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
They have the characteristic contour of that mineral and its peculiar
transverse curved and irregular fractures. The average length of these
pseudomorphs was found, from the measurement of six examples, to be
0·023 inch, the largest being 0·034, and the smallest 0·014. Seen by
transmitted light they present a structureless pale-green material
nearly inert in polarized light, round the borders and across fissures
in which an opaque substance has been developed, as serpentine and
magnetite have been grouped in the familiar alteration of olivine.
The opaque material is bright brick-red in reflected light, and is
evidently now chiefly oxidized into hæmatite. Every stage may be
traced, from orthorhombic forms with the incipient development of
transverse fissures filled with iron-oxide, to others of distorted
shapes in which the ferruginous matter occupies the whole, or nearly
the whole, of the mould of the original crystal.
The rocks now described differ from the Palæozoic andesites or
"porphyrites," with which I am acquainted, in their more basic
composition, in the less abundance of their microscopic base, in the
comparatively inconspicuous development of their felspars of later
consolidation, in the absence of large porphyritic felspars of earlier
consolidation, in the extraordinary prominence of the granular augite,
and in the presence of olivine. In composition and structure they are
essentially forms of olivine-diabase.
[Illustration:
Fig. 41.--Section showing the interstratification of tuff and
conglomerate above Lower Mill, St. David's.
]
Above the volcanic group of St. David's lies a band of
quartz-conglomerate which has been taken by Dr. Hicks to mark the base
of the Cambrian system. This rock, though mainly composed of quartz
and quartzite, contains fragments of the underlying volcanic rocks.
But that it does not mark any decided break in the sedimentation, much
less the violent unconformability and vast interval of time which
it has been erroneously supposed to do, is well illustrated by the
occurrence of bands of tuff, as well as diffused volcanic dust, in
the conglomerate and also in the green and red shales and sandstones
which conformably overlie it. An example of this intercalation
of volcanic material is represented in Fig. 41. On the left side
vertical layers of fine reddish tuff (_a_) are succeeded by a band
of quartz conglomerate (_b_) of the usual character. Parallel to this
conglomerate comes a band, about six inches thick, of fine tuff (_c_),
followed by ashy sandstone (_d_), which graduates into conglomerate
(_e_). No more complete evidence could be desired of the perfect
inosculation of the conglomerate with the volcanic group. On the coast
at Nun's Chapel similar evidence presents itself. The conglomerate
there contains some thin seams of tuff, and is intercalated between a
series of dull green agglomerates and tuffs and some greenish shales
and sandstones with layers of tuff.
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