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Advanced Non-Ferrous Scrap MelterBy J. S. Becker
Technology developed and first implemented in the United Kingdom enables very low grade aluminum scraps containing oils, organics, plastics and ferrous metals to be directly charged, without pretreatm
Jan 1, 1997
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Calciothermic Reduction and Electrolysis of Sulfides in CaCl2 MeltBy O. Ryosuke Suzuki
A new metallurgical process via sulfide is proposed: a sulfide is produced at a high temperature from its metallic oxide using gaseous CS2, and this sulfide is electrochemically reduced to its metalli
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Theoretical Modeling of the Oxidation of Carbon/Carbon CompositesBy Feng Gao
A general unsteady- state model, based on a cracked substrate, has been developed to account for reaction and diffusion within porous substrate during oxidation of Carbon Fiber Reinforced Carbon matri
Jan 1, 1993
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High Temperature Treatment Of Contaminated SolidsBy Guohui Zheng
The ever increasing quantities of solid wastes generated by various industries are at the source of the growing need for proper waste disposal methods. Thermal treatment of combustible wastes is a pro
Jan 1, 1996
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Activity Measurements of Several Molten Sulfide SystemsBy Akira Yazawa, Kazuo Koike, Mitsuhisa Hino
"The vapor pressures of MS (PbS, SnS and Sb2S3) in the molten Cu2S-MS, FeS-MS pseudo-binary and Cu2S-FeS-MS ternary systems were measured by means of a transportation method in the temperature range o
Jan 1, 2000
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Effects of Ca Addition on the Thermodynamic Properties of P and B in Molten Silicon Alloys (Invited)By Kazuki Morita
A new route to produce solar grade silicon (SOG-Si 6N) from metallurgical grade (MG-Si 98%) has been developed in Japan, which may satisfy the increasing demand for solar cells in the near future. Sin
Jan 1, 2003
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CO2 Emission Reduction through Innovative Molten Salt Electrolysis Technologies Using Inert AnodesBy Huayi Yin, Wang. Dihua, Wei Xiao, Xuhui Mao, Diyong Tang
"The world production of crude steel reached 1.55 billion tons in 2012,which generated ~2.5 billion tons of CO2. Electrochemical metallurgy especially through high temperature molten salt electrolysis
Jan 1, 2014
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Quantitative Characterization of Mineralogical Texture by Image AnalysisBy R. P. King
The central idea presented in this paper is straight forward. Some fairly obscure mathematical techniques are presented from the fields of integral geometry and stereology and these techniques are sho
Jan 1, 1991
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Hydrothermal Modification of Phosphogypsum to Improve Subsequent Recovery of Rare EarthsBy V. Yahorava
Mintek has developed a non-destructive Resin-in-Leach method for the recovery of Rare Earth Elements (REE) from phosphogypsum (PG) waste dumps. However, PG from different sources was found to be highl
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Determination of a Splashing Threshold for Impacting Metal Droplets using High Speed Video ImagingBy Joachim Ulrich
The spreading and splashing behaviour of single tin, lead, copper, aluminium and steel droplets impacting on a solid surface were experimentally examined. The droplet impact was observed using a high
Jan 1, 1999
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Kinetics of Dehydration of FeSO4.7H2O under Different AtmospheresBy N. Kanari
The kinetics of oxychlorination of MgO by Cl2+O2 was studied in the temperature range of 850 °C - 1025 °C, using thermogravimetric analysis. The effects of C12/02 ratio, gas velocity, temperature and
Jan 1, 1999
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Lead and Zinc Mineralization at Story Creek, Colville Mining District, AlaskaBy C. A. Summers
The U.S. Bureau of Mines applied process mineralogy to investigate a lead and zinc deposit located near Story Creek, Colville Mining District, Alaska. Mineralization is hosted by the Kayak Shale in ve
Jan 1, 1991
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Processing Unpretreated Dirty Aluminum Waste In An Environmentally Friendly FurnaceBy J. S. Becker
Technology developed and first implemented in the United Kingdom enables very low grade aluminum scraps containing oils, organics, plastics and ferrous metals to be directly charged, without pretreatm
Jan 1, 1996
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Kinetics of Carbochlorination of Chromium (III) OxideBy N. Kanari
Kinetics of the carbochlorination of Cr2O3 has been studied with C12+CO gas mixtures between 500 °C to 900 °C using thermogravimetric analysis. The apparent activation energy is about 100 kJ/mol. Math
Jan 1, 1998
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Ecologically Safe Technology For Extraction Of Nonferrous Metals From Sulfide Raw Materials By Means Of Bacterial LeachingBy Olga Slavkina
A new technology of bacterial leaching by means of the Thiobacillus ferrooxidance bacteria is proposed. The equations of reactions that describe of the first and the second stage of bacterial leaching
Jan 1, 2003
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Evaluation of Treatment of Bulk Mercury and High Mercury Surrogate WasteBy Mary Cunningham
The EPA and DOE have collaborated on a series of studies to evaluate the effectiveness of treatment technologies at stabilizing bulk elemental mercury and wastes containing high concentrations (i.e.,
Jan 1, 2003
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Flow Visualization and Temperature Measurements Close to the Arc Attachment Zone of a Laboratory Scale DC Arc Furnace for Slag CleaningBy Adrian C. Deneys, David G. C. Robertson
"Fluid flow phenomena on the surface of a molten slag have been documented using video photography in a laboratory scale D.C. arc furnace. The flow on the surface of the slag appeared to be electromag
Jan 1, 1999
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Operation of the MCLE (Matte Chlorine Leach Electrowinning) Plant for Nickel Refining at Sumitomo Metal Mining Co., Ltd.By Suswnu Makino
Sumitomo Metal Mining developed a new nickel refining process ( Matte Chlorine Leach Electrowinning process) based on chlorine leach and electrowinning technologies. After the pilot plant study, the c
Jan 1, 1996
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Reduction of Single Zinc Calcine PelletsBy E. M. Weenink
A proposed alternative to the conventional zinc extraction processes is the flash reduction of zinc calcines. As part of an overall study of this process, the kinetics of single zinc oxide pellets wer
Jan 1, 1992
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Precipitation of Hematite and Recovery of Hydrochloric Acid from Concentrated Iron Chloride Solutions by a Novel Hydrolytic Decomposition ProcessBy L. Becze, S. J. Hock, G. P. Demopoulos
"Regeneration of HCl from chloride solutions is commercially practiced by high temperature (800-900 °C) pyrohydrolysis associated with high energy consumption and capital cost. As an alternative to py
Jan 1, 2011