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  • SME
    Extractive Metallurgy Of Vanadium Containing Titaniferous Magnetite Ores: A Review

    By Wenming Wang, Edgar E. Vidal, Scott A. Shuey, Patrick R. Taylor, Judith C. Gomez

    Introduction In modern society, vanadium is defined as a strategic metal. Some 90% of the global consumption is used as an alloying agent for carbon steels, tool steels, and high-strength low-alloy

    Jan 1, 2005

  • CIM
    Extractive Metallurgy of Zirconium and Hafnium

    By D. R. Spink

    An historical background is presented to provide a basis for the lack of normally expected developmental effort over the first 20-25 years of viable zirconium production operations. This is followed b

    Jan 1, 1977

  • AUSIMM
    Extractive Metallurgy-Safety Regulation in Western Australia

    By Jones

    Extractive metallurgy in the mining industry in Western Australia has diversified and increased in the last 11 years. Before 1980, the industry mainly produced alumina, nickel, mineral sands and iron

    Jan 1, 1992

  • AIME
    Extractive Mettallurgy Division - Asarco's New Electrolytic ,Plant at Corpus Christi, Texas

    By R. E. Allen, A. C. Jephson

    ELECTROLYTIC zinc plants of the American Smelting and Refining Co. are located adjacent to the present city limits of Corpus Christi, Texas. The original plant commenced operations during 1942, and is

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Cominco's New Sinter Plant

    By J. F. Mitchell, R. Bainbridge, E. A. Melvin

    IN the fall of 1953, The Consolidated Mining and Smelting Co. of Canada Ltd. put into operation a completely new and modern plant for sintering the rather complex assortment of materials which compris

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Conductivity and Sulfur Activity in Liquid Copper Sulfide

    By M. Bourgon

    The conductivity of liquid copper sulfide has been measured as a function of the mole fraction of sulfur in the melt at three temperatures: 1170°, 1250°, and 1300°C. The results show that a) the condu

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Differential High-Temperature Sulfatization of Cuyuna Manganese Ore

    By Charles Prasky

    ABOUT five years ago the Bureau of Mines began a study, at Minneapolis, of the various methods for beneficiating the low-grade manganese deposits of the Cuyuna range. Several samples of green carbonat

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Dissolution of Lead Sulfide Ores in Acid Chlorine Solutions

    By M. I. Sherman, J. D. H. Strickland

    PRELIMINARY experiments in these laboratories showed that whereas pyrite1 produced only sul-fate the action of aqueous chlorine solutions on most other sulfide ores resulted in the formation of a mixt

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Dissolution of Pyrite Ores in Acid Chlorine Solutions

    By M. I. Sherman, J. D. H. Strickland

    USE of a hydrometallurgical approach to the oxidation of sulfide ores and extraction of metals therefrom may have advantages over the more common smelting techniques when a low grade deposit is diffic

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Electrical Conductivity of Fused Sodium Chloride-Calcium Chloride Mixtures

    By Joseph B. Story, John T. Clarke

    A modification, of the Kelvin bridge using an inductor was used to measure the conductivities of molten sodium chloride, calcium chloride, and mixtures thereof. A capillary-type four-lead fused quartz

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Electrolytic Preparation of Thorium Metal

    By B. C. Raynes

    IN the early part of 1952, under the auspices of the U. S. Atomic Energy Commission, Horizons Inc. undertook an investigation dealing with the preparation of high purity thorium metal in order to deve

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Engineering Aspects of Ion Exchange in Hydrometallurgy

    By R. D. MacDonald, John Dasher, A. M. Gaudin

    ION exchange is a widely used unit operation in water treatment and elsewhere in chemical industries. It has occasionally been used in hydro-metallurgy for treating plating, pickling, and rayon wastes

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Equilibrium Between Titanium Metal, Titanium Dichloride, and Titanium Trichloride in Molten Sodium Chloride-Strontium Chloride Melts

    By S. Mellgren, W. Opie

    AN equilibrium state of importance in the process of electrolytically depositing titanium from fused chloride electrolytes is that which exists between titanium metal, titanium dichloride, and titaniu

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Formation of Cracks in Soederberg Electrodes Used in Aluminum Reduction Plants

    By Torgrim Eftestoel, Leif Olsen, Ove Sandberg

    IN the vertical contact Soederberg electrode for aluminum furnaces more or less serious cracks are sometimes formed in the electrode, with harmful effect on furnace operation. The problem of crack for

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Micrographic Study of Sulfide Roasting

    By L. M. Pidgeon, P. G. Thornhill

    A LTHOUGH a considerable number of experi--ti mental investigations dealing with the roasting of sulfide minerals have been reported in the past,'"" the behavior of the single roasting particle d

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Phase Diagram and Vapor Pressure in the Systems NaC1-ZrClr4, KC1-ZrCl4, and NaC1-KC1 (1: 1 molar) - ZrC14.

    By L. J. Howell, R. C. Sommer, H. H. Kellogg

    WORK described herein was undertaken with the aim of determining some of the physical-chemical properties of electrolytes suitable for the electrodeposition of pure zirconium metal. In this paper the

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Preparation of Uranium Metals by Fused Salt Electrolysis.

    By W. C. Lilliendahl, G. Meister

    Uranium metal with a purity of about 99.9 pct was produced on a large scale by fused salt electrolysis with a material efficiency of about 90 pct. The material efficiency depends mainly on bath compos

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Reduction of Nickel by Hydrogen from Ammoniacal Nickel Sulfate Solutions

    By V. N. Mackiw

    IN the process employed by Sherritt Gordon Mines Ltd. for the production of metallic nickel, a sul-fide concentrate is leached with ammonia and air under pressure. Following the removal of iron, coppe

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Roasting Reaction of Ferrous Sulfide

    By Kichizo Niwa

    A LTHOUGH studies on the roasting of ferrous A sulfide have been carried out by several investigators, some disagreements still remain among those results. Schwab and Philinis1 have measured the rate

    Jan 1, 1958

  • AIME
    Extractive Mettallurgy Division - Selective Sulfation for Cadmium Recovery at Josephtown Smelter (Discussion p. 1292)

    By R. E. Lund, D. E. Warnes

    SELECTIVE sulfation of individual constituents in ores or metalliferous products has received increased attention in recent years. The fluid-bed reactor with its advantages of close control of both te

    Jan 1, 1958