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  • AIME
    Proceedings of the Virginia Meeting

    COMMITTEE OF ARRANGEMENTS. General Committee.-J. F. Lewis, Quinnimont, W. Va. Committee of Reception at Staunton.-Major Jed. Hotchkiss, Chairman ; W. A. Burke, M. E. Miller, R. N. Catlett, W. J. Nel

    Jan 1, 1882

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  • AIME
    Process Computer Control At Tamano Smelter

    By Shuichiro Okada

    The Tamano Smelter, which is engaged in copper smelting by Flash Smelting Furnace with Furnace Electrodes (FSFE) has since 1982 revised its computer and associated control system for the purpose of gr

    Jan 1, 1984

  • AIME
    Process Control Aspects Of A Sinter Plant

    By Georges Fleming

    The new burden preparation plant of ARBED Luxembourg, Belval- Works, which comprises 2 large sinter strands, is equipped with a process computer connected to a comprehensive process control system.

    Jan 1, 1977

  • AIME
    Process Control At The Ecstall Concentrator

    By R. J. C. Tait

    INTRODUCTION Process Control at the Ecstall Concentrator begins in the open pit at the Kidd Creek Mine. While this paper, naturally, emphasizes the instrumental and technical features of the Proce

    Jan 1, 1970

  • AIME
    Process Design, Scale-Up And Plant Design For Gravity Concentration

    By Chris Mills

    The role of gravity separation in the mineral industry is briefly considered in perspective. The mineralogical and laboratory approaches to gravity process design are examined with emphasis on process

    Jan 1, 1978

  • AIME
    Process Development and Practice of the Potash Division of the Duval Sulphur and Potash Co.

    By D. J. Bourne, G. E. Atwood

    The new potash refinery of Duval Sulphur & Potash Co. produced its first tonnage of muriate of potash in November 1951. Full capacity was attained in early 1952. Excellent extraction efficiency is bei

    Jan 11, 1953

  • AIME
    Process Development For A Gold/Silver Mining-Milling Project

    By Robert J. Brison

    On the basis of experience accumulated during the completion of some 150 gold/silver process development projects, general guidelines are presented for developing the most cost effective process for a

    Jan 1, 1984

  • AIME
    Process For Chlorination Of Titanium Bearing Materials And For Dechlorination Of Iron Chloride

    By J. I. Paige, T. T. Campbell, A. W. Henderson, H. M. Harris

    The chlorination of ilmenite concentrates and slags to produce Tic14 suitable for pigment or metal production was investigated by the Bureau of Mines along with the dechlorination of byproduct iron ch

    Jan 1, 1976

  • AIME
    Process For Manufacture Of Dead-Burned Magnesite And Precipitated Calcium Carbonate From Dolomite

    By Robert D. Pike

    IN November 1939, on behalf of the Harbison-Walker Refractories Co., the author undertook the study of the problem of utilizing the dolomite of northwestern Ohio for the manufacture of calcined magnes

    Jan 1, 1947

  • AIME
    Process For Reclaiming Chromium, Vanadium, Molybdenum, And Tungsten From Secondary Source Materials

    By J. Menashi, D. A. Douglas, A. S. Rappas

    A process has been developed for recovering the refractory metals chromium (Cr), vanadium (V), molybdenum (Mo), and tungsten (W) in mixed secondary source materials, such as contaminated grinding wast

    Jan 1, 1985

  • AIME
    Process Mineralogy Of The Na20-V205 System In Vanadium Production

    By D. M. Hausen

    This study identifies and describes various crystalline phases of the V205-Na20 system, and relates their properties to metallurgical aspects of vanadium production. Phase equilibria and stability ran

    Jan 1, 1984