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Technological Advances for Reducing Production Costs of Commodity MetalsBy Robert L. Stephens
"It can be argued that one of the most important property of any material is cost, since this property detennines the applications for which a material can be considered. Despite growing demand and pr
Jan 1, 2000
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Characterization Of Formulations With Ornamental Rock Waste And Clays To Produce Ceramic PaverBy Carlos Mauricio Fontes Vieira, Sergio Neves Monteiro, Thiago Samarão Motta
This work has as its objective to characterize ceramic bodies formulated with ornamental rock waste and two different clays to produce ceramic paver. Specimens were made by uniaxial press-molding at 2
Jan 1, 2015
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Use Of Solid Hematite To Fix Arsenic Contained In A Gas PhaseBy A. González
Arsenic is one of the main contaminants present in Chilean copper concentrates and its abatement represents a challenge for the process metallurgy, particularly under the strong environmental requirem
Jan 1, 2003
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A Minimum Pollution, Low Energy Process for the Recovery of Cobalt and Copper from Complex Sulphide MineralsBy Yotamu Stephen Rainford Hara
"The aim of our work is to investigate a low energy and clean route for the recovery of copper and cobalt from complex sulphide mineral concentrates. The mineral concentrates were roasted in air, in t
Jan 1, 2013
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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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Chloride Metallurgy - Process Technology DevelopmentBy Edgar Peek
"The two dominant metallurgical problems in treating most base metal sulphide concentrates in both the chloride and sulphate system are iron removal and sulphur elimination, respectively [1-3]. In thi
Jan 1, 2011
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Platinum-Group Elements in the Tonsina Ultramafic Complex, Southern AlaskaBy J. Y. Foley
Platinum-group elements (PGE) are preferentially associated with chromian spinels, including high-iron chromite, magnesian-chromian hercynite, and chromian magnetite in clinopyroxene-rich upper strati
Jan 1, 1987
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The Evolution of Cobalt–Nickel Separation and Purification Technologies: Fifty Years of Solvent Extraction and Ion ExchangeBy C. Kathryn Sole
The close proximity of cobalt and nickel on the Periodic Table and their frequent occurrence together in nature means that their separation in primary hydrometallurgical flowsheets is not only often n
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Decision-Making Software for the Incremental Improvement of Peirce-Smith ConvertersBy Alessandro Navarra, Joël P. T. Kapusta
"The converting cost modeling software introduced by Ng et al. in 2005 [1] has been extended to consider the reprocessing of reverts and copper scrap. The original model evaluated the operational cost
Jan 1, 2009
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Prediction of Minor-Element Behavior in Copper Smelting and Converting with Submerged Oxygen InjectionBy Hang Goo Kim
A computer simulation has been carried out to predict the distribution behavior of minor elements such as Pb. Zn, Bi, Sb and As in recently proposed copper smelting and converting processes with subme
Jan 1, 1991
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The Role Of Processes Modeling In Iron And Steelmaking (a6ebee5c-a553-4245-bef5-25709c990ad4)By Pinakin C. Chaubal
Today?s steel industry is in a vibrant and resurgent mode. This transformation has been in the making for some time now. Over the last few decades, the industry was steadily transforming itself into b
Jan 1, 2006
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Pure Oxygen Anodes™ for Low- or Zero-Carbon Energy Efficient Metal Oxide ReductionBy Adam Powell, Salvador Barriga, Matthew Earlam
"The inert anode is a key enabling technology for dramatic energy and emissions reduction in extractive metallurgy. In molten salts, the materials challenge is nearly insurmountable: the anode must co
Jan 1, 2014
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Copper Smelting In The 21st CenturyBy Nickolas J. Themelis
The role of copper in the economy will not diminish in the 21st century. Following the tenets of industrial ecology, production and use of copper must take into account both human needs and also how t
Jan 1, 1999
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Inco Roast Reduction Smelting of Nickel Concentrate (b825c9f0-0db2-4af9-bac2-26bb12b64f11)By C. Díaz
Roast-reduction smelting (RRS) of nickel concentrate, combined with flash smelting of copper concentrate, was one of the process options that Inco considered as a means of meeting its 1994 sulfur diox
Jan 1, 1993
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Biological Removal Of Arsenic From Tailings Pond Water At Canadian MineBy Tina Maniatis
Applied Biosciences has developed a biological technology for removal of arsenic, nitrate, selenium, and other metals from mining and industrial waste waters.The ABMet® technology was implemented at a
Jan 1, 2005
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Study on CaSO3.0.5H2O Typed Flue Gas Desulfurization Gypsum Used as Cement RetarderBy Zhendong Tao, Wei Huang, Zhongxi Yang, Hang Guo, Haoran Geng, Jingxiang Yao
"CaSO3.0.5H2O typed Flue Gas Desulfurization (FGD) gypsum is a by-product formed in flue gas desulfuration by double-cycle fluid bed method, its composition is different remarkably from that of gypsum
Jan 1, 2008
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Oxygen Flash Converting for Production of CopperBy G. S. Victorovich
Technical progress in primary smelting has changed the face of the copper industry in the years since the Second World War. Much of this change has resulted from a wide acceptance of flash smelting te
Jan 1, 1993
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Study on Cementing Material Making with Electrolytic Manganese ResidueBy Liyuan Chai, Qin Liu, Bing Peng, Jia Wang, Qiang Zhang
"Electrolytic Manganese Residue (EMR) was used as the main material to prepare cementing material activator for the utilization of the residue from electrolytic manganese dioxide (EMD) or electrolytic
Jan 1, 2012
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Shell Metal Extractant 529 - A New Selective Extractant for Copper and NickelBy A. J. van der Zeeuw
The use of SME 529 in the extraction of copper from acidic liquors and of copper and nickel from ammoniacal solutions, is illustrated with results of laboratory and bench scale mixer/settler experimen
Jan 1, 1976
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Blast Furnace Ironmaking: Process Alternatives and Carbon IntensityBy Jorge Gibson, P. Chris Pistorius, Megha Jampani
"The main reason for the significant carbon intensity of integrated steelmaking (approximately 1.8 tons of CO2 per ton of steel) is the use of carbon-based reductants in blast furnace ironmaking. Seve
Jan 1, 2014