The Ancient Volcanoes of Great Britain, Volume 2 (of 2)Geikie, Archibald
Science
The Ancient Volcanoes of Great Britain, Volume 2 (of 2)
Geikie, Archibald
Volcanoes -- Great Britain
Before closing this account of compound dykes, I may remark that no
examples have yet been observed among the ordinary Tertiary dykes
of Britain where, by a process of differentiation between the walls
of a fissure, successive zones have been developed in the dyke,
differing from each other in structure and composition, but becoming
progressively and insensibly more acid towards the centre, such as
have been described from the older rocks of Norway and Canada. Among
the Tertiary gabbro bosses, indeed, there occur sheets or dykes which
present a remarkably banded structure, to which full reference will be
made in later pages. But I have never seen anything at all resembling
such a structure among the dykes of andesite, dolerite, or basalt.
17. CONTACT-METAMORPHISM OF THE DYKES
A geologist might naturally expect that such abundant intrusions of
igneous rock as those of the dykes should be accompanied with plentiful
proofs of contact-metamorphism. But in actual fact, evidence of any
serious amount of alteration is singularly scarce. A slight induration
of the rocks on either side of a dyke is generally all the change that
can be detected.
[Illustration: Fig. 255.--Section of coal rendered columnar by
intrusive basalt, shore, Saltcoats, Ayrshire.
_a_, Fireclay; _b_, Coal rendered prismatic near the basalt; _c_, Dark
shale; _d_, Basalt-rock.]
Some of the larger dykes, however, show more marked metamorphism, the
nature of which appears in many cases to be chiefly determined by
the chemical composition of the rock affected. Thus a considerable
alteration has been superinduced on carbonaceous strata, particularly
on seams of coal. In the Ayrshire coal-field the alteration of the coal
extends sometimes 150 feet from the dyke, the extent of the change
depending not merely on the mass of the igneous rock, but on the nature
of the coal, and possibly on other causes. Close to a dyke, coal passes
into a kind of soot or cinder, sometimes assumes the form of a finely
columnar coke (Fig. 255), and occasionally has become vesicular after
being fused.[201] Shales are converted into a hard flinty substance that
breaks with a conchoidal fracture and rings under the hammer. Fireclay
is baked into a porcelain-like material. Limestone is changed for a few
inches into marble. As an illustration of this alteration, I may cite a
dyke ten feet broad which cuts through the chalk in the Templepatrick
Quarry, Antrim. For about six inches from the igneous rock the chalk
has passed into a finely saccharoid condition, and its organisms are
effaced. But beyond that distance the crystalline structure rapidly
dies away, the micro-organisms begin to make their appearance, and
within a space of one foot from the dyke the chalk assumes its ordinary
character.
[Footnote 201: Explanation of Sheet 22, Geological Survey of Scotland, p.
26.]
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