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  • AIME
    Preparation of Industrial Minerals - Continuous Centrifuge in the Mineral Industry (Mining Tech., July 1947, T.P. 2195)

    By C. S. Lyons and. A. L. Johnson

    A few years ago a leading American builder of centrifuges said, "No one uses a centrifuge if the job can be done any other way." This statement was essentially true at that time, not because the basic

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Retreatment of Corundum Tailings at Craigmont, Ontario (Mining Tech., Nov. 1946, T.P. 2119)

    By A. G. Roach

    This paper deals with a plant built under joint agreement between the Canadian and United States Governments to supply the strategic mineral, corundum, at a time when African production was dwindling

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Conveyor-belt Operation (Mining Tech., July 1947, T.P. 2212)

    By M. C. Dow

    Belt conveyors generally are conceded to be the most economical method yet devised for the transportation of large quantities of bulk materials within plants. Belts are coming into greater use for tra

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Experiences in Grinding Raw Materials for Portland Cement (Mining Tech., Nov. 1945, T.P. 1897)

    By C. D. Rugen

    Ground raw material as fed to the cement kiln generally is a mixture of two to four components, each of which may have widely varying physical and grinda-bility characteristics. Chemically similar mat

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Flash Drying and Calcining as Developed from Mill Drying (Mining Tech., Sept. 1945, T.P. 1897)

    By William B. Senseman

    FoR reasons well known to mining engineers, wet grinding is quite universal in plants having to do with the extraction of metallic values from crude ores. In the processing of the nonmetallic and indu

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Laboratory Beneficiation of Fluorite Ore from the Minerva Oil Company, Eldorado, Illinois (Mining Tech., Sept. 1946, T.P. 2055)

    By O&apos, M. M. Fine, K. G. Meara

    One of the principal activities of the Bureau of Mines connected with the recent war was to help to increase the supply of strategic and critical minerals. Fluorite was one of the most critical of the

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Concentrating Operations of the Mahoning Mining Company, Rosiclare, Illinois (Mining Tech., Sept. 1946, T.P. 2040)

    By Walter E. Duncan

    The ores treated at the concentrating plant of the Mahoning Mining Co. at Rosiclare, Ill., come largely from the blanket replacement deposits of the northeastern part of Hardin County, Illinois, and c

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Treatment and Concentration of the Graphite Ores of São Fidelis, Brazil (Mining Tech., Sept. 1946, T.P. 2012)

    By F. C. von der Weid

    The mining district of Sao Fidelis, in the northern part of the State of Rio de Janeiro, is situated on the Paraiba River, where it crosses the Serra do Mar (Mountain of the Sea), in the center of a m

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Froth Flotation of a North Carolina Ilmenite Ore (Mining Tech., Jan. 1944, T.P. 1653)

    By L. L. McMurray

    Ilmenite is the most important raw material for manufacture of titanium dioxide.' Industrially, several other products are made from ilmenite, the most important of which are: ferro titanium, fer

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Flotation of Kaolinite for Removal of Quartz (Mining Tech., Jan. 1945, T.P. 1753)

    By Herbert H. Kellogg

    Deposits of high-silica kaolinite clays occur at many places in central Pennsylvania. These white clays were formed apparently by weathering of argillaceous quartzite and limestone. Their geology, dis

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Magnesium from Olivine (Metals Tech., April 1945, T.P. 1828)

    By E. C. Houston

    The presence in the Tennessee Valley of extensive deposits of olivine, a silicate of magnesium and iron that contains approximatcly 28 per cent magnesium, has been recognized since 1896 when Lewis8 pu

    Jan 1, 1948

  • AIME
    Title Page

    Jan 1, 1948

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    Contents

    Jan 1, 1948

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    Resources of Industrial Minerals - Potential Sources of Aluminum in Southwestern China (Mining Tech., Jan. 1946, T. P. 1938)

    By Chingyuan Y. Li, C. Y. Hsieh

    Realizing that aluminum will have a great role to play in the coming industrialization of China, Chinese geologists have long been looking about for some aluminum deposits. The possible sources appear

    Jan 1, 1948

  • AIME
    Resources of Industrial Minerals - Fluorspar Deposits in the Western States (Mining Tech., Mar. 1945, T. P.1783)

    By J. L. Gillson

    In a brief summary of the many occurrences of fluorspar in our western states, it is not possible to go into detail in regard to the geology, mining and milling methods, and reserves about individual

    Jan 1, 1948

  • AIME
    Resources of Industrial Minerals - Kaolins of North Carolina (Mining Tech., July 1947, T. P. 2219, with discussion)

    By Jasper L. Stuckey

    It is not known when kaolin mining was first begun in North carolina, Evidence, in the form of excavations and primitive tools, indicates that some of the deposits were worked in prehistoric times. It

    Jan 1, 1948

  • AIME
    Resources of Industrial Minerals - Discoveries of Potash in Eastern Utah (Mining Tech., Jan. 1945, T. P. 1755)

    By B. W. Dyer

    In 1924, the Crescent Eagle Oil Co., while drilling the salt section of the Paradox formation in Grand County, Utah, encountered a salt that did not appear to be sodium chloride. This salt was analyze

    Jan 1, 1948