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Extractive Metallurgy Division - Kinetics of the Oxidation of Galena In Ammonium Acetate Solutions Under Oxygen PressureBy C. S. Samis, D. P. Seraphim
In the presence of oxygen, galena is oxidized in an aqueous medium containing ammonium acetate in accordance with the following reaction: PbS + 1/2 0, + 2 NH~Ac -» PbAc, + So + 2 NH: + H2O. This
Jan 1, 1957
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Extractive Metallurgy Division - Kinetics of the Oxidation of Galena in Sodium Hydroxide Solutions under Oxygen Pressure (Discussion page 1556)By J. E. Andersen, J. Halpern, C. S. Samis
In the presence of oxygen, galena is oxidized in an aqueous medium containing sodium hydroxide, in accordance with the following reaction: PbS + 2O2 + 3OH ? HPbO2 + SO4 = + H2O A novel method was
Jan 1, 1954
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Extractive Metallurgy Division - Kinetics of the Platinum-Catalyzed Hydrogen Reduction of Aqueous Cobalt Sulfate-Ammonium Acetate SolutionBy Milton E. Wadsworth, R. Ted Wimber
Cobalt sulfate solutions containing ammonium acetate and chloroplatinic acid were reduced by hydrogen in a pyrex-glass lined autoclave in the temperature range of 170o to 232°C and hydrogen partial pr
Jan 1, 1962
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Extractive Metallurgy Division - Kinetics of the Thermal Decomposition of Cupric Sulfate and Cupric OxysulfateBy P. Marier, T. R. Ingraham
When anhydrous cupric sulfate is heated in a stream of nonreactive gas, cupric oxysulfate is formed. When this reaction is complete, the cupric oxysulfate then decomposes to cupric oxide, which is the
Jan 1, 1965
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Extractive Metallurgy Division - Lead Blast Furnace Gas Handling and Dust CollectionBy R. Bainbridge
THE Consolidated Mining and Smelting CO. of Canada Ltd. has operated a lead smelter at Trail, B. C., for many years. In order to take advantage of metallurgical advances, as well as to improve materia
Jan 1, 1953
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Extractive Metallurgy Division - Liquid-Solid Phase Distribution Studies in the Systems Iron-Lead, Cobalt- Lead, Chromium-Tin, and Nickel-SilverBy John Wulff, David A. Stevenson
The solubility of iron and cobalt in liquid lead, the solubility of chromium in liquid tin, and nickel in liquid silver were determined up to 1300°C in an atmosphere of hydrogen. Liquid samples were t
Jan 1, 1962
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Extractive Metallurgy Division - Low Pressure Distillation of Zinc from Al-Zn AlloyBy M. J. Spendlove, H. W. St. Clair
The problem frequently arises, particularly in refining metals or smelting scrap metals, of separating metals in the metallie state. Many metals may be separated by taking advantage of their differenc
Jan 1, 1950
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Extractive Metallurgy Division - Magnesium-Tin Phase Diagram and Thermodynamic Properties of Liquid Magnesium-Tin AlloysBy A. Steiner, E. Miller, K. L. Komarek
Equations have been derived to calculate the chemical potentials of the components of liquid binary alloys from liquidus and enthalpy data. The equations are applicable to systems with intermetal-lic
Jan 1, 1964
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Extractive Metallurgy Division - Magnetite in the Hurley Copper SmelterBy H. W. Mossman
Three aspects of magnetite smelting are discussed. The first is the working out of equilibrium conditions for eliminating sulfur. The second is the influence of magnetite solubility on the difficulty
Jan 1, 1957
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Extractive Metallurgy Division - Manganese Dioxide-Sulfuric Acid Oxidation of MolybdeniteBy Roshan B. Bhappu, Ronald J. Roman, Dexter H. Reynolds
The reaction between manganese dioxide and molybdenite in a water- sulfuric acid medium was studied at atmospheric pressure and from 25° to 103°C. Both solids are dissolved to give, as final products
Jan 1, 1965
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Extractive Metallurgy Division - Mass Transfer of Hydrogen Between Liquid Aluminum and Bubbles of Argon GasBy Robert D. Pehlke, Arden L. Bement
A mass transfer coefficient for the removal of hydrogen from liquid aluminum by inert flush degassing has been determined experimentally at 700°C. A mathematical model has been derived, assuming trans
Jan 1, 1962
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Extractive Metallurgy Division - Mechanism of the Reduction of Oxides and Sulphides to MetalsBy Carl Wagner
AT elevated temperatures. most metals react with oxygen, sulphur, or halogen rather rapidly, although a coherent layer of the reaction product is formed and separates the two reactants from each other
Jan 1, 1953
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Extractive Metallurgy Division - Mechanism of the Reduction of Oxides and Sulphides to Metals - DiscussionBy Carl Wagner
J. Pearson (British Iron and Steel Research Association, London, England)—Dr. Wagner has referred to the work of Richardson and Dancy and Gellner and Richardson on the reduction at 900 °C of wiistite
Jan 1, 1953
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Extractive Metallurgy Division - Mechanism Study of Extraction of Cerium from Molten Uranium with Uranium DioxideBy Tennyson Smith
Jan 1, 1962
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Extractive Metallurgy Division - Mechanisms of Refractory Wear in Copper ConvertersBy Harry M. Mikami, A. Gene Sidler
Chemistry of the evolution of materials in contact with copper converter tuyeres is delineated by means of analyses of periodic punch rod samples taken during a converter cycle. Lining samples from kn
Jan 1, 1963
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Extractive Metallurgy Division - Melting of Malleable Nickel and Nickel AlloysBy C. G. Bieber, R. F. Decker
The effects of minor constituents on the malleability of nickel alloys are described. These effects are related to the atomic diameter, valence, and position on the Periodic Table. The basic methods f
Jan 1, 1962
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Extractive Metallurgy Division - Melting Points in the System TiO2-CaO-MgO-A12,O13By S. S. Cole, H. Sigurdson
The melting points of mixtures of titanium dioxide and other titanates have been reported to a limited extent as binary systems and some results have been reported in conjunction with silicon dioxide.
Jan 1, 1950
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Extractive Metallurgy Division - Metallic Materials Resistant to Molten ZincBy W. Hodge, A. F. Haskins, R. M. Evans
Refractory boron compounds are shown to resist corrosion by molten zinc. Coatings were made from ferroboron and manganese boron by several methods: welding, hard facing, and pack diffusion; and techni
Jan 1, 1956
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Extractive Metallurgy Division - Metallurgical Reactions of FluoridesBy Herbert H. Kellogg
Graphs representing the standard free-energy of formation as a function of temperature for 21 fluorides are presented, along with estimated values for the standard free-energy of formation of 20 ateda
Jan 1, 1952
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Extractive Metallurgy Division - Metallurgical Reactions of Fluorides - DiscussionBy Herbert H. Kellogg
C. M. Decroly (University of Brussels, Belgium) — The importance of the fluorides in the process metallurgy of special metals has already been accepted and it will probably increase in the future. Fre
Jan 1, 1952