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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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Tiiermodynamic Study of Oxygen-Smelting of Copper or Nickel MatteBy Kimio Itagaki
"As a contribution to understand the smelting of copper or nickel matte by blowing oxygen or oxygen-enriched air, the phase equilibrium and the distribution of minor elements between the iron-silicate
Jan 1, 2000
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Corrosion Mechanism of Haynes 230 Alloy with Ni Crucible in MgCl₂–KClBy Ramana G. Reddy, Yuxiang Peng
The long-term corrosion behavior of Haynes 230 (H230) alloy in MgCl2–KCl eutectic salt was evaluated at 1273 K for 500 h in Ni crucible in argon gas. The results showed H230 alloy has good corrosion r
Mar 1, 2017
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Reaction Mechanisms and Product Morphologies on Gaseous Reduction of Metal Compounds -Extractive Metallurgy Meets Materials ScienceBy Peter C. Hayes
"The high temperature reduction of solids through the use of reactive gas atmospheres has application in a wide range of industrially important processes. Whilst significant advances have been made in
Jan 1, 2013
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Thermodynamics Study on Phosphorus Distribution Between 2CaO·SiO2-3CaO·P2O5 Solid Solution and Liquid SlagBy Zhang-Guang Gao, Ming-Mei Zhu, Rui-Rui Zhao, Chao Jiang
This paper focuses on the CaO-SiO2-FeO-MgO-MnO-P2O5 slag system that represents the major components of dephosphorization slag in BOF. Phosphorus distribution between 2CaOSiO2-3CaOP2O5 Solid Solution
Mar 1, 2017
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Jarosite Precipitation from Iron - Nickel - Cobalt Sulfate SolutionsBy P. Maraboutis
Iron removal by precipitation as jarosite from Fe-Ni-Co sulfate solutions, (synthetic or real, resulting from laterites leaching) has been investigated. Precipitation was carried out at 95 C, and at a
Jan 1, 1988
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Al Control In High Titanium Ferro With Low OxygenBy Guan-Yong SHI, Cong Wang, Zhi-he DOU, Ting-an ZHANG, Shi-gang FAN
Based on the pre-works, this paper proposed a new short stage process of the intensify aluminothermy reduction by the stage to prepare high titanium ferroalloy with low O and Al contents. We investiga
Jan 1, 2015
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The Oxyreducer Technology - A New Technology to Recycle Metal Containing WasteBy Adrien Antenen, Didier Villette
CITRON has developed a new process for the recycling of hydroxide sludge, household batteries, catalysts, automobile shredding residues, grinding sludge and other metal containing organic and inorgani
Jan 1, 2000
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Preparing Ferrosilicon Alloy with Copper SlagBy Ruirui Wei, Mingrui Yang, Xuewei Lv
Copper slag is a by-product obtained during smelting of copper from copper ores. In China, for one ton of metal production about 2.2 tons of copper slag was generated, and approximately 15 million ton
Mar 1, 2017
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Zero Liquid Discharge Industrial Wastewater Treatment: Case Studies From 1976 To 1996By J. Bostjancic
As wastewater discharge regulations become more stringent, power plants, manufacturing plants and other industrial sites are looking for ways to reduce makeup water requirements and to recycle and reu
Jan 1, 1996
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Characteristics of Stamp Charging Coke and Top Charging CokeBy Xiao Hong, Zhang Wenqiang, Gao Bing
The characteristics of top charging coke (coke 1) and stamp charging coke (coke2) were investigated. The weight loss ratios of two kinds of cokes with and without alkalis were measured after reacting
Mar 1, 2017
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Physical Model Studies of Some Metallurgical ProcessesBy John J. J. Chen, Barry J. Welch
"As in many industrial processes, the detailed mechanisms involved must first be understood before being able to redesign, or to carry out improvements or optimisation of the process and equipment per
Jan 1, 1994
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Metal Separations Using Aqueous Biphasic Partitioning Systems*By J. Gartelmann, B. Zaslavsky, Y. Vojta, D. J. Chaiko, W. Mego, A. N. Rollins
"Aqueous biphasic extraction (ABE) processes offer the potential for low-cost, highly selective separations. This countercurrent extraction technique involves selective partitioning of either dissolve
Jan 1, 1996
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Australian Hydrometallurgy Research and DevelopmentBy James Vaughan
Australia is a major miner of ore that requires hydrometallurgical processing. According to the 2016 US Geological Survey Minerals Commodities Summaries, the country is 1st for aluminium (bauxite) and
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Physical Chemistry of Copper and Manganese Co-Recovery from Copper and Manganese Ores and By-ProductsProposed by outstanding electrochemist and electrometallurgist Prof. Raphael Agladze (191 1- 1989), process of copper and manganese co-electrowinning was enhanced to the pre- electrowinning stages: lo
Jan 1, 1997
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Kinetics Of Biological Ferrous Iron OxidationBy Paul L. Wichlacz
A mathematical model of growth and ferrous iron oxidation for attached bacteria was applied to rotating biological contactor (RBC) units treating acidic mine drainage. The model describes attached bac
Jan 1, 1985
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The Potential of Air-Sparged Hydrocyclone Flotation in Environmental TechnologyBy J. D. Miller
Air-sparged hydrocyclone (ASH) flotation is a high-capacity flotation technology originally developed in the Department of Metallurgical Engineering at the University of Utah for processing mineral re
Jan 1, 1993
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Biooxidation of Copper SulfidesBy Richard W. Lawrence
Leaching of copper from sulfide minerals using biooxidation offers a potential route for copper recovery. Oxidation of . sulfide sulfur can proceed either; to sulfate or to elemental sulfur depending
Jan 1, 1996
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Solution Chemistry and Reactor Modelling of the PAL Process: Successes and ChallengesBy Vladimiros G. Papangelakis
During the past five years, chemical modelling work at the University of Toronto has elucidated the role of soluble magnesium on the autoclave acidity and has demonstrated why feeds rich in magnesium,
Jan 1, 2004
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Recovery of Metals and Nonmetals from Waste Printed Circuit Boards (PCBs) by Physical Recycling TechniquesBy Muammer Kaya
This paper reviews the existing and state of art knowledge for electronic waste (e-waste) recycling. Electrical/electronic equipments (EEEs) which are unwanted, broken or discarded by their original u
Mar 1, 2017