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Extractive Metallurgy Division - Arc Melting of Titanium MetalBy S. F. Radtke, J. A. Snyder, R. M. Scriver
An automatic, continuous casting arc furnace employing a nonconsum-able electrode and a direct current arc has been constructed and operated successfully for titanium. A comparison of the properties o
Jan 1, 1952
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Extractive Metallurgy Division - Arc Melting of Titanium Metal - DiscussionBy S. F. Radtke, J. A. Snyder, R. M. Scriver
DISCUSSION, J. R. Long presiding R. I. Jaffee (Battelle Memorial Institute, Columbus, Ohio)—The authors have written a fine and important paper, and are to be congratulated. I do not entirely follow t
Jan 1, 1952
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Extractive Metallurgy Division - Arc-Furnace Equipment and Its Operation at the Kennecott Utah RefineryBy H. A. Shaw, H. G. G. Whitton
This paper describes the use of the electric-arc furnace for the production of tough-pitch, horizontal cast copper shapes and the production of copper anodes from tank house anode scrap. This installa
Jan 1, 1954
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Extractive Metallurgy Division - Autogenous Roasting of Low Grade Zinc Concentrate in Multiple Hearth Furnaces at Risdon, TasmaniaBy J. A. B. Forster
The operations of the Electrolytic Zinc Co. of Australasia Ltd. involve the preliminary roasting of zinc concentrate from Broken Hill, New South wales, at a number of acid-making centers on the Austra
Jan 1, 1950
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Extractive Metallurgy Division - Autogenous Roasting of Low Grade Zinc Concentrate in Multiple Hearth Furnaces at Risdon, Tasmania - DiscussionBy J. A. B. Forster
W. G. WOOLF*—The paper has a wealth of data that take careful, detailed study. As has been indicated the highlights can be only touched in the paper. The design and the arrangement of the rabble teeth
Jan 1, 1950
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Extractive Metallurgy Division - Basal Plane Development in Electrodeposited Hexagonal-Close-Packed Metals: Zinc, Titanium, and ZirconiumBy W. R. Opie
The object of this paper is to show the manner in which typical electrodeposits of hexagonal-close-packed metals—zinc, titanium, and zirconium—tend to form. The conditions of electrodeposi-tion marked
Jan 1, 1957
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Extractive Metallurgy Division - Bench-Scale Development of a Sulfation Process for Complex Sulfide OresBy G. R. Smithson, John E. Hanway
This paper, the first of two papers covering the development of a metallurgical process for the treatment of a complex ore, describes the bench-scale experimental Program undertaken as a basis for ini
Jan 1, 1962
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Extractive Metallurgy Division - Bismuth Recovery at OroyaBy W. C. Smith, P. J. Hickey
After a short historical background of the process evolution, this article descvibes present-day plant facilities and operating techniques utilized for high-purity bismuth production. The plant is on
Jan 1, 1962
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Extractive Metallurgy Division - Cadmium Recovery Practice at the Donora Zinc WorksBy G. T. Smith, R. C. Moyer
Cadmium, along with other impurities such as lead, gallium, germanium and indium, is characteristically found associated with zinc ores, the average ratio of zinc to cadmium being about 200 to 1. The
Jan 1, 1950
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Extractive Metallurgy Division - Cadmium Recovery Practice at the Donora Zinc Works - DiscussionBy G. T. Smith, R. C. Moyer
L. P. DAVIDSON*—In the analysis of the cadmium sponge how is the sample prepared ? M. M. NEALE*—The analysis of the cadmium sponge? L. P. DAVIDSON—You gave a very high percentage of metal
Jan 1, 1950
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Extractive Metallurgy Division - Cadmium Recovery Practice in Lead SmeltingBy H. E. Lee, P. C. Feddersen
Greenockite is the only known cadmium mineral of importance. It occurs rather universally, in minor concentrations, as a secondary mineral in sphalerite deposits. The world's cadmium output is ob
Jan 1, 1950
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Extractive Metallurgy Division - Cadmium Recovery Practice in Lead Smelting - DiscussionBy H. E. Lee, P. C. Feddersen
846 . . . Metals Transactions, Vol. 185 T. J. WOODSIDE*—In the paper it was stated that many of the A. S. and R. plants probably used a process patented by Roscoe Teats in 1930. I might descr
Jan 1, 1950
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Extractive Metallurgy Division - Calciothermic Reduction of Niobium (Columbium) PentoxideBy C. K. Gupta, P. K. Jena
Niobium (columbium) metal in the form of a button has been produced by calciothermic reduction of niobium pentoxide using sulfur as the heat booster. In these experiments with 50 g of niobium pentoxid
Jan 1, 1964
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Extractive Metallurgy Division - Calculation of Activities in Binary Systems Having Miscibility GapsBy H. A. Wriedt
A method of calculating activities in binary systems having miscibility gaps is described. The method, which applies only to the phase in which the gap occurs, is exact when the function defined by
Jan 1, 1962
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Extractive Metallurgy Division - Calorimetry at 1100° to 1200°C: The Copper-Nickel, Copper-Silver, Copper-Cobalt SystemsBy R. N. Dokken, J. F. Elliott
A high-temperature solution calorimeter was used to measure directly the partial molar heat of mixing of nickel in the Cu-Ni system, 0 to 15 at. pct Ni and 1200°C; of silver in the Cu-Ag system, 0 to
Jan 1, 1965
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Extractive Metallurgy Division - Canadian Copper Refiners Ltd. Electric Furnace Melting PracticeBy W. A. Sheaffer
Electric furnace installation and tough-pitch copper-casting operation at Canadian Copper Refiners Ltd. are described. General layout, power supply and control, refractories, induction pour hearth, ca
Jan 1, 1956
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Extractive Metallurgy Division - Caustic Sulfide Treatment of Mercury SulfidesBy W. A. Stickney, J. W. Town
Tests demonstrated that aqueous solutions of sodiu~n sulfide would dissolve over 95 pct of the cinnabal- in 5 pct Hg flrotation concentrates and 60 to 90 pct of the cinnabav in low-grade ol-es. Double
Jan 1, 1962
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Extractive Metallurgy Division - Chemistry of the Ammonia Pressure Process for Leaching Ni, Cu, and Co from Sherritt Gordon Sulphide ConcentratesBy F. A. Forward, V. N. Mackiw
The paper relates to the laboratory and pilot plant studies that have been carried out by Sherritt Gordon Mines Ltd., Metallurgical Research Div., in developing the ammonia pressure leach process for
Jan 1, 1956
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Extractive Metallurgy Division - Chlorination of RutileBy Arne Bergholm
Australian rutile was chlorinated in the presence of CO or carbon. The chlorination velocity in CO was found to be strongly influenced by temperature and proportional to the CO concentration, but inde
Jan 1, 1962
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Extractive Metallurgy Division - Chlorination of Zirconium OxideBy H. L. Gilbert, W. W. Stephens
Production of anhydrous zirconium tetrachloride by direct chlor- ination of a zirconium oxide carbon mixture in a silica-brick-lined chlorinator is described. Theory and thermodynamics of reactions ar
Jan 1, 1953