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  • AIME
    Concentration - Flotation - Effect of "Metso" (Sodium Meta-silicate) on Mill Recoveries of Alta-St. Louis Ores (Mining Tech., Nov. 1947, TP 2272)

    By Henry P. Ehrlinger

    The Alta and St. Louis mines of the Alta Mines, Inc., produce a somewhat oxidized ore with a talc gangue that presents quite a problem in milling. For several years the mill recoveries were relatively

    Jan 1, 1949

  • AIME
    Concentration - Flotation - Effects of Oxidation of Sulphide Minerals on Their Flotation Properties (Mining Tech., Jan. 1948, TP 2297)

    By Enid C. Plante, K. L. Sutherland

    Practical metallurgists are unanimous in stating that oxidation of mined sulphide ore adversely affects separation of the constituent minerals under standard conditions in a mill. Frequently, the need

    Jan 1, 1949

  • AIME
    Concentration - Flotation - Flotation of Low Grade Gold Ores at Golden Cycle Corporation (Mining Tech., May 1948, TP 2361)

    By Howard R. Keil

    Prior to World War 11, approximately 500 tons per day, or one-third of the ore being shipped to the Golden Cycle Mill at Colorado Springs, Colo., from the Cripple Creek district, was being treated in

    Jan 1, 1949

  • AIME
    Concentration - Flotation - Flotation of Unoxidized and Oxidized Sulphide Minerals-Antimonite, Arsenopyrite, Covellite, Lollingite, Marcasite, Orpiment, Pyrrhotite and Tetrahedrite (Mining Tech., Jan. 1948, TP 2298)

    By Enid C. Plante

    To extend our knowledge of the flotation behavior of sulphide minerals, the response of the following minerals to ethyl xanthate as collector was studied by captive bubble and cylinder flotation tests

    Jan 1, 1949

  • AIME
    Concentration - Flotation - Simultaneous Grinding and Flotation (Mining Tech., Sept. 1948, TP 2461)

    By A. Kenneth Schellinger, O. Cutler Shepard

    Overgrinding, Or the breaking of ore particles into sizes smaller than required for liberation, is a first-magnitude problem in grinding for concentration processes. The conventional ball mill-classif

    Jan 1, 1949

  • AIME
    Concentration - Flotation - Tailings and Mine-dump Reclamation in the Coeur d'Alenes during World War ?? (Mini

    By W. L. Zeigler

    During the middle 1880's, shortly after the discovery of silver-lead ores in the Coeur d'Alene district of northern Idaho, it became apparent that concentration of the ores would be necessar

    Jan 1, 1949

  • AIME
    Concentration - Flotation - The Application of Xanthates to Flotation (Mining Tech., Sept. 1947, TP 2213)

    By Norman Weiss

    Most papers on xanthate have dealt with principles rather than practice. On the assumption that many millmen are interested in knowing where and in what manner the xanthates are being used in mills ot

    Jan 1, 1949

  • AIME
    Concentration - Flotation - The Determination of Oxide Lead in Ores and Concentrator Products (Mining Tech., March 1948, TP 2303)

    By H. L. Talbot, R. S. Young, A. Golledge

    The differentiation of oxidized forms of lead from lead sulphide in complex products by chemical analysis is of considerable importance to certain mining and metallurgical companies. A method for the

    Jan 1, 1949

  • AIME
    Concentration - Flotation - The Flotation of Fluorite (Mining Tech., July 1947, TP 2163)

    By Enid C. Plante

    This paper deals with the flotation of the mineral fluorite (calcium fluoride) and of two associated gangue minerals, calcite and quartz. The aim of the investigation was to produce "acid-grade" fluor

    Jan 1, 1949

  • AIME
    Concentration - Mill Flowsheets and Practices - Description of Concentrating Operations, Roan Antelope Copper Mines Limited, Northern Rhodesia (Mining Tech., Jan. 1948, TP 2251)

    By M. R. Goldick

    The Roan Antelope concentrator was originally designed with a nominal milling capacity of 6000 tons of copper ore per day but this was subsequently considerably exceeded. In broad outline the plant co

