperature of dissociation is near to the
initial temperature of combination.
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