Desert ecology -- Arizona -- Saguaro National Park; Natural history -- Arizona -- Saguaro National Park
Volcanic rocks in the form of rhyolite, andesite, and basalt flows also
are exposed, chiefly in the Tucson Mountain section of the monument.
These are all extrusive igneous rocks composed of magma that solidified
after reaching the earth’s surface through vents or fissures. There are
differences in the lava flows, reflecting differences in composition,
temperature, and other conditions of the magma from which they were
formed. The rhyolite is lighter in color than andesite, and it is
somewhat richer in feldspar. Basalt, on the other hand, is dark, is
deficient in feldspar and quartz, and contains relatively large amounts
of the darker minerals such as hornblende, pyroxene, and olivene. Lava
flows of the rhyolite and andesite variety occur in the Cactus Forest
locality of the Rincon Mountain Section. Cat Mountain Rhyolite is the
name given to a rhyolite flow of Tertiary age that forms the topmost
layer in much of the Tucson Mountain Section. A small exposure of basalt
is also found here.
Limestone, sandstone, and shale formations are also exposed at various
places within the monument. They are reliable indicators of seas that
covered the area during one or more times of the geologic past.
Comparisons with the limestone formations farther to the south in the
Colossal Cave region indicate that the limestone in the monument was
formed as far back as late in the Paleozoic Era (345 million years or
more ago). This age is suggested by types of fossils, including
fragments of crablike trilobites and crinoid (sea lily) stems, found in
limestones of the same age near Colossal Cave.
The Recreation Redbeds of the Tucson Mountain Section is one of the
important sandstone members exposed in the monument. Geologists believe
that its deposition occurred early in the Cretaceous Period more than 65
million years ago. Above the Recreation Redbeds lies a formation
consisting mainly of limestone and commonly known as the Tucson Mountain
“Chaos”—an appropriate name, in view of the geologists’ meager knowledge
of it. Within the Chaos formation, believed to be lower to Middle
Tertiary in age, are limestone blocks of greater age than the rocks
within which they are entombed. No generally accepted explanations have
been advanced as to how these relationships developed.
The processes that destroy mountains continue concurrently with those
that build them. Temperature changes, weathering, and downslope creep
under the influence of gravity are among the agents which destroy the
rocks and eventually convert them into soil. Though these processes work
rapidly from a geological standpoint, in terms of the average human life
span, they progress at an imperceptible rate. Violent thunderstorms and
cloudbursts, however, cause a massive, often spectacular movement of
boulders, gravel, sand, and silt by torrential streams.
Public-domain text, read in full here on John Shaqi.
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