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The Zinc Pressure Leaching Process ApplicationsBy M. J. Collins
Direct pressure leaching of zinc sulphide concentrates was started? commercially in October 1980. Continuing research and development studies at Sherritt and feasibility studies for a number of client
Jan 1, 1990
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Combustion Enhancement of Copper Scrap Melting and Heating Using a New Generation Gas/Air/Oxygen Combustion TechnologyBy Thomas E. P. Wechsler
The limiting factor for most pyro-metallurgical processes in secondary cop- per melting is the time required to heat and melt the product. American Combustion's proprietary PYRETRON variable £uel
Jan 1, 1991
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An Electrochemical Study of the Oxidation of Arsenopyrite in Acidic MediaBy Z. M. Zheng
Cyclic voltammetry, potential step, and ac impedance techniques were applied to study the electrochemical reaction of arsenopyrite in chloride solutions. The relationship between anodic current densit
Jan 1, 1995
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Calcination Behavior of Sivrihisar Laterite Ores of TurkeyBy Saeid Pournaderi, Ahmet Geveci, Ender Keskinkilic, Yavuz A. Topkaya
"This study investigated calcination behavior of one of the Turkish laterite deposits, which was recently found in Sivrihisar region. Representative limonitic laterite samples (1.26% Ni) taken from Yu
Jan 1, 2011
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Improving Rechargeable Hydrogen Storage Capacity Of BCC Alloy By Eliminating Internal DefectsBy Toshiki Kabutomori
In fuel cell powered automobiles, hydrogen is required to be stored in materials that have a hydrogen storage density of over 4 mass%; further, these materials should be capable of supplying hydrogen
Jan 1, 2006
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Elaboration Of Iron Based Hydrogen Accumulating AlloysBy Vasil Kopaleishvili
The bainitic Fe-C-Si alloys with optimum content of retained austenite serve as ?containers? for storing of hydrogen. Both the vacancies of fcc lattice and the possibility of forming hydrides of silic
Jan 1, 2006
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Treatment of Nickel Ores in Rotary Kilns and Cyclone ReactorsBy Norbert Patzeh
The demand for nickel is growing and will continue to do so for the foreseeable, future. This will make the construction of new leaching and smelting plants necessary. This paper described a number of
Jan 1, 2004
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Sintering And Performance Of High Alumina Refractory With Zro₂ AdditionBy Min Chen, Lei Xu
Sintering behavior and performance of high alumina refractory based on the ternary subsystem MgAl2O4-CaAl4O7-CaAl12O19 were investigated using ZrO2 as an additive up to 8 wt.% by solid state reaction
Jan 1, 2015
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Heavy Mineral Provenance Studies in the Iditarod and Innoko Districts, Western AlaskaBy T. K. Bundtzen
Placer gold in the Iditarod and Innoko mining camps of western Alaska is derived from a suite of comagmatic, Late Cretaceous to Early Tertiary, alkali-calcic, meta-aluminous. volcanic-plutonic complex
Jan 1, 1987
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Kinetics Of Gaseous Reduction Of Manganese Ores (7c3fec85-29a0-4819-b161-9175c1f539e4)By Rodney J. Ishak
The reduction of Mn3O4 to MnO has been investigated in a thermobalance apparatus, The charge was composed of manganese ore (decomposed by heating/calcination or pre-reduction to mainly Mn3O4) and coke
Jan 1, 2003
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Concrete with Cementitious Steel Slag Composites and its ApplicationsBy Gaifeng Xue, Lijun Lu, Honghui Fang, Jiannyang Hwang
"Steel slag has been stockpiled in many steel mills due to its poor performance in various construction related applications. Free lime in steel slag has been considered as a major barrier for its uti
Jan 1, 2012
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Characterization Of Feldspar By Instrumental Analytical TechniquesBy Edwin Adoyi Ali, Zainab Shehu Aliyu, Adele Dzikwi Garkida, Muhammad Dauda
Feldspar from Matari, Nigeria was analyzed using SEM, XRD and XRF techniques for microstructural analysis, mineral phase analysis and chemical composition analysis respectively. Qualitative and quanti
Jan 1, 2015
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Phase Equilibrium Between Ni-S Melt And Slags Under Controlled Partial PressureBy Hector M. Henao
To provide thermodynamic data for converting nickel matte to liquid nickel at high temperature, an experimental study was conducted on the phase equilibrium between the Ni-S alloy and the FeOX-SiO2, F
Jan 1, 2002
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Chloride Capacity In FeO-Fe2O3-SiO2 Molten Slag At 1523 KBy Yu Yamashita
There have been increasing in melting recycled scraps in copper smelting processes, and thus growing interests in the chlorine behavior. In this study, chloride dissolution in FeO-Fe2O3-SiO2slag (SiO2
Jan 1, 2006
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Hydrothermal Conversion of Chalcopyrite Under Controlled E, and pHBy Joon H. Jang
At a selected pH, hydrothermal oxidation of chalcopyrite was carried out under controlled F+,, at elevated pressures and temperatures (172-200°C) by balancing the rate of oxygen injection against the
Jan 1, 1993
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Regularities of Cobalt and Nickel Distribution Between Smelting ProductsBy I. D. Reznik
Regularities of cobalt and nickel distribution between slag and matte, slag and metallic alloy on the base of concepts on exchange reaction equilibrium are considered. It is shown that the distributio
Jan 1, 1993
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Computational Software for the Casting Industry -- A Perspective on Current and Future Issues1By A. J. Paul, K. O. Yu
"Today, foundries are moving towards the use of models and design tools to gain a competitive advantage in producing castings of high desired quality. This leads to a growing alliance between foundrie
Jan 1, 1994
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Liquidus Temperatures of Ferro-Nickel Smelting SlagsBy Shengqi Chen
The reduction smelting of nickel laterites produces slag, consisting principally of the chemical components MgO, "FeO", SiO2, and A12O3, and ferro-nickel alloy. Despite the fact that the phase equilib
Jan 1, 2004
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The Physical Characteristics of Electrorefined Copper Starter Sheet MaterialBy Paul Laforest, Michael Moats, Daniel Majuste
The interaction of anode and electrolyte chemistry in copper electrorefining is complex. This is especially true with regard to the behavior of Group 15 elements (As, Sb, and Bi). To better understand
Mar 1, 2017
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Thermo-Calc of the Phase Diagram of Calcium Silicon (Ca-Si) SystemBy Shadia Ikhmayies
Thermo-Calc software was used to investigate the phase diagram of the calcium silicon (Ca–Si) system for the range of Si mass percent 0–100, and temperature range T = 200–1800 K. The melting points of
Mar 1, 2018