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Extractive Metallurgy Division - Diffusion in the Solid Silver-Molten Lead SystemBy R. E. Hudrlik, G. W. Preckshot
The diffusion coefficients of silver from solid silver in molten lead were measured to within ± 0.8 pet in a columnar type diffusion cell ower, the temperature range of 326° to 530°C. Fick's la
Jan 1, 1961
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Extractive Metallurgy Division - Discussion, Extractive Metallurgy Division, San Francisco Meeting, February 1949A. A. CENTER*—This paper reminds me of the beginning of the work of the Electrolytic Zinc Company of Australasia. Early work for this Company, as some of you may know, was done at the Bully Hill Pl
Jan 1, 1950
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Extractive Metallurgy Division - Distillation of Zinc from Copper Base Alloys and Galvanizers DrossesBy F. F. Poland
The purpose of this paper is to describe the recent applications and improvements made in the process and equipment for the recovery of metallic zinc from secondary metals by means of high temperature
Jan 1, 1950
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Extractive Metallurgy Division - Effect of Arsenic and Tellurium on the Surface Tension of LeadBy Douglas J. Harvey
The surface tension of lead-tellurium alloys (in the range 0 to 6.70 at. pct Te) ad lead-arsenic alloys (in the range 0 to 10.53 at. pct As) has been examined by the maximum bubble pressure method. T
Jan 1, 1962
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Extractive Metallurgy Division - El Paso Refinery of Phelps Dodge Refining CorporationBy B. B. Kunkle
The history of this refinery has been one of expansion. It now has the capacity to produce 240,000 tons of cathodes annually. A general flowsheet and descriptions of the plant layout, operations invol
Jan 1, 1952
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Extractive Metallurgy Division - El Paso Slag Treatment PlantBy T. J. Woodside
Prior to 1927 the lead blast furnace charge at El Paso consisted principally of direct-smelting carbonate ores, very low in zinc, and the resulting slag seldom carried more than 4.0 pct. With the exha
Jan 1, 1950
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Extractive Metallurgy Division - El Paso Slag Treatment Plant - DiscussionBy T. J. Woodside
A. E. LEE*—One question of the flue leading to the tube coolers. What gas velocity is maintained to prevent settling of the finely divided fume ? T. J. WOODSIDE (author's reply)— 30 fps. Of co
Jan 1, 1950
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Extractive Metallurgy Division - Electrical Conductivity of the Molten Co-S, Ni-S, Cu-S and Ag-S SystemsBy Edna A. Dancy, Gerhard J. Derge
Jan 1, 1963
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Extractive Metallurgy Division - Electrodeposition of Titanium from Fused Chloride Baths Using TiCl4 as a Feed MaterialBy K. A. Svanstrom, W. R. Opie
Problems associated with deposition of titanium infused chloride baths using TiCl4 as a feed material are reviewed. A potentially workable cell design using Alumdum diaphragms is discussed. Problems
Jan 1, 1960
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Extractive Metallurgy Division - Electrolytic Production of Hydrometallurgical Reagents for Processing Manganese OresBy J. B. Clemmer, P. E. Churchward, C. Rampacek
A cyclic method for processing manganese ores using sodium sulphate as the basic reagent is described. Sodium sulphate is electrolyzed in a diaphragm cell to give an anolyte-containing agentisdescribe
Jan 1, 1956
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Extractive Metallurgy Division - Electrolytic Zinc Plant at Monsanto, IllinoisBy T. I. Moore, L. A. Painter
THE electrolytic zinc plant of the American Zinc Co. of Illinois was described by Davidson' in 1944. Since then, improvements as well as expansion of the plant facilities have been made. In order
Jan 1, 1953
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Extractive Metallurgy Division - Equilibrium Considerations in the Roasting of Metallic SulfidesBy Herbert H. Kellogg
The chemistry of sulfide roasting is analyzed to show those aspects of performance which Thecan be predicted from considerations of thermodynamic equilibrium. It is concluded that equilibrium calculat
Jan 1, 1957
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Extractive Metallurgy Division - Extraction of Alumina from Haiti and Jamaica BauxitesBy T. D. Tiemann
The chemical and mineralogical composition of Caribbean bauxite ores are described. Extraction of alumina by several processes from both Haiti and Jamaica bauxites is discussed and data presented.
Jan 1, 1952
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Extractive Metallurgy Division - Factors Affecting Rate of Deposition of Metals in Thermal Dissociation ProcessesBy G. H. Kessler
ALTHOUGH considerable attention has been devoted to reaction mechanisms and equilibria of a number of endothermic reactions through which metals or their refractory compounds can be formed upon heated
Jan 1, 1961
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Extractive Metallurgy Division - Filtering and Fluxing Processes for Aluminum AlloysBy K. J. Brondyke, P. D. Hess
Two processes have been developed for improving the quality of molten-aluminum alloys before casting. The Filtration Process. which involves passing molten metal through a packed bed of granular filte
Jan 1, 1964
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Extractive Metallurgy Division - Flash Chlorination of Very Finely Divided Metal OxidesBy L. W. Rowe, S. S. Cole
A laboratory bench scale unit is described whereby finely divided chlorinatable residues are held for a short period by a restraining bed of a coarse-grained ore of comparable composition to permit &
Jan 1, 1962
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Extractive Metallurgy Division - Flocculation of Mineral Suspensions With Coprecipitated PolyelectrolytesBy Ivan B. Cutler, Milton E. Wadsworth
Coprecipitation of anionic and cationic polyelectrolytes has been applied to floccula-tion of several mineral systems. Results obtained in a study of the flocculation of kaolinite and hematite suspens
Jan 1, 1957
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Extractive Metallurgy Division - Formation and Behavior of Subboundaries in Silicon Iron CrystalsBy C. G. Dunn, F. W. Daniels
IN recent publications1-5 the existence and behavior of subgrain boundaries in high-purity metals has been clearly brought to light. Lacombe and Beaujardl by means of special etching methods disclosed
Jan 1, 1952
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Extractive Metallurgy Division - Free Energies of Formation of Gaseous Metal OxidesBy Molly Gleiser
The standard free energies of formation of some gaseous metal oxides together with those of their condensed oxides have been plotted against temperature. The heats of formation of the gaseozcs oxide
Jan 1, 1962
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Extractive Metallurgy Division - Gas Content of Solid Aluminum by Solid Extraction and Vacuum FusionBy C. Norman Cochran, James L. Brandt
ALTHOUGH gas in aluminum and its effect on aluminum products have been the subject of a number of papers, not many quantitative determinations of the hydrogen content of solid aluminum and its alloys
Jan 1, 1957