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Imprinted Resin—The 21st Century AdsorbentBy Sue Ritz
Gold extraction has relied on coconut carbon in adsorption circuits for several decades. IXOS®, invented by 6th Wave Innovations of Salt Lake City, Utah, is a new type of adsorbent that exceeds the se
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Processing of Spent Catalysts by Selective ChlorinationBy I. Gaballah
Spent hydrorefining catalysts may contain 4 to 6 % of COO and/or NiO, 8 to 16 % of Moo3 and up to 10 % V205 generally supported by alumina. Raw samples are roasted in order to eliminate carbon, sulfu
Jan 1, 1993
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The Gas Compositions Calculations on the System of FeS-H2O at Elevated TemperatureBy Guo Xian Jian
In this paper, the gas composition calculations on the FeS-H20 system at elevated temperature were performed. The results show that the gas constituents are H20, S02, H2S, Sj, H2, and O2 and the order
Jan 1, 1996
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Recovery Of Cobalt And Tungsten From Scrap Carbide Pieces Through A Hydrometallurgic RouteBy S. N. Ashrafizadeh
Nowadays, hard carbides have found various industrial application in the manufacture of cutting and drilling tools as well as metal forming devices. About 60% of the world tungsten production is consu
Jan 1, 2003
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Reduction Behavior of Pellets Balled with BentoniteBy Yuan-bo Zhang, Gui-hong Han, Yan-fang Huang, Tao Jiang, Guang-hui Li
"Under isothermal conditions, the reduction behavior of oxidized pellets balled with bentonite was investigated with CO-CO2gas mixers in the temperature range from 900°C to 1100°C. The whole reduction
Jan 1, 2013
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Study on Swelling Behavior of Iron Ore Pellets in Direct Reduction with Coal GasBy Zhucheng Huang, Zhikai Liang, Lingyun Yi, Tao Jiang
"In this study, reduction of iron ore pellets was carried out at 800-950°C by simulating the atmosphere of typical coal gasification gas. The effects of temperature, gas composition and reduction degr
Jan 1, 2013
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Hydrometallurgical Extraction of Lead in Brine Solution from a TSL Processed Zinc Plant ResidueBy R. Rajiv Srivastava
Brine leaching of a TSL processed zinc-plant residue (ZPR), containing 83.3% anglesite, has been investigated for lead recovery. A prior treatment of ZPR in acid solution did not show any significant
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Experimental Study On Semi-Dry Flue Gas Desulfurization Ash Used In Steel Slag Composite MaterialBy Lijun Lu, Honghui Fang
This article carried out the experimental study on using desulfurization ash in steel slag composite material. This was done by investigating the desulfurization ash content in formula one and formula
Jan 1, 2015
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Interfacial Characteristics of Squeeze-Cast Sic-Reinforced AZ91D Magnesium-Based CompositesBy Graham J. C. Carpenter, Marc Charest, Jason Lo
"The method of producing magnesium-based composites with silicon carbide (SiC) particulates embedded in the matrix of magnesium AZ9I D alloy by the squeeze-casting technique are described. This method
Jan 1, 1996
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Reduction Rate of Chromite Ore by Fe-C-Si MeltsBy Takamitsu Nakasuga, Haiping Sun, Kyushu University, Katsumi Mori
"The kinetic behavior of reduction of chromite ore by liquid iron containing carbon and silicon has been investigated under various experimental conditions to clarify the reduction mechanism. It was f
Jan 1, 2000
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Pyrolysis, Stable-Carbon Isotope, and Major-and Trace-Element Analyses of Carlin-Type Gold Deposits, Northcentral NevadaBy Walter E. Dean
Twenty six samples of carbonaceous gold ores and associated rocks from outcrop and mine localities in northcentral Nevada were analyzed for concentrations of major. minor, and trace elements, total su
Jan 1, 1987
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Production and Recycle of DustBy W. G. Davenport
The offgas from flash furnaces inadvertently contains dust. The dust contains 25 to 30% Cu so it must be treated for Cu recovery. This is almost always done by recycling it back through the flash furn
Jan 1, 2001
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Copper Electrowinning at INCO's Copper RefineryBy P. M. Tyroler
Inco operates a hydrometallurgical plant to treat the residue from the pressure carbonylation process. The main constituent in the residue is cop¬per. The residue is leached under pressure in an acid
Jan 1, 1987
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Dezincing of Galvanized Steel by Sulfuric Acid LeachingBy J. Grogan
Leaching of galvanized steel coatings allows the steel substrate to be used as a zinc-free scrap source to steel and iron furnaces. In this study the behaviors of sulfuric acid leaching solutions are
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Recovery of Copper Nanoparticles from AMD by Cementation with Iron and SDSBy G. Granata
In this work, we studied the recovery of copper from AMD by cementation with iron powder. To control the size of copper particles within the nanoscale range, we tested the use of the anionic surfactan
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Sintering Process of Chromite ConcentrateBy Donghai Li, Cheng Pan, Pan Chen, Xuewei Lv, Mei Liu
"Chromite concentrate after beneficiation can not be directly used in the electric furnace. Therefore sintering is one of the effective way to agglomeration, by which the chromite concentrate can be u
Jan 1, 2013
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Cluster Synthesis, Direct Ordering, and Alignment of Rare-Earth Transition-Metal NanomagnetsBy B. Balamurugan, D. J. Sellmyer, J. E. Shield, G. C. Hadjipanayis, Damien Le Ror, R. Skomski
"Rare-earth transition-metal (R-TM) alloys show superior permanent magnetic properties in the bulk, but the synthesis and application ofR-TM nanoparticles remains a challenge due to the requirement of
Jan 1, 2012
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Sulfur Deposition Impact on Surface Morphology of Fly Ash-Based Adsorbent for Mercury RemovalBy Wei Gao, Qing-cai Liu, Cun-fang Lu, Huimin Zheng, Jian Yang, Chun-ling Yao
"Mercury in flue gas of coal-fired plants was concerned as another serious pollution when sulfur dioxide pollution was controlled now. The adsorbent made from fly ash by thermal precipitation sulfur t
Jan 1, 2011
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Fundamental Study Of High Al₂O₃ Sinter Softening And Melting BehaviorBy Run-boWang, Fan-yi Meng, Jian-Liang Zhang, ZheWang
To elucidate the influence of high Al2O3 content on sinter softening and melting behavior, heating-up reduction test under load was carried out. In addition, microstructure study of sinter bed structu
Jan 1, 2015
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Oxidation Of Copper At Different TemperaturesBy Gabriel Plascencia
Copper was oxidized in the temperature range from 300 to 1000 °C under different pressures of oxygen, In the range from 300 to 500 °C, copper oxidizes following the logarithmic rate law; while in the
Jan 1, 2003