Common Minerals and RocksCrosby, William O. (William Otis)
Science
Common Minerals and Rocks
Crosby, William O. (William Otis)
Geology -- Study and teaching
Tachylite.—Tachylite is a highly basic volcanic glass, standing in the
same relation to basalt and andesite that obsidian does to trachyte and
rhyolite. It is much heavier than obsidian, and is perfectly black and
opaque, except in the finest fibres. It is a comparatively rare rock,
for the reason that basalt and andesite crystallize more readily than
the acidic rocks on passing from the liquid to the solid state. On the
surface of the basic lava, however, where it is in contact with the air,
and congeals almost instantly, a film of glass is formed; but this may
not be more than a small fraction of an inch in thickness. Like
obsidian, tachylite is often vesicular; but the vesicular basic rocks,
as well as the solid, are usually stony. They occur in vast abundance in
many volcanic regions, and may be considered the typical lava (specimen
49).
In the more ancient lavas, the vesicles are frequently filled by various
minerals—chlorite, epidote, quartz, calcite, etc.—deposited by
infiltrating waters, and derived in most cases from the decomposition of
the original constituents of the rock. Thus the vesicular is changed to
the amygdaloidal texture, and the lava becomes an amygdaloid (specimen
50). The amygdaloidal texture is common in the basic lavas and rare in
pumice, simply because the former are more readily decomposed and
contain a greater variety of bases from which secondary minerals can be
formed.
Porphyrite and Melaphyr.—These two rocks hold essentially the same
relation as regards origin and structure to the basic lavas that
petrosilex and felsite do to the acidic lavas. Porphyrite agrees in
composition with andesite, and melaphyr with basalt. They are usually
dark-colored rocks having a compact or felsitic texture. Porphyrite is,
as the name implies, very commonly porphyritic; while melaphyr is often
vesicular or brecciated, exhibiting all the structural features of
tachylite and basalt, and being in its older forms very generally
amygdaloidal.
Volcanic Tuff and Agglomerate.—Besides the crystalline, glassy, and
felsitic lavas, already described, and due chiefly to the rate of
cooling of the liquid rock, we may recognize a fourth class to include
the very abundant lavas which, during explosive eruptions, are ejected
in the solid state, being violently blown out of the crater in the form
of dust and fragments. Falling on the slopes of the volcano or over the
surrounding country, as in the case of the buried city of Pompeii, the
fragmental lavas remain largely unstratified. But when, as frequently
happens, they fall into the sea, they are assorted by the waves and
currents and arranged in layers after the manner of ordinary sediments,
with which they are often more or less mixed. Before they become
consolidated the finer fragmental lava, of whatever composition, is
called volcanic dust, and the coarser lapilli or volcanic sand; while
the consolidated materials are known as tuff and agglomerate
respectively.
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