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Pyrometallurgical Reactors -Closers Of The Recycling Material Cycle-(Invited) (04bb971c-1409-4548-9b92-07c913333add)Pyrometallurgical reactors constitute a key processing component in the total primary and secondary resource cycle, being involved both in primary smelting, converting and extraction, as well as the r
Jan 1, 2003
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Preparation of Lead Zirconate Titanate through a Spark Plasma Sintering TechniqueBy Kazuyuki Kakegawa
"Sintered body of lead zirconate titanate (PZT) was prepared through the spark plasma sintering (SPS) technique. When the mixture of raw materials was calcined at 800°C and sintered at 900°C for 10 mi
Jan 1, 2000
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HCI Leaching and Acid Regeneration using MgCl2 Brines and Molten Salt HydratesBy Boyd Davis, Vladimiros Papangelakis, Joshua LaMarre, Jan de Bakker
"HCl leaching using molten salt hydrates has the potential to improve the extraction of nickel from laterite ores. However, as in other HCl leaching applications, recovery of HCl is key to process eco
Jan 1, 2011
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Characterization Of Physico-Chemical Changes During The Alkali Roasting Of Niobium And Tantalum OxidesBy Sergio Sanchez-Segado, Yuan Zhang, Animesh Jha, Ahmad Fahmi Ruzaidi
Niobium and tantalum are considered critical materials because the increasing demand in the energy sector which is reliant on limited abundance of these two metals in minerals. Traditionally, niobium
Jan 1, 2015
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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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V-AI Alloys by Aluminothermic Reduction of V2OSBy Carlos A. Nunes
V-AI alloys have been used commercially to produce pure vanadium by Electron Beam Melting (EBM), as well as to obtain Ti-based alloys (ex. Ti-6AI-4V). The aluminothermic reduction of vanadium pentoxid
Jan 1, 1996
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The Precious Art Of Metals Recycling (a425fcea-bb8a-46b9-a9d1-68f963472ddc)By Francis Vanbellen
Umicore Precious Metals Refining operates an integrated precious metals smelting and refining plant in Hoboken, Belgium. Once a smelter and refiner of complex concentrates, the plant today?s feed cons
Jan 1, 2006
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The Precious Art Of Metals Recycling (dc906834-81d8-4311-b6e1-1242af3ca2dc)By Francis Vanbellen
Umicore Precious Metals Refining operates an integrated precious metals smelting and refining plant in Hoboken, Belgium. Once a smelter and refiner of complex concentrates, the plant today?s feed cons
Jan 1, 2006
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The Precious Art Of Metals Recycling (990cac2a-bc56-4c4e-80d7-a92da6bda65f)By Francis Vanbellen
Umicore Precious Metals Refining operates an integrated precious metals smelting and refining plant in Hoboken, Belgium. Once a smelter and refiner of complex concentrates, the plant today?s feed cons
Jan 1, 2006
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The Precious Art of Metals Recycling (b199152b-6922-4627-9158-e5f7ecb56156)By Francis Vanbellen
Umicore Precious Metals Refining operates an integrated precious metals smelting and refining plant in Hoboken, Belgium. Once a smelter and refiner of complex concentrates, the plant today?s feed cons
Jan 1, 2006
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The Precious Art Of Metals Recycling (073d6d60-4a8c-42dd-aa01-6297c4d989f4)By Francis Vanbellen
Umicore Precious Metals Refining operates an integrated precious metals smelting and refining plant in Hoboken, Belgium. Once a smelter and refiner of complex concentrates, the plant today?s feed cons
Jan 1, 2006
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The Precious Art Of Metals Recycling (680962ca-82c0-4846-a6e3-9206f167e904)By Francis Vanbellen
Umicore Precious Metals Refining operates an integrated precious metals smelting and refining plant in Hoboken, Belgium. Once a smelter and refiner of complex concentrates, the plant today?s feed cons
Jan 1, 2006
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The Precious Art Of Metals Recycling (e2e54745-e169-4cce-ae5a-a04611938c24)By Francis Vanbellen
Umicore Precious Metals Refining operates an integrated precious metals smelting and refining plant in Hoboken, Belgium. Once a smelter and refiner of complex concentrates, the plant today?s feed cons
Jan 1, 2006
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The Precious Art Of Metals Recycling (3ca690f9-a2c1-4159-840f-0955d8282556)By Francis Vanbellen
Umicore Precious Metals Refining operates an integrated precious metals smelting and refining plant in Hoboken, Belgium. Once a smelter and refiner of complex concentrates, the plant today?s feed cons
Jan 1, 2006
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Pb–Ca–Sn Anode Potential as a Function of Cobalt, Iron and Manganese in Synthetic Sulfuric Acid ElectrolytesBy C. E. Abbey
Cobalt, iron and manganese play various roles in copper electrowinning using lead–calcium–tin alloyed anodes. Cobalt catalyzes electrochemical water decomposition resulting in lower anode potential an
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Lightweight Structural Concrete Incorporating Volcanic Materials for Sustainable ConstructionBy Khandaker M. Anwar Hossain
This paper presents the development of lightweight concrete (LWC) incorporating pumice aggregate and volcanic ash (VA) based ASTM Type I blended cement (PVAC). Fresh and mechanical properties of LWC m
Jan 1, 2010
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The Use Of Molecular Mechanics In The Design Of Metal Ion Sequestering AgentsBy Benjamin P. Hay
Complexation of a metal ion to a ligand often results in structural changes that introduce steric strain within the ligand. A design criterior:1 for ligands that will complex metal ions more strongly
Jan 1, 1999
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Top Submerged Lancing for Recovery of Zinc From ISF SlagBy M. Waladan
The top submerged lancing Sirosmelt system has been developed through laborator.y scale testwork and pilot plant trials for recovery of zinc from ISF slag. The effects of the process variables of gas
Jan 1, 1990
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Gold Recovery From Organic Solvents Using Galvanic StrippingBy C. Flores
A novel process using solid metals for the direct reduction of more noble metal ions from solvent extraction organics has been developed. Base metals recovery has been the principal focus of investiga
Jan 1, 1995
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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