Valuable minerals located in arid lands include copper in the United
States, Chile, Peru, and Iran; iron and lead-zinc ore in Australia;
chromite in Turkey; and gold, silver, and uranium deposits in Australia
and the United States. Nonmetallic mineral resources and rocks such as
beryllium, mica, lithium, clays, pumice, and scoria also occur in arid
regions. Sodium carbonate, sulfate, borate, nitrate, lithium, bromine,
iodine, calcium, and strontium compounds come from sediments and
nearsurface brines formed by evaporation of inland bodies of water,
often during geologically recent times.
[Illustration: This open-pit mine in the Sonoran Desert near Ajo,
Arizona, has exposed an elliptical copper deposit about 1,000 meters
long and 750 meters wide. The copper ore mined here is in a bed that
averages 150 meters in thickness (photograph by Peter Kresan).]
The Green River Formation of Colorado, Wyoming, and Utah contains
alluvial fan deposits and playa evaporites created in a huge lake whose
level fluctuated for millions of years. Economically significant
deposits of trona, a major source of sodium compounds, and thick layers
of oil shale were created in the arid environment.
[Illustration: Trona mine at Searles Lake, California (photograph by
John Keith).]
Some of the more productive petroleum areas on Earth are found in arid
and semiarid regions of Africa and the Mideast, although the oil
reservoirs were originally formed in shallow marine environments. Recent
climate change has placed these reservoirs in an arid environment.
Other oil reservoirs, however, are presumed to be eolian in origin and
are presently found in humid environments. The Rotliegendes, a
hydrocarbon reservoir in the North Sea, is associated with extensive
evaporite deposits. Many of the major U.S. hydrocarbon resources may
come from eolian sands. Ancient alluvial fan sequences may also be
hydrocarbon reservoirs.
[Illustration: The Sahelian drought that began in 1968 was responsible
for the deaths of between 100,000 and 250,000 people, the disruption of
millions of lives, and the collapse of the agricultural bases of five
countries (photograph by Daniel Stiles, UNEP).]
Desertification
The world’s great deserts were formed by natural processes interacting
over long intervals of time. During most of these times, deserts have
grown and shrunk independent of human activities. Paleodeserts, large
sand seas now inactive because they are stabilized by vegetation, extend
well beyond the present margins of core deserts, such as the Sahara. In
some regions, deserts are separated sharply from surrounding, less arid
areas by mountains and other contrasting landforms that reflect basic
structural differences in the regional geology. In other areas, desert
fringes form a gradual transition from a dry to a more humid
environment, making it more difficult to define the desert border.
Public-domain text, read in full here on John Shaqi.
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