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Results for “Industrial Minerals”
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Mineral resources of Alaska, report on progress of investigations in 1932. Mineral industry of Alaska in 1932
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Mineral and fuel resources, report on progress of investigations in 1933. Mineral industry of Alaska in 1933
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Mineral resources of Alaska, report on progress of investigations in 1934. Mineral industry of Alaska in 1934
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Mineral resources of Alaska, report on progress of investigations in 1935. Mineral industry of Alaska in 1935
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Mineral industry of Alaska in 1937
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Mineral resources of Alaska, report on progress of investigations in 1938. Mineral industry of Alaska in 1938
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Mineral industry of Alaska in 1939
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Mineral industry of Alaska in 1940
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Wollastonite : a versatile industrial mineral
Wollastonite is a chemically simple mineral named in honor of English mineralogist and chemist Sir W.H. Wollaston (1766–1828). It is composed of calcium (Ca) and silicon and oxygen (SiO2, silica) with the chemical formula CaSiO3. Although much wollastonite is relatively pure CaSiO3, it can contain some iron, magnesium, manganese, aluminum, potassium, sodium, or strontium substituting for calcium in the mineral structure. Pure wollastonite is bright white; the type and amount of impurities can produce gray, cream, brown, palegreen, or red colors.
Industrial mineral resources of the Rolla 1° x 2° quadrangle, Missouri
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Industrial minerals and construction materials occurrences in Alaska
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Bibliography of the geology and mineral industry of Liberia and adjacent countries
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Geology and industrial mineral resources of the Macon-Gordon kaolin district, Georgia
The Macon-Gordon kaolin district is about 80 miles (130 km) southeast of Atlanta, Georgia. It extends across the boundary between, and includes parts of, the Piedmont and Atlantic Coastal Plain physiographic provinces. The rocks in the Piedmont are mainly intensely folded sericite schist and granite gneiss containing irregular masses of amphibolite and feldspathic biotite gneiss and scattered igneous intrusive rocks. Most of the crystalline rocks are thought to be of Paleozoic age, but some of the intrusive rocks may be younger. The crystalline rocks are cut by a major unconformity and are overlain by sedimentary formations ranging in age from Cretaceous to Miocene. The valuable kaolin deposits occur in the Cretaceous beds, undivided, and in the Huber Formation which is of Paleocene to middle Eocene age. The resources of kaolin in the district are estimated in millions of metric tons as follows: reserves, 100; subeconomic resources, 700 to 900; undiscovered resources, probably 700 to 1,000. In addition to kaolin, the leading mineral commodity mined in the district, crushed stone and sand are now being produced, and fuller's earth and a minor amount of limestone were formerly produced. The crushed stone is quarried from igneous rocks in the Piedmont province. The sand is washed from the Cretaceous beds, undivided. The fuller's earth was mined from the Twiggs Clay Member of the Barnwell Formation, and limestone was dug from the Tivola Limestone.
Some industrial mineral deposit models : descriptive deposit models
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Industrial minerals deposit models; grade and tonnage models
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Industrial mineral deposit models; descriptive models for three lacustrine deposit types
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