    Jan 1, 1949

  • AIME
    Concentration - Mill Flowsheets and Practices - Metallurgy at National Lead Company, MacIntyre Development (Mining Tech., May 1948, TP 2355, with discussion)

    By Frank R. Milliken

    This paper is a running commentary on metallurgical problems and developments, stressing ilmenite flotation, since the start of operations five years ago, at the mill of National Lead Company, Titaniu

    Jan 1, 1949

  • AIME
    Concentration - Mill Flowsheets and Practices - Milling Lead-zinc Ores at Iron King Mine, Prescott, Arizona (Mining Tech., July 1947, TP 2191)

    By H. R. Hendricks

    The ore of the Iron King mine, being very hard and having a very fine crystalline structure, presents many problems in milling that are not present in ordinary lead-zinc ores. This very fine crystalli

    Jan 1, 1949

  • AIME
    Concentration - Mill Flowsheets and Practices - Milling Practice at Idarado Mining Company (Mining Tech., May 1948, TP 2349)

    By F. W. McQuiston

    Idarado Mining Company's mill and surface plant are at the portal of the Treasury tunnel at elevation 10,625 ft, 12 miles south of Ouray, Colo. In 1943 and 1944 this tunnel was extended in a west

    Jan 1, 1949

  • AIME
    Concentration - Mill Flowsheets and Practices - Milling Practice at New Lead-zinc Concentrator of Phelps Dodge Corporation (Mining Tech., July 1947, TP 2192)

    By R. C. Thompson

    The lead-zinc mill of Phelps Dodge Corporation, Copper Queen Branch, Mines Division, Bisbee, Arizona, is about 3 miles from the main hoisting shafts of the Junction and Campbell mines at Lowell. All t

    Jan 1, 1949

  • AIME
    Concentration - Mill Flowsheets and Practices - Milling Practices at Concentrator of Morenci Reduction Works (Mining Tech., July 1947, TP 2194)

    By B. H. Cody

    The Morenci concentrator of the Phelps Dodge Corporation is a part of the project that was completed after five years had been spent in development of the open-pit mine, equipment and process testing

    Jan 1, 1949

  • AIME
    Concentration - Mill Flowsheets and Practices - Mufulira Copper Mines Limited, Concentrator, Northern Rhodesia (Mining Tech., Jan. 1948, TP 2250, with discussion)

    By Jack White, Ralph B. Adair

    The Mufulira mine in Northern Rhodesia is 13° south of the Equator and at an altitude of 4100 ft above sea level. The concentrator was planned in 1930 to treat about 10,000 tons of ore per day, but

    Jan 1, 1949

  • AIME
    Concentration - Mill Flowsheets and Practices - Symposium on Milling Devices and Practices (Mining Tech., May 1947, TP 2162, with discussion)

    By J. F. Myers, R. J. Tower

    "There is nothing new under the sun." All over the world, mineral-dressing engineers are working at their problems, no two of which are alike. Each encounters equipment and process problems. Many devi

    Jan 1, 1949

  • AIME
    Concentration - Sink-float Separation - A New Separating Vessel for Sink-float Concentration (Mining Tech., May 1947, TP 2182, with discussion)

    By E. C. Bitzer

    The primary object of the work described in the following pages was to simplify the equipment in the separating circuit of the heavy-media process by substituting a spiral classifier for the separator

    Jan 1, 1949

  • AIME
    Concentration - Sink-float Separation - A Suggested Approach to the Analysis of Mineral Suspensions by High-frequency Electrical Measurements (Mining Tech., Sept. 1948, TP 2462)

    By John D. Morgan, Sylvain J. Pirson

    An instantaneous and continuous analysis of a mineral suspension should be of great value in controlling various mineral preparation processes. Described herein is a method of analysis based on the us

    Jan 1, 1949

  • AIME
    Concentration - Sink-float Separation - Comparison of Galena and Ferrosilicon in Heavy-media Separation (Mining Tech., May 1947, TP 2181)

    By E. H. Crabtree

    The heavy-media separation plant at the Central mill of the Eagle-Picher Mining and Smelting Co., near Picher, Okla., was started in February 1939. Since that time twenty-four million tons of lead-zin

    Jan 1, 1949