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A Historical Overview of the Cerro Matoso Operation 1980 to 2003By J. R. Kiji
The Cerro Matoso S.A. mine and smelter, in the Cordoba lowlands of northwestern Colombia, consist of a dedicated laterite nickel mine, ore blending, drying and an RKEF process to produce high-quality
Jan 1, 2004
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Control of the Powder Dispersion in Inductive Plasma by Using a Double Flow InjectorBy Christian Trassy, Pierre Proulx
"Inductive plasmas are now commonly used in material processing: spraying, powder synthesis, densification or spheroidization. An inductive discharge presents, in the coil region, recirculation eddies
Jan 1, 1999
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Improving Energy Efficiency in a Modern Aluminum Casting OperationBy Mark Osborne, Ray D. Peterson, C. Edward Eckert
"The theoretical melting energy requirement for a typical hypoeutectic aluminum-silicon alloy is approximately 520 BTU/lb. It has been demonstrated, however, that even a state of the art secondary pro
Jan 1, 2009
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Tin Recovery from Waste Tinplates (presented at the 1999 Annual Meeting)By Ilija Ilic
Recovery of tin from tinplate and production of good-quality detinned-plate for further processing in ironworks has been the subject of interest for many years. Tinplates are mostly used for productio
Jan 1, 2000
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Computational Fluid Dynamics: A Tool for the Materials TechnologyBy A. Dutta, B. Devulapalli, A. Mukhopadhyay, E. W. Grald
"Computational Fluid Dynamics (CFO) has matured over the past two decades as an analysis tool for conducting virtual experiments with significant time and cost savings. It complements and reduces phys
Jan 1, 2004
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A CFD Based Algorithm for Kinetics Analysis of the Reduction of Hematite Concentrate by H2 + CO Mixtures in a Drop Tube ReactorBy De-Qiu Fan, H. Y. Sohn, Y. Mohassab, M. Elzohiery
A novel flash ironmaking process is under development at the University of Utah. A computational fluid dynamics (CFD) approach, coupled with experimental results, was developed for the analysis of the
Mar 1, 2017
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A Procedure for Chromate Conversion Coating of Commercial Galvanized Steel to Olive Color at Normal TemperatureBy Ali Akbar Mottahedi
Chromate conversion coating is a process for making a complex layer at the surface of zinc galvanized steel which makes the metal more resistant to corrosion, especially at marine atmosphere, and incr
Jan 1, 2003
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Degradation of Cyanide Utilizing Facultative Anaerobic BacteriaBy Donna M. Noel
Bacterial strains have been cultivated from solids previously exposed to cyanide that will tolerate 300 ppm sodium cyanide under anaerobic conditions. In selected solid samples, these bacteria have be
Jan 1, 1991
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High-pressure Wet Oxidation of Sphalerite ConcentrateBy S. J. Gerdemann
The U.S. Bureau of Mines is studying the kinetics of wet oxidation of sphalerite concen- trate (ZnS) as a possible process for a gravity-pressurized reactor (GPR). At tempera- tures in excess of 200&a
Jan 1, 1993
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Physical Modeling of Three-Phase Mixing in a Counter-Current Reaction Launder (CCRL) Process for Metal RefiningBy Lloyd R. Nelson
Experimental results of three-phase mixing in a physical model of a CCRL for metals refining are presented. The system was operated above a critical lower liquid height-to- width ratio (H,/W) of unity
Jan 1, 1995
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Metal Cations in CO2 Assimilation and Conversion by PlantsBy Sergey Shabala
Green leaf tissues convert solar energy into the energy of chemical bonds of sugar molecules during the process of photosynthesis. The efficiency of this conversion can be much higher than efficiency
Jan 1, 2009
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CO2 Capture and Sequestration – Implications for the Metals IndustryBy Jim Sarvinis, Mark Berkley, David Clarry, Jason Berzansky
"Technologies developed to sequester CO2 or use CO2 for enhanced fossil fuel recovery are currently being utilized across the globe. Taxation regimes and CO2 credit trading are becoming drivers for a
Jan 1, 2008
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The Disposal of Arsenic from Metallurgical Processes: Its Status Regarding Ferric ArsenateBy G. B. Harris
Much has been written over the past decade concerning the disposal of arsenic from metallurgical processes. In Canada, there are proposed regulations which would classify arsenic in the Primary Group
Jan 1, 1993
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Corrosion Behavior of Differently Heat Treated Steels in CCS Environment with Supercritical CO2By Anja Pfennig, Axel Kranzmann, Phillip Zastrow
"Properties of pipe steels for CCS technology require resistance against the geothermal corrosive environment (heat, pressure, salinity of the aquifer, CO2-partial pressure). To predict the reliabilit
Jan 1, 2014
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Calcined Nanocrystaline Layered Double Hydroxides For The Removal Of Arsenate And ArseniteBy Yousef Mohassab, Manoranjan Misra, Monalisa Panda, Eman Wahbah
This work studies the removal of arsenic (V), arsenate, and arsenic (III), arsenite, from aqueous solution using calcined Quintinite-3T. The two adsorbents Quintinite-3T was prepared, calcined at diff
Jan 1, 2016
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Coal-Based Ironmaking via Melt Circulation"The theoretical basis of ideal smelting reduction using coal as reductant in a process employing closed loop forced-circulation of hot metal is outlined. In the proposed process, an extensive area of
Jan 1, 1988
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High Temperature Properties of Molten Nitrate Salt for Solar Thermal Energy Storage ApplicationBy Geoffrey Brooks, Mehedi Bin Mohammad, M. Akbar Rhamdhani
Molten alkali nitrates are used commercially as thermal storage fluids (HTF) for solar thermal electricity generation. Their range of operation is limited by the thermal stability and this limits the
Mar 1, 2017
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Process Metallurgy An Enabler Of Resouce Efficiency: Linking Product Design To Metallurgy In Product Centric RecyclingBy Markus Reuter, Antoinette van Schaik
In this paper the link between process metallurgy, classical minerals processing, product centric recycling and urban/landfill mining is discussed. The depth that has to be achieved in urban mining an
Jan 1, 2014
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Accelerating Life-Cycle Management Protocols for New Generation BatteriesBy Timothy W. Ellis, John A. Howes
The production of lead-acid batteries is defined by a closed-loop product life-cycle. Active material and grid alloys converge on an adaptable specification that improves both performance and recyclabil
Mar 1, 2017
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Using of Spent Foundry Sands for Production of Burned Ceramic Building Materials: Influence for EnvironmentBy Sylwia Zymankowska-Kumon, Rafal Danko, Józef Danko, Mariusz Holtzer
"Burning of ceramic materials is carried out at temperatures 900+ 1300°C, in dependence of the required functional properties. The Faculty of Foundry Engineering together with the Faculty of Material
Jan 1, 2013