The Ancient Volcanoes of Great Britain, Volume 1 (of 2)Geikie, Archibald
History
The Ancient Volcanoes of Great Britain, Volume 1 (of 2)
Geikie, Archibald
Volcanoes -- Great Britain
Though originally the vesicles and cavernous spaces, blown open by the
expansion of the vapours dissolved in molten lava, remained empty on
the consolidation of the rock, they have generally been subsequently
filled up by the deposit within them of mineral substances carried in
aqueous solution. The minerals thus introduced are such as might have
been derived from the removal of their constituent ingredients by the
solvent action of water on the surrounding rock. And as amygdaloids
are generally more decayed than the non-vesicular lavas, it has been
generally believed that the abstraction of mineral material and its
re-deposit within the steam-vesicles have been due to the influence of
meteoric water, which at atmospheric temperatures and pressures has
slowly percolated from the surface through the cellular lava, long
after the latter had consolidated and cooled, and even after volcanic
energy at the locality had entirely ceased.
[Illustration: Fig. 2.--Elongation and branching of steam-vesicles in a
lava, Kilninian, Isle of Mull, a little less than natural size.]
Examples, however, are now accumulating which certainly prove that, in
some cases, the vesicles were filled up during the volcanic period.
Among the Tertiary basalt-plateaux of the Inner Hebrides, for instance,
it can be shown that the lavas were already amygdaloidal before the
protrusion of the gabbros and granophyres which mark later stages of
the same continuous volcanic history, and even before the outpouring
of much of the basalt of these plateaux. Not improbably the mineral
secretions were largely due to the influence of hot volcanic vapours
during the eruption of the basalts. This subject will be again referred
to in the description of the Tertiary volcanic series.
Vesicular structure is more commonly and perfectly developed among the
lavas which are basic and intermediate in composition than among those
which are acid.
While the existence of a highly vesicular or scoriaceous structure may
generally be taken as proof that the rock displaying it flowed out at
the surface as a lava, other evidence pointing to the same conclusion
may often be gathered from the rocks with which the supposed lava is
associated. Where, for example, a scoriaceous lava is covered with
stratified deposits which contain pieces of that lava, we may be
confident that the rock is an interstratified or contemporaneous sheet.
It has been erupted after the deposition of the strata on which it
rests, and before that of the strata which cover it and contain pieces
of it. In such a case, the geological date of the eruption could be
precisely defined. Illustrations of this reasoning will be given in
Chapter iv., and in the account of the volcanic series of Carboniferous
age in Central Scotland, where a basic lava can sometimes be proved to
be a true flow and not an intrusive sill by the fact that portions of
its upper slaggy surface are enclosed in overlying sandstone, shale or
limestone.
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