Rough Ways Made Smooth: A series of familiar essays on scientific subjectsProctor, Richard A. (Richard Anthony)
Science
Rough Ways Made Smooth: A series of familiar essays on scientific subjects
Proctor, Richard A. (Richard Anthony)
Science
It is a question of some interest, and one on which different opinions
have been entertained, whether the moon at any stage of its existence
had oceans and an atmosphere corresponding in relative extent to
those of the earth. It appears to me that, apart from all the other
considerations which have been suggested in support of the view that
the moon formerly had oceans and an atmosphere, it is exceedingly
difficult to imagine how, under any circumstances, a globe so large
as the moon could have been formed under conditions not altogether
unlike, as we suppose, those under which the earth was formed (having
a similar origin, and presumably constructed of the same elements),
without having oceans and an atmosphere of considerable extent. The
atmosphere would not consist of oxygen and nitrogen only or chiefly,
any more than, in all probability, the primeval atmosphere of our
own earth was so constituted. We may adopt some such view of the
moon's atmosphere--_mutatis mutandis_--as Dr. Sterry Hunt has adopted
respecting the ancient atmosphere of the earth. Hunt, it will be
remembered, bases his opinion on the former condition of the earth by
conceiving an intense heat applied to the earth as now existing, and
inferring the chemical results. 'To the chemist,' he remarks, 'it is
evident that from such a process applied to our globe would result the
oxidation of all carbonaceous matter; the conversion of all carbonates,
chlorides, and sulphates into silicates; and the separation of the
carbon, chlorine, and sulphur in the form of acid gases; which,
with nitrogen, watery vapour, and an excess of oxygen, would form an
exceedingly dense atmosphere. The resulting fused mass would contain
all the bases as silicates, and would probably nearly resemble in
composition certain furnace-slags or basic volcanic glasses. Such we
may conceive to have been the nature of the primitive igneous rock,
and such the composition of the primeval atmosphere, _which must have
been one of very great density_.' All this, with the single exception
of the italicised remark, may be applied to the case of the moon. The
lunar atmosphere would not probably be dense at that primeval time,
even though constituted like the terrestrial atmosphere just described.
It would perhaps have been as dense, or nearly so, as our present
atmosphere. Accordingly condensation would take place at a temperature
not far from the present boiling-point, and the lower levels of
the half-cooled crust would be drenched with a heated solution of
hydrochloric acid, whose decomposing action would be rapid, though
not aided--as in the case of our primeval earth--by an excessively
high temperature. 'The formation of the chlorides of the various bases
and the separation of silica would go on until the affinities of the
acid were satisfied.' 'At a later period the gradual combination of
oxygen with sulphurous acid would eliminate this from the atmosphere
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