Common Minerals and RocksCrosby, William O. (William Otis)
Science
Common Minerals and Rocks
Crosby, William O. (William Otis)
Geology -- Study and teaching
Frequently, perhaps usually, the minerals of composite veins are
deposited in succession, instead of cotemporaneously, giving rise to the
remarkable banded structure so characteristic of this class of veins.
The first mineral deposited in the fissure forms a layer covering each
wall, and is in turn covered by layers of the second mineral, and that
by the third, and so on, until the fissure is filled, or the solution
exhausted. The distinguishing features of this structure are shown in
Fig. 15, in which _w w_ represents the wall-rock, _a a_, _b b_, _c c_
are successive layers of quartz, fluorite and barite, and the central
band, _d_, is galenite. Since the vein grows from the outside inward,
the outer layers are the oldest, and the central layers are the newest;
again, the layers are symmetrically arranged, being repeated in the
reverse order on opposite sides of the middle of the vein; and, lastly,
in layers composed of prismatic crystals, as quartz (see the figure);
the crystals are perpendicular to the wall and often project into, and
even through, the succeeding layers. Such a crystalline layer is called
a “_comb_” and the interlocking of the layers in this way is described
as the _comb-structure_ of the vein. The banding of veins is thus
strongly contrasted with stratification, and with the structure in dikes
due to the more rapid cooling along the walls. The duplicate layers are
often discontinuous and of unequal thickness, on account of the strong
tendency to segregation in the materials. This is clearly shown in Fig.
16, drawn on a reduced scale from a polished section of a lead vein in
Cumberland, England, contained in the Museum of the Boston Society of
Natural History. In this the gangue minerals are fluorite (_f_) and
barite (_b_). The central band (_f g_) is a darker fluorite containing
irregular masses of galenite. The banded structure of veins is exactly
reproduced in miniature in the banding of agates, geodes, and the
amygdules formed in old lavas. Unfilled cavities frequently remain along
the middle of the vein. When small, these are known as “pockets.” They
are commonly lined with crystals; and when the latter are minute, the
pockets are called druses. In metalliferous veins, the ore is much more
abundant in some parts than in others, and these ore-bodies, especially
when somewhat definite in outline, are known in their different forms
and in different localities, as _courses_, _slants_, _shoots_,
_chimneys_, and _bonanzas_ of ore. The intersections and junctions of
veins are often among the richest parts, as if the meeting of dissimilar
solutions had determined the precipitation of the ore.
[Illustration: Fig. 16.—Section of a lead vein, one-fifth
natural size.]
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