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  • AIME
    Foundations For Mill Construction On Clay And Permafrost

    By E. H. Bronson

    PROPERTY of Malartic Gold Fields Ltd. is situaated in the great clay belt in the northern part of the Province of Quebec. This belt represents the floor of the glacial lake Barlow-Ojibway. The clay bl

    Jan 11, 1957

  • AIME
    Titanium And Zirconium, Twin Metals Of The Atomic Age

    By K. C. Li

    TITANIUM, because of its high strength, weight ratio, and high melting point, became the metal of the jet age. Zirconium, because of its low neutron cross section and high corrosion resistance to hot

    Jan 11, 1957

  • AIME
    Discussion - Tennessee Copper Co’s Isabella Mill, Copperhill, Tenn. - Mining Engineering, Page 1253, November 1957, AIME Trans., V. 208 – Myers, J. F.

    Much has been written in the past about the non- cataracting ball mill as typified by the installations of the Tennessee Copper Co. at Copperhill and the three units of the Cleveland-Cliffs Iron Co. i

    Jan 11, 1957

  • AIME
    Milling Practice At The Lavender Pit Concentrator

    By H. K. Martin

    IN September 1954 the Lavender pit concentrator at Lowell, Ariz., began treating low grade porphyry copper ore from the nearby Lavender mine. Nominal capacity of the mill is 12,000 tpd, but production

    Jan 11, 1957

  • AIME
    Effect Of Roasting On Recovery Of Uranium And Vanadium From Carnotite Ores By Carbonate Leaching

    By F. A. Forward, A. H. Ross, J. Halpern

    IN treating carnotite ores by carbonate leaching it is often necessary to subject the ore to a prior roast. Among the advantages that may result from roasting are: 1) improvement in settling and filte

    Jan 10, 1957

  • AIME
    Introduction Air Classification Symposium

    By Arthur L. Hall

    The purpose of this symposium is to challenge industry to better air classification, and as a first step toward fulfillment, to spotlight three fairly recent, aerodynamically designed, highly efficien

    Jan 10, 1957

  • AIME
    Mining Coking Coal By Mechanized Methods

    By John Peperakis, James Quigley

    IN 1950 Kaiser Steel Corp. acquired control of the Utah Fuel Co., a pioneer Utah coal concern owning large reserves of high volatile coking coal near Sunnyside, Utah, and large reserves of coal elsewh

    Jan 10, 1957

  • AIME
    Technical Note - Danger Period In Coal Mines Following A Low Pressure Passage

    By Charles Barron McIntosh

    BECAUSE of the well known relationship between a low atmospheric pressure and increased amounts of methane in coal mines, attempts have been made to find associations between low pressures and coal mi

    Jan 10, 1957

  • AIME
    Tailings Disposal At Braden Copper Co.

    By R. W. Jigins

    OPERATIONS of the Braden Copper Co. are in the Chilean Andes, southeast of Santiago. Most remote of the company communities is Sewell, a town of 12,000 people, 7000 ft above sea level at the junction

    Jan 10, 1957

  • AIME
    The Search For Mineral Raw Materials

    By H. M. Bannerman

    IN the past few years the mineral raw materials problem has risen from comparatively obscurity to great national significance. The transition has come so rapidly that the nature of the problem and wha

    Jan 10, 1957

  • AIME
    Mine Water Problems Of The Pennsylvania Anthracite Region

    By H. A. Dierks

    PENNSYLVANIA's anthracite region lies in the heart of the richest and most densely populated area of the U. S. Nearly 70 million people live within a radius of 500 miles, in which 130,000 manufac

    Jan 10, 1957

  • AIME
    Silver - Lead - Zinc Mines At Namiquipa, Chihuahua, Mexico

    By G. H. Shefelbine

    DISCOVERED during the time of the Spaniards, the Namiquipa silver-lead-zinc mines in Chihuahua, Mexico, remained idle until 1916, when mining claims were first denounced. About 1922 a Japanese company

    Jan 10, 1957

  • AIME
    Modern Grinding Plant Design In The Cement Industry

    By W. R. Bendy

    GRINDING is a large and costly part of Portland cement manufacture. Prior to clinkering in the rotary kiln, raw materials are ground to a fineness of 80 to 90 pct passing 200 mesh. Then, after burning

    Jan 10, 1957

  • AIME
    Operation Of Liquid Cyclones At Calaveras Cement Co.

    By James T. Curry

    FACED with processing an increasing volume of raw material through its existing plant, early in 1955 Calaveras Cement Co. of California considered incorporating liquid cyclones in its raw mill grindin

    Jan 10, 1957

  • AIME
    Mining Methods At Pine Creek Mine

    By L. A. Wright, H. L. McKinley

    PINE Creek mine of Union Carbide Nuclear Co. is some 23 miles northwest of Bishop, Calif., in the Sierra Nevada Mts. Office and mill are 7800 ft above sea level, the 1500 level portal is at 9300 ft, t

    Jan 10, 1957

  • AIME
    Thermal Drying Of Fine Coal

    By H. L. Washburn, G. L. Judy

    DURING recent years thermal drying of fine coal has increased at a tremendous rate, but very little discussion of the several excellent units has found its way into print. This is particularly true fo

    Jan 10, 1957

  • AIME
    Solvent Extraction Of Uranium At Shiprock, N. M.

    By W. C. Hazen, A. V. Henrickson

    URANIUM plant operations of the Kerr-McGee Oil Industries at Shiprock, N. M., began in December 1954. As originally designed, the plant treated Plateau carnotite ores by the acid cure process, which d

    Jan 9, 1957

  • AIME
    Past And Future Uranium Utilization

    By R. L. Doan

    WHEN the Plutonium Project was started in the spring of 1942 there was no technology to produce uranium metal of the required purity. Not only was there no such metal available; no one knew how to mak

    Jan 9, 1957

  • AIME
    Innovations In Processing Uranium Ores

    By J. B. Clemmer, W. L. Lennemann, J. B. Rosenbaum

    Security restrictions on processing uranium raw materials to yellow cake were lifted in August 1955, coincidental with the Geneva Conference on Peaceful Uses of Atomic Energy. Numerous reports and tec

    Jan 9, 1957

  • AIME
    Columnar Ion Exchange - Resin-In-Pulp - Solvent Extraction

    URANIUM is commonly recovered by either column ion exchange (IX) or basket ion exchange (RIP) from solutions resulting from sulfuric acid leaching of uranium-bearing ores. In both operations a solid s

    Jan 9, 1957