Geological Observations on South AmericaDarwin, Charles
Science
Geological Observations on South America
Darwin, Charles
Beagle Expedition (1831-1836); Geology -- South America; Mollusks, Fossil -- South America; Paleontology
sandstone, which protects the harbour, in the 19th volume 1841 page 258
of the “London and Edinburgh Philosophical Magazine.”
ABROLHOS ISLETS, Latitude 18 degrees S. off the coast of Brazil.
Although not strictly in place, I do not know where I can more
conveniently describe this little group of small islands. The lowest
bed is a sandstone with ferruginous veins; it weathers into an
extraordinary honeycombed mass; above it there is a dark-coloured
argillaceous shale; above this a coarser sandstone—making a total
thickness of about sixty feet; and lastly, above these sedimentary
beds, there is a fine conformable mass of greenstone, in some parts
having a columnar structure. All the strata, as well as the surface of
the land, dip at an angle of about 12 degrees to N. by W. Some of the
islets are composed entirely of the sedimentary, others of the trappean
rocks, generally, however, with the sandstone, cropping out on the
southern shores.)
RIO DE JANEIRO.
This whole district is almost exclusively formed of gneiss, abounding
with garnets, and porphyritic with large crystals, even three and four
inches in length, of orthoclase feldspar: in these crystals mica and
garnets are often enclosed. At the western base of the Corcovado, there
is some ferruginous carious quartz-rock; and in the Tijeuka range, much
fine- grained granite. I observed boulders of greenstone in several
places; and on the islet of Villegagnon, and likewise on the coast some
miles northward, two large trappean dikes. The porphyritic gneiss, or
gneiss- granite as it has been called by Humboldt, is only so far
foliated that the constituent minerals are arranged with a certain
degree of regularity, and may be said to have a “GRAIN,” but they are
not separated into distinct folia or laminae. There are, however,
several other varieties of gneiss regularly foliated, and alternating
with each other in so-called strata. The stratification and foliation
of the ordinary gneisses, and the foliation or “grain” of the
gneiss-granite, are parallel to each other, and generally strike within
a point of N.E. and S.W. dipping at a high angle (between 50 and 60
degrees) generally to S.E.: so that here again we meet with the strike
so prevalent over the more northern parts of this continent. The
mountains of gneiss-granite are to a remarkable degree abruptly
conical, which seems caused by the rock tending to exfoliate in thick,
conically concentric layers: these peaks resemble in shape those of
phonolite and other injected rocks on volcanic islands; nor is the
grain or foliation (as we shall afterwards see) any difficulty on the
idea of the gneiss-granite having been an intrusive rather than a
metamorphic formation. The lines of mountains, but not always each
separate hill, range nearly in the same direction with the foliation
and so-called stratification, but rather more easterly.
(FIGURE 22. FRAGMENT OF GNEISS EMBEDDED IN ANOTHER VARIETY OF THE SAME
ROCK.)
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