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Computer Aided Design of Hybrid Plasma Reactors for Use in Materials SynthesisBy N. El-Kaddah, J. W. McKelliget
"A mathematical model for the analysis and design of hybrid plasma reactors for advanced materials synthesis is presented. The model is based upon a solution of the electromagnetic vector potential eq
Jan 1, 1988
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The Escondida Process for Copper ConcentratesBy Willem P. C. Duyvesteyn
A novel hydrometallurgical process for Escondida copper concentrates has been developed by The Minerals Laboratory of BHP. The Escondida Process consists of concentrate leaching, solution purification
Jan 1, 1993
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Development of the AusIron ProcessBy B. W. Lightfoot, Neill F. Arthur
"The AusIron process is a new development of the well established Ausmelt bath smelting technology(l). The development of this technology has been tied to the South Australian Steel and Energy (SASE)
Jan 1, 1996
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Thermodynamic Evaluation Of Distribution Behaviour Of Arsenic, Antimony And Bismuth In Copper SmeltingBy Kimio Itagaki
The distribution behaviours of the VA elements between the gas, slag and matte phases in copper smelting were evaluated on the basis of the thermodynamic data, most of which were determined by the aut
Jan 1, 1983
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Kinetics of Converting Chalcopyrite to Covellite Plus Pyrite by SulfidationBy M. J. Adam
The U.S. Bureau of Mines is investigating the partitioning of selected complex minerals into simple phases using sulfidation reactions. Successful partitioning of complex mineralogy to simple phases m
Jan 1, 1991
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Coupling Of Electrocoagulation And Alternative Energy Sources For The Removal Of Arsenic Contaminants In Wa-Ter: An Environment-Friendly Materials ProcessingBy Jewel A. Gomes
Keywords: Electrocoagulation, arsenic removal, fuel cell, windmill, energy simulation, combined Fe-Al electrode assembly Arsenic contamination of well-water in different countries has caused signs
Jan 1, 2005
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Solar Thermal Extraction Of Copper From SulfidesBy Lenny Winkel
With the aim to develop a solar-driven process for the extraction of copper from sulfide concentrates research on the decomposition of copper sulfides under inert atmospheres has been initiated. Therm
Jan 1, 2003
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Gauging of Hot Tube, Bar and Welds by Multifrequency Eddy CurrentsBy John Wallace, Chib Iheagwara
"Refinements in sensor design have produced low-cost rugged elements to act as loop coupled with stable detection hardware for eddy current measurement in difficult environments. This has allowed dire
Jan 1, 1997
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Bonding/Binding Properties Of A Lead Contaminated SoilBy Godwin J. Igwe
For soil remediation technology to be effective, a thorough understanding of the interactions between a targeted contaminant and the soil matrix is crucial. Proper selection of remediation technology,
Jan 1, 1994
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Solar Thermal Extraction Of Copper From Sulfides (065f504f-b794-41df-8188-9af9758a04dc)By Lenny Winkel
With the aim to develop a solar-driven process for the extraction of copper from sulfide concentrates research on the decomposition of copper sulfides under inert atmospheres has been initiated. Therm
Jan 1, 2003
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Sustainability In Ironmaking: The Rise Of Direct ReductionBy Thomas P. Battle
Modern-day direct reduction of iron first developed as a small-scale, low capital and operating cost alternative to the blast furnace. Since commercialization of continuous DR technology in the late 1
Jan 1, 2014
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Trends in Refractory TechnologyBy J. E. Allen
The trend in refractory technology for the copper and nickel industries has been to higher quality raw materials and improved processing technology. These changes have been dictated by the changes in
Jan 1, 1994
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Control Of Ultra-Fine Particulates With Pulse Jet Collection SystemsBy William Gregg
Recent environmental and workplace safety legislation has Imposed more stringent limits on the amount and type of particulate emitted Into the air. In the past, the mass of particles contained In a vo
Jan 1, 1992
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Lead Smelting and Refining its Current Status and FutureBy Kazue Moriya
At the 1980 TMS-AIME world symposium, Dr. Davey mentioned that the traditional lead blast furnace is now being challenged by direct smelting processes. In the copper smelting field both the blast fur
Jan 1, 1990
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Prediction of Austenite Decomposition During Cooling of Low and Medium-Carbon Low-Alloy SteelsBy E. Anelli
Based on experimental continuous cooling transformation (CCT) diagrams, an artificial neural network has been trained to predict the amount of microsturctural constituents and hardness resulting from
Jan 1, 2003
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A Study on the Fire Refining of Crude Copper by Alkaline Carbonate FluxesThermodynamics and kinetics? of the removal of Va elements (As,Sb,Bi) from copper were investigated 1n the fire relining by alkaline carbonate fluxes such as Li 2co3 , Na 2CO3 and K2CO3. The distribut
Jan 1, 1987
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Cold Modelling Of Splashing Phenomena In Oxygen SteelmakingBy Shabnam Sabah, Geoffrey Brooks
In oxygen steelmaking, splashing and droplet formation play a key role in the kinetics of the process. Though splashing has been studied by previous investigators, there is only limited understanding
Jan 1, 2014
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Characterization of Mine Waste by QEM"SEM Automated Scanning Electron MicroscopyBy Susanne Pignolet-Brandom
Fourteen samples of crushed Duluth Complex rock were characterized by the QEM?SEM automated scanning electron microscope image analysis system to evaluate the application of the system to mining waste
Jan 1, 1989
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Effect of Test Temperature and Prior Straining on the Deformation Mode of Austenitic Stainless Steel during Tensile TestingBy S. Neogy, M. Gupta, D. Srivastava, V. Kain, S. Roychowdhury, R. C. Prasad, G. K. Dey
"Austenitic stainless steels are an important material of construction for Boiling Water Reactors (BWR). These stainless steels are amenable to strengthening by strain hardening. Various deformation m
Jan 1, 2011
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Conduction Electron Generation upon Oxygen Release of Indium Tin OxideBy N. Ono, H. Fujiwara, S. Otsuka-Yao-Matsuo, T. Omata
"The electrical conductivity and the oxygen release and uptake of sintered indium tin oxide (ITO) upon heating and cooling under the condition that P(O2)/P*=4.9X10-4 (P* = atmospheric pressure), :when
Jan 1, 2000