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Thermodynamics Of Indium Dissolution Behavior In Feo-Bearing Metallurgical Slag
By Yun Soon Han, Joo Hyun Park
Indium (In) solubility in the FeO-SiO2-Al2O3-5%CaO slag was measured under p(O2)=10¯¹¹ atm at 1573 K to clarify the dissolution mechanism of In in FeO-bearing metallurgical slag. The In solubility inc
Jan 1, 2014
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Applications of Doubly Polished Sections to the Study of Ore Deposits
By P. Heald-Wetlaufer
Doubly polished sections (i.e., sections polished on both sides) allow insights into complex paragenetic relationships, the interpretation of which is essential to understanding ore-forming processes.
Jan 1, 1982
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Criteria for the Selection of a Recycling Process for Low Zinc-Containing Residuals f.rom the Iron I Steel Industry
By N. L. Piret
Reprocessing of low zinc-bearing residuals with a zinc content of less than 10%, originating from the iron and steel industry, has been given more and more attention in the last few years, due to the
Jan 1, 1992
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Progress And Problems In The Modeling Of Non-Ferrous Processes (Keynote)
By Arthur E. Morris
Fifty years ago when Professor Yazawa began his career, the field of process simulation and modeling was in its infancy. Since then, tremendous progress has been made in our ability to model metal pro
Jan 1, 2003
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Effect Of The Oxygen Potential On The Viscosity Of Copper Smelting Slags
By F. Kongoli
Viscosity is an important parameter of copper smelting and converting processes. It affects the settling of matte or metal droplets in the slag, distribution of elements etc, Despite this importance,
Jan 1, 2003
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Assessment of Lithium Pegmatite Ore Bodies to Determine Their Amenability to Processing for the Extraction of Lithium
By G. Mark Aylmore
Various processes have been developed using a combination of elevated temperature and chemical treatment processing to recover Li from silicate minerals. To facilitate further process development, a c
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Bioprocessing of Materials
By Ross W. Smith
Microorganisms are increasingly finding use in mineral processing and hydrometallurgy both for the enhancement of mineral engineering operations and for the remediation of mineral industry wastes. Som
Jan 1, 1993
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Thermodynamic Evaluation Of Arsenic And Antimony On The Bessemer Matte And Calcium Ferrite Slag (b3e35db0-8459-4971-94ca-ab9509b8916b)
By lonkion M. Font
Due to the known disadvantages of the use of iron silicate slag in the nickel converting stage, i.e., high metal losses, high magnetite content, and low fixation of impurities in the slag, the develop
Jan 1, 2003
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No. 3 Tankhouse at Onahama Smelter and Refinery
By H. Ikeda
The new Onahama N0.3 tankhouse was put into operation early in 1973. This new tankhouse, which has a capacity of 90,000 metric ton cathode per year, is distinct in many important respects from convent
Jan 1, 1976
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The Use of Diagnostic Leaching for Flotation Insight
By Kymberley Worrell
The Cripple Creek and Victor Gold Mine was acquired by Newmont in August 2015. The high grade flotation mill project was commissioned in February 2014. The mill to date has been throughput limited due
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High REE-Granites from the Precambrian Red Bluff Granite Complex, North Franklin Mountains, West Texas
By David M. Davidson
Seven intrusive phases have been mapped to date in the 1 b.y. Red Bluff Granite Complex (RBGC) near El Paso, Texas. This batholith is 20 km2 in area and intrudes older supracrustal units as well as a
Jan 1, 1988
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Mathematical Modeling of Ion Exchange Columns with Emphasis on Hydrous Crystalline Silico-Titanates, Molecular Sieves and Non Ideal Solutions
By M. E. Huckman
In this paper, we review the equations needed to construct an ion exchange column model. These models contain three major components: 1) a differential material balance around the colunm, 2) a differe
Jan 1, 1996
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Recycle and Reuse of Waste Silicon in Wafer Manufacturing Process
By Drew Sinha
Success of the environmentally benign semiconductor manufacturing depends on the cost-effective integration of the principles of reduce, recover, reuse and recycle from source material to final produc
Jan 1, 1998
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Application of Mössbauer Spectroscopy to the Development and Commercialization of the Iron Carbide Process
By Frank A. Stephens
The process of converting iron ore (principally Fe,03 or Fe30,) into iron carbide (Fe,C) to be used as feedstock for steel-making yields complex mixtures of several Fe-containing compounds as a functi
Jan 1, 1993
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Thermodynamics of Tungsten Ores Decomposition Process Options
By Leiting Shen
The thermodynamics of tungsten ore decomposition in mineral acid and alkaline solutions were studied. The published thermodynamic data of tungsten minerals were collected and assessed. The Gibbs energ
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Effects of caF2 and CaCl2 on Distribution of S Between Molten Copper and CaO-Fluxes
By M. Hashimoto
The equilibrium distribution ratios of sulfur between molten copper and CaO-fluxes containing caF2 and caC12 were determined in the range of 1300° to 1400° C under carbon monoxide. The rate of approac
Jan 1, 1983
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Studies On The Reactivity Of Copper And Nickel Mattes Under Suspension Smelting Conditions
By J. Sjöblom
New copper and nickel processes, flash converting and DON, direct high-grade nickel matte smelting, have been developed in order to replace the conventional and not so environmentally friendly PS-conv
Jan 1, 1999
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Properties of AIMgSil Wrought Alloy Components Produced by Means of the NRC - Process
By G. C. Gullo, H. Wabusseg, P. J. Uggowitzer, H. Kaufmann
"The basic concept of New Rheocasting (NRC) is described and the application of wrought alloys with this process is discussed. Practical experiments with the aluminium alloy AIMgSi I are explained. Fo
Jan 1, 2000
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On The Preparation And Stability Of Scorodite
By George P. Demopoulos
In this paper the production and stability of crystalline scorodite (FeAsO4·2H2O) is discussed both on the basis of previously published work as well as recent work performed in our laboratory. The pr
Jan 1, 2005
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High Intensive Operation Of Flash Smelting Furnace At Saganoseki Smelter & Refinery
By Masatoshi Ogasawara
Saganoseki smelter & refinery operated two flash smelting furnaces, producing a combined 330,000 metric tons per year (hereinafter mtpy) of copper. In 1996, however, it successfully shifted to a singl
Jan 1, 2003