Beagle Expedition (1831-1836); Geology -- South America; Volcanoes
other parts form the parallel ribbons. In these cases, we must suppose,
that after part of the molten mass had assumed a laminated structure, a
fresh irruption of lava broke up the mass, and involved fragments, and
that subsequently the whole became relaminated.) From such facts, most
authors have attributed the lamination of these volcanic rocks to their
movement whilst liquified. Although it is easy to perceive, why each
separate air-cell, or each fibre in pumice-stone (Dolomieu “Voyage”
page 64.), should be drawn out in the direction of the moving mass; it
is by no means at first obvious why such air-cells and fibres should be
arranged by the movement, in the same planes, in laminae absolutely
straight and parallel to each other, and often of extreme tenuity; and
still less obvious is it, why such layers should come to be of slightly
different composition and of different textures.
In endeavouring to make out the cause of the lamination of these
igneous feldspathic rocks, let us return to the facts so minutely
described at Ascension. We there see, that some of the thinnest layers
are chiefly formed by numerous, exceedingly minute, though perfect,
crystals of different minerals; that other layers are formed by the
union of different kinds of concretionary globules, and that the layers
thus formed, often cannot be distinguished from the ordinary
feldspathic and pitchstone layers, composing a large portion of the
entire mass. The fibrous radiating structure of the sphaerulites seems,
judging from many analogous cases, to connect the concretionary and
crystalline forces: the separate crystals, also, of feldspar all lie in
the same parallel planes. (The formation, indeed, of a large crystal of
any mineral in a rock of mixed composition implies an aggregation of
the requisite atoms, allied to concretionary action. The cause of the
crystals of feldspar in these rocks of Ascension, being all placed
lengthways, is probably the same with that which elongates and flattens
all the brown sphaerulitic globules (which behave like feldspar under
the blowpipe) in this same direction.) These allied forces, therefore,
have played an important part in the lamination of the mass, but they
cannot be considered the primary force; for the several kinds of
nodules, both the smallest and largest, are internally zoned with
excessively fine shades of colour, parallel to the lamination of the
whole; and many of them are, also, externally marked in the same
direction with parallel ridges and furrows, which have not been
produced by weathering.
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