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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 - 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 - 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 - Conditioning Dwight-Lloyd Gases to Increase Bag LifeBy R. E. Shinkosk
This paper outlines the development of a program for increasing the life of woolen bags used for filtering Dwight-Lloyd gases by treating the bags and gases with hydrated lime. Methods and appar
Jan 1, 1951
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Extractive Metallurgy Division - Debismuthizing of LeadBy T. R. A. Davey
The fundamental principles by which bismuth may be removed from lead by pyrometallurgical processes are enumerated. Qualitative discussion of the phase diagrams concerned is followed by presentation o
Jan 1, 1957
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Extractive Metallurgy Division - Deleading Zinc Concentrate at the Parral and Santa Barbara Mills - DiscussionBy G. G. Gunther, C. L. Boeke
(Any discussion resulting from presentation at the Los Angeles Extractive Metallurgy Division Meeting will appear in the November 1953 issue.) I. M. Symonds (Cia Minera de Penoles, Monterrey, N. L.
Jan 1, 1953
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Extractive Metallurgy Division - Dependence of Segregation of Impurities on the Crystallinity of Gallium (TN)By P. R. Celmer, Leonard R. Weisberg
THE principle of fractional crystallization has been successfully used to prepare high-purity (99.999 pct) Ga. Hoffman and Scribnerl removed single crystals of gallium solidifying in a gallium melt, w
Jan 1, 1962
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Extractive Metallurgy Division - Desilverizing of Lead BullionBy T. R. A. Davey
IN 1947 the author became interested in the fundamental aspects of the desilverizing of lead by zinc, conducted some experimental work, and searched the technical literature for all available fundamen
Jan 1, 1955
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Extractive Metallurgy Division - Determination of the Density of Lead OxideBy W. W. Krysko
In order to calculate the critical particle size of lead oxide entrapped in lead, Stoke's Formula may be applied. All data were available except figures for the density of lead oxide at elevated
Jan 1, 1962
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Extractive Metallurgy Division - Development of Muffle Furnaces for the Production of Zinc Oxide and Zinc at East Chicago, Indiana - DiscussionBy G. E. Johnson
E. D. HYMAN*—How much sorting of scrap is done ? G. E. JOHNSON (author's reply)—We do practically no sorting. We charge "run of mine" scrap to the furnace. The unmeltables, mostly iron, are in
Jan 1, 1950
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Extractive Metallurgy Division - Development of the Modern Zinc Retort in the United States - DiscussionBy H. R. Page, A. E. Jr Lee
A. E. LEE, JR. (author)—In addition to the paper we should like to make a few remarks. First, the seriousness of bending of the clay retort cannot be overemphasized. Not only did bending limit the len
Jan 1, 1950
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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 - 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 - Distillation of Zinc from Copper Base Alloys and Galvanizers Drosses - DiscussionBy F. F. Poland
S. ROLLE*—As one who has been privileged to read Mr. Poland's paper before its publication, I wish to express high praise for it and the record which it gives of the work done by the Research and
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 - Equilibrium Pressure Measurements Above ZnS from 680° to 825°CThe pressure of the gas in equilibrium with sphalerite has been determined in the temperature range of 680' to 825°C, using the Knudsen orifice method. A comparison of these experimental pressure
Jan 1, 1955
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Extractive Metallurgy Division - Experimental Production of Al-Si Alloys in a Three-Phase FurnaceBy W. F. Hergert, L. H. Banning
Experimental production of Al-Si alloys, containing from 33 to 55 pct Al, by direct reduction of aluminum silicates in a three-phase arc furnace is described. Advantages of a smelting technique utiliz
Jan 1, 1956
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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 - 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