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Production of Lithium-Ion Cathode Material for Automotive Batteries Using Melting Casting ProcessBy Wojciech Kasprzak, Guoxian Liang, Michel Gauthier, Mickael Dolle, Yulong Liu, Xueliang Sun, Hernando Villazon Amaris, Majid Talebi-Esfandarani, Pierre Sauriol, Thomas Bibienne, Gregory S. Patience, Delin Li, Steeve Rousselot
In the 1990s, LiFePO4 (LFP) was discovered as a cathode material for lithium ion batteries and was successfully used in the variety of devices such as power tools, E-bikes and grid accumulators. New c
Mar 1, 2018
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Roasting Reduction Study of Greek Nickeliferous LateritesBy Emmanuel N. Zevgolis
In the present work, a reduction roasting experimental study of Greek nickeliferous laterite samples with a gaseous reducing mixture ? CO:N2- is presented. The effect of parameters such as temperature
Jan 1, 2009
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Development Of New Copper Continuous ConverterBy Yasuo Ojima
A new copper continuous converting process was investigated to evaluate the possibility of its application in the commercial operation. The tests were performed both in the laboratory and in pilot pla
Jan 1, 2003
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Tin, Tantalum, and Niobium Recovery from Kougarok, Seward Peninsula, AlaskaBy J. L. Johnson
The U.S. Department of the Interior, Bureau of Mines, investigated recovery of concentrates containing tin, tantalum, and niobium from the Kougarok deposit on the Seward Peninsula, AK. To date, 25 mil
Jan 1, 1990
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A Thermochemical Study Of Different Options For Halogen Removal From Nonferrous Metal-Containing WastesBy J. Antrekowitsch
Keywords: residues, fluorides, chlorides, zinc, steel mill dust The recyclability of various nonferrous metal wastes often suffers from a relatively high fluorine and chlorine content. Both are ins
Jan 1, 2005
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Energy Saving in the Foundry Industry by Using the “Crimson” Single Shot Up-Casting ProcessBy Mark Jolly
"Instead of using the traditional batch casting process, the CRIMSON [1] (Constrained Rapid Induction Melting Single Shot Up-Casting) method employs a high-powered furnace to melt just enough metal to
Jan 1, 2010
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Ferroelectric-Enhanced Photocatalysis with TiO2/BiFeO3By Yiling Zhang, Paul A. Salvador, Gregory S. Rohrer
"Photocatalysis utilizes solar energy to produce hydrogen by splitting H2O. When a thin film of photocatalyst TiO2 is supported on a ferroelectric BiFeO3 substrate (band gap ~2.5 eV), the TiO2/BiFeO3
Jan 1, 2014
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Custom Fiberglass Reinforced Plastic Piping (FRP) Applications in Mineral ProcessingBy J. David Chapman
There are a variety of choices of materials for mineral extraction processing. Traditionally, end users have used metallic piping for fluid handling and little is known about the advantages (or limita
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Mathematical Modeling of Ion Exchange Columns with Emphasis on Hydrous Crystalline Silico-Titanates, Molecular Sieves and Non Ideal Solutions (fef025ea-7007-41d7-9897-1882c90a0444)By D. Gu, R. G. Anthony, C. V. Philip, M. E. Huckman
"In this paper, we review the equations needed to construct an ion exchange column model. These models contain three major components: 1) a differential material balance around the column, 2) a differ
Jan 1, 1996
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Size Prediction for Nanoscale Particles Formed During Laser AblationBy A. Kar, J. Mazