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Extractive Metallurgy Division - Hurley Furnace and Boiler Description and DesignBy E. A. Slover
THE usual reverberatory system of smelting cop--1- per concentrate or calcine has for its component parts a furnace and one or two waste heat boilers. These parts are operated on a basis of compromise
Jan 1, 1954
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Extractive Metallurgy Division - Hydrogen Precipitation of Nickel from Buffered Acid SolutionsBy S. C. Sircar, D. R. Wiles
The rate has been studied of the hydrogen reduction of nickel ions in acetate -buffered solutions, using a nickel catalyst. At temperatures between 130°and 160°C, the rate is found to be proportional
Jan 1, 1961
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Extractive Metallurgy Division - Hydrometallurgy of Copper-Zinc Concentrates. Kosaka Smelter, The Dowa Mining Co., JapanBy H. Kurushima, S. Tsunoda
An investigation of the hydrometallurgy of Cu-Zn concentrates by The Dowa Mining Co. of Japan is described and a detailed flowsheet of the Kosaka hydro-metallurgical plant is given. Sufficient operati
Jan 1, 1956
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Extractive Metallurgy Division - Improved Methods for the Preparation of the Rare-Earth MetalsBy P. E. Palmer, A. H. Daane, C. E. Habermann
Jan 1, 1965
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Extractive Metallurgy Division - Industrial Hygiene at American Smelting and Refining Company (Correction, p 146)By K. W. Nelson, John N. Abersold
INDUSTRIAL hygiene has been defined by Patty' as "the science and art of recognizing, evaluating, and controlling potentially harmful factors in the industrial environment." This definition impli
Jan 1, 1952
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Extractive Metallurgy Division - Infrared Evidence for Bisulfate Formation in the Dehydration of Magnesium SulfateBy F. A. Olson, J. S. Cho, M. E. Wadworth
An infrared study of the states of hydration of MgSO4 revealed a hitherto unreported metustable dehydration state in the temperature range just below that of the stable anhydrous salt. Infrared, therm
Jan 1, 1964
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Extractive Metallurgy Division - Integration of Metallurgical Engineering EducationBy R. Schuhmann
As a response to rapidly growing specialization in various branches of metallurgy, it is proposed that undergraduate education in metallurgical engineering should be built up around four principal sci
Jan 1, 1956
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Extractive Metallurgy Division - Interaction Parameters in Dilute Molten AlloysBy John M. Dealy, Robert D. Pehlke
Values for interaction parameters in nonferrous systems, as calculated from published data, are tabulated and discussed. The influence of temperature on the parameter is derived and compared with the
Jan 1, 1963
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Extractive Metallurgy Division - Interface and Marker Movements in Diffusion in Solid Solutions of MetalsBy Luiz C. Correa da Silva, Robert F. Mehl
An experimental study of the movement of markers in the systems Cu/a-brass, Cu/Sna-solid solution, Cu/Ala-solid solution, Cu/Ni, Cu/Au, Ag/Au, employing many types of markers and a variety of temperat
Jan 1, 1952
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Extractive Metallurgy Division - Interface and Marker Movements in Diffusion in Solid Solutions of Metals - DiscussionBy Luiz C. Correa da Silva, Robert F. Mehl
A. D. Le Claire and R. S. Barnes (Atomic Energy Research Establishment, Harwell, Didcot, Berks., England)-—This much awaited paper admirably confirms that the Kirkendall effect is a true diffusion phe
Jan 1, 1952
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Extractive Metallurgy Division - Intrepretation of Vacuum Gas Test Results for Aluminum AlloysBy K. J. Brondyke, P. D. Hess
Lack of correlation between densities of aluminum alloy samples solidified under reduced pressure (vacuum gas test) and hydrogen content of the metal is explained on the basis of inclusions serving as
Jan 1, 1964
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Extractive Metallurgy Division - Kinetic and Equilibrium Studies of Redox Reactions in Liquid BismuthBy D. H. Gurinsky, D. G. Schweitzer
The empirical equilibrium constantsd the heat of reaction for the reduction have been determined from 300° to 500°C. The mechanisms of the oxidation of uranium and magnesium fro
Jan 1, 1962
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Extractive Metallurgy Division - Kinetic Study of the Oxidation of SphaleriteBy Milton E. Wadsworth, John N. Ong, W. Martin Fassell
The temperature and oxygen concentration dependence on the reaction of sphalerite in oxygen at pressures from 6 to 640 mm Hg have been investigated in the temperature range 700° to 870°C. Sphalerite h
Jan 1, 1957
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Extractive Metallurgy Division - Kinetics of Exchange Reactions Between Liquid Bismuth-Rare Alloys and Fused SaltsBy H. M. Katz, J. L. Speirs, F. B. Hill
Jan 1, 1961
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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