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  • AIME
    Mining - Transportation of Suspended Solids in Pipe Lines (Mining Tech. Mar. 1945, T.P. 1785)

    By Warren E. Wilson

    The transportation of solids in pipe lines is a matter of deep concern in many fields of engineering. Much experimental and theoretical work has been done in an effort to devise means of designing pip

    Jan 1, 1948

  • 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 - 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
    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 - Owens Lake, California-Source of Sodium Minerals (Mining Tech., Sept. 1947, T. P. 2235)

    By George D. Dub

    Owens Lake is at present a source of important nonmetallic minerals, sodium carbonate (soda ash, Na2CO3); sodium sesquicarbonate (trona, Na2CO3.NaHCO3.-2H2O) and borax, (Na2B4O7.10H2O). Owens Lake

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Laboratory-scale Flotation of Brown Rock Phosphate (Mining Tech., Nov. 1947, T.P. 2239, with discussion)

    By J. F Haseman, J. E. Davenport

    In the brown rock phosphate fields of Tennessee there are large deposits of phosphate matrix in which quartz is a major constituent of the gangue, and which cannot be beneficiated by the conventional

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Beneficiation of Over-spray Porcelain Enamel (Mining Tech., Sept. 1947, T.P. 2253)

    By Donald W. Scott

    This paper describes the application of ore-dressing methods to the reclamation of milled frit from over-spray, or waste, porcelain enamel. Frit is the name given by enamelers to a granulated glass

    Jan 1, 1948

  • AIME
    Preparation of Industrial Minerals - Recovery of Resin from Utah Coal (Mining Tech., May 1947; Coal Tech., May 1947, T.P. 2166)

    By Ernest Klepetko

    A notable amount of fossil resin exists in many of the bituminous coal beds of Utah. The upper part of these show a marked concentration of resin, which occurs primarily in the fracture seams. In gene

    Jan 1, 1948

  • AIME
    Description of Operations - The New Cement Plant of the Universal Atlas Cement Company at Northampton, Pennsylvania (Mining Tech., Sept. 1943, T.P. 1619)

    By L. G. Sprague

    The fact that this latest and most modern of the Universal Atlas Cement Company's plants at Northampton, Pa., is the fifth to be built on these same properties, and their development has been coi

    Jan 1, 1948

  • AIME
    Description of Operations - Mining and Treatment of Clay near Mt. Holly Springs, Pennsylvania (Mining Tech., Jan. 1944, T.P. 1655)

    By Richard M. Foose

    Five miles southwest of Mt. Holly Springs, Cumberland County, Pennsylvania, the Philadelphia Clay Co. has been mining and milling a white clay since 1896; for use in white cement, as a filler in rubbe

    Jan 1, 1948

  • AIME
    Description of Operations - Roofing Granules (Mining Tech., Mar. 1944, T.P. 1725)

    By G. W. Josephson

    Since the earliest years of recorded history the durability and protective qualities of asphalt and tar have been known and utilized. The mummies of early Egyptian kings were coated with asphaltic mat

    Jan 1, 1948

  • AIME
    Description of Operations - Three Roofing-granule Plants in Pennsylvania (Mining Tech., Jan. 1945, T.P. 1787, with discussion)

    By Richard M. Foose

    Most of the roofing granules produced in Pennsylvania are made by two companies at three plants. The Advance Industrial Supply Co. has three quarries and a mill at Gladhill Station, in southern Adams

    Jan 1, 1948

  • AIME
    Description of Operations - Alabama Flake Graphite in World War II (Mining Tech., July 1945, T.P. 1908)

    By Hugh D. Pallister, Richard W. Smith

    The Alabama flake-graphite industry has flourished only in times of war when importations of foreign graphite for crucible use have been greatly curtailed or cut off. World War I was a boom period and

    Jan 1, 1948

  • AIME
    Description of Operations - Glass Sand and a Glass Industry in Puerto Rico (Mining Tech., Nov. 1945, T.P. 1939, with discussion)

    By Howard A. Meyerhoff, J. Earl Frazier

    It is not known when silica sand was first noticed along the north coast of Puerto Rico, but the first mention of its occurrence was made in 1922, by N. L. Britton,1 who described its presence in isol

    Jan 1, 1948

  • AIME
    Description of Operations - The New England Mica Industry (Mining Tech., May 1946, T.P. 2024)

    By E. N. Cameron, H. M. Bannerman

    During the years 1942-1934, about 125 New England deposits were mined for sheet and punch mica, and many others were briefly prospected. During this period the Geological Survey, United States Departm

    Jan 1, 1948