Field book of common rocks and minerals : $b for identifying the rocks and minerals of the United States and interpreting their origins and meaningsLoomis, Frederic Brewster
Science
Field book of common rocks and minerals : $b for identifying the rocks and minerals of the United States and interpreting their origins and meanings
Loomis, Frederic Brewster
Minerals -- United States; Rocks -- United States
Steatite is a rock composed essentially of talc, which is associated
with more or less impurities, such as mica, tremolite, enstatite,
quartz, magnetite, etc. It is found in and with metamorphic rocks, and
is a rock which has been modified by hydration from a metamorphic
predecessor. It was probably first a tremolite or enstatite schist, in
which, after the metamorphic rock came into the zone where ground water
exists, the tremolite or enstatite was altered to talc, the impurities
remaining much as they were in the first place.
It is bluish-gray to green in color, often soft enough to cut with a
knife, and has a greasy feel. It is very resistant to heat and acids;
for which reasons it has proved very useful commercially in making
hearthstones, laundry tubs, and fire backs; and, when powdered, in
making certain lubricants. The Indians, in the days before Columbus,
took advantage of the ease with which it is cut, to make from it large
pots for holding liquids, which are today among the greatest treasures
in collections of Indian relics. They also carved pipe-bowls and various
ornaments and amulets from soapstone.
It is found in Vermont, Massachusetts, New York, New Jersey,
Pennsylvania, Maryland, Virginia, North Carolina, Georgia and
California.
Serpentine
Pl. 67
Pure serpentine is the hydrated silicate of magnesium, as described
among the minerals on page 138. Serpentine rock is serpentine with more
or less impurities, such as pyroxene, amphibole, olivine, magnetite,
chromite, calcite, magnesite, etc. It often also contains mica and such
garnets as pyrope, as accessory minerals. Serpentine, like steatite,
always occurs in and with metamorphic rocks, and was originally a
metamorphic rock, but has since been changed by the hydration of its
silicates, when it came into the zone in which ground water is present.
In the first instance it was some sort of shale, clay and dolomite,
which was metamorphosed to an amphibole or pyroxene schist. When this
was exposed to the action of ground water, the amphibole or pyroxene
minerals were changed to serpentine, resulting in a rock composed mostly
of serpentine, but retaining the impurities which were in the
metamorphic rock, and perhaps adding to them such amphiboles and
pyroxenes as were not altered during the hydration process. The above is
the commonest type of serpentine rock. It can and sometimes has been
formed in a similar way from an igneous predecessor, by the hydration of
its silicate minerals. In this latter case the serpentine would not be a
modified metamorphic rock, but a modified igneous one. It is a case
where such a rock as a diorite or a gabbro is exposed to ground water
and the pyroxene present altered to serpentine. A serpentine formed in
this way would be a very impure one.
Public-domain text, read in full here on John Shaqi.
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