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  • AIME
    Extractive Metallurgy Division - Phase Relationships in the Systems Fe-Pb-Ni, Fe-Ni-C (Sat). and Fe-Pb-Ni-C; 1300° to 1550°C

    By J. E. Elliott, K. O. Miller

    Solubility studies were carried out to establish the phase distributions for various Fe-Ni-Pb-C alloys at temperatures where the metallic components exist as liquid solutions. Temperature us compositi

    Jan 1, 1961

  • AIME
    Extractive Metallurgy Division - Pilot-Plant Development of a Sulfation Process for Complex Sulfide Ores

    By J. A. Morgan, R. E. Lund, D. E. Warnes

    The design, operation, and performance of an integrated pilot plant for recovering zinc and copper from a complex sulfide ore are described. Metallurqical processing comprised selective sulfate roasti

    Jan 1, 1962

  • AIME
    Extractive Metallurgy Division - Precipitation of Metal from Salt Solution By Reduction with Hydrogen

    By F. A. Schaufelberger

    Early work on chemical precipitation of metals from metal salt solutions is reviewed. The chemistry and thermodynamics of precipitating copper, nickel, cobalt, and cadmium metals by reaction with hydr

    Jan 1, 1957

  • AIME
  • AIME
  • AIME
    Extractive Metallurgy Division - Preparation and Arc Melting of High Purity Iron

    By G. W. P. Rengstorff, H. B. Goodwin

    A method is described for purifying iron in batches of 150 Ib or more. Oxygen, carbon, nitrogen, and sulphur are removed from flakes of electrolytic iron by treatment in wet and then dry hydrogen. A s

    Jan 1, 1956

  • AIME
    Extractive Metallurgy Division - Preparation and Chlorination of Titaniferrous Slag from Idaho Ilmenites

    By A. H. Roberson, L. H. Banning

    DURING the past few years, a considerable tonnage of ilmenite has been produced as a byproduct of a monazite dredging operation and stockpiled near Boise, Idaho. This ilmenite has not been marketed be

    Jan 1, 1956

  • AIME
    Extractive Metallurgy Division - Preparation of Anhydrous Chlorides of Cerium and Thorium (TN)

    By R. Didchenko

    THERE are many methods described in the older literature which claim to produce anhydrous rare-earth chlorides in general. and cerium chloiide in

    Jan 1, 1960

  • AIME
    Extractive Metallurgy Division - Preparation of High Purity ZrCl4 from Alkali Chlorozirconates

    By R. V. Horrigan

    High purity ZrC14 (25 to 200 ppm of metallic impurities) can be readily prepared in simple apparatus by thermal decomposition of alkali chlorozirconate fused salts at 500° to 600°C and at atmospheric

    Jan 1, 1956

  • AIME
    Extractive Metallurgy Division - Preparation of High-Purity Tellurium

    By Charles L. Mantell, P. P. Napolitano

    High-purity tellurium oJ semiconductor grade may be prepared by a combination of electrowinning from tellurium oxide, electrorefining and controlled atmosphere melting, as detailed in the paper. SE

    Jan 1, 1964

  • AIME
    Extractive Metallurgy Division - Preparation of Metallic Iron of High Purity (with Discussion page 1449)

    By G. A. Moore

    A brief review is given of methods designed to produce metallic iron of high purity, and typical results are listed. A recent method, utilized at the National Bureau of Standards, consists of the extr

    Jan 1, 1954

  • AIME
    Extractive Metallurgy Division - Preparation of Metallic Titanium by Film Boiling

    By L. A. Bromley, A. W. Petersen

    The van Arkel-deBoer method for producing ductile titanium by thermal decomposition of Til, vapor and deposition on an electrically heated filament is modified by film boiling Til liquid on a heated f

    Jan 1, 1957

  • AIME
    Extractive Metallurgy Division - Preparation of Titanium Tetrachloride from Rutile

    By C. H. Gorski

    A method for preparing titanium tetrachloride is described which consists of reducing rutile with coke and chlorinating the reduced product at 200° to 500°C. The crude distillate is purified by treatm

    Jan 1, 1952

  • AIME
    Extractive Metallurgy Division - Preparation of Two Lithium-Arsenic Compounds (TN)

    By R. E. Tate, F. W. Schonfeld

    In 1899, Lebeau1 reported the preparation of the compound Lis As through reduction of lithium arse-nate with carbon. Brauer and zint12 have described the preparation of Li3 As by combining the element

    Jan 1, 1960

  • AIME
    Extractive Metallurgy Division - Preparation of Ultra Pure Molybdenum

    By R. Bakish, M. A. Badiali, N. W. Kirshenbaum

    One pound of ultra pul-e molybdenum has been produced containing both metallic and nonmetallic impuvities close to or less than the limits of detection. various purification methods were investigated;

    Jan 1, 1963

  • AIME
    Extractive Metallurgy Division - Processing of Zinc Oxide Fume at Flin Flon, Manitoba

    By R. Ellerman

    The hydrometallurgical processing of an impure zinc oxide fume is described. Flowsheet includes roasting for fluorine elimination and countercurrent leaching to produce a neutral sulphate solution. Th

    Jan 1, 1956

  • AIME
    Extractive Metallurgy Division - Production and Purification of TiCl4

    By L. W. Rowe, W. R. Opie

    A brief history of TiCI, production and purification is given. Chlorinator feed materials for the production of TiCI4 are classified. The thermodynamics and kinetics of Ticl4 production by chlorinatio

    Jan 1, 1956

  • AIME
    Extractive Metallurgy Division - Production of Aluminum from Kalunite Alumina

    By Julian Glasser, Arthur Fleischer

    THIS country was faced with the possible necessity of utilizing nonbauxitic ores for producing aluminum during World War 11. Construction of four experimental plants to treat such ores by four differe

    Jan 1, 1952

  • AIME
    Extractive Metallurgy Division - Production of Malleable Zirconium on a Pilot-Plant Scale

    By W. W. Stephens, W. J. Kroll, H. P. Holmes

    THE only two methods for producing commercial quantities of malleable zirconium, up to now, have been using magnesium reduction of the anhydrous chloride under a neutral gas, and using purification of

    Jan 1, 1951

  • AIME
    Extractive Metallurgy Division - Production of Zirconium Diboride from Zirconia and Boron Carbide

    By T. E. Evans, C. T. Baroch

    ZrB2 was produced in batches of 4 to 6 Ib by interaction of ZrO2, B4C, B203, and carbon at around 2000°C in a simple graphite resistance furnace. Techniques of production are discussed and the final d

    Jan 1, 1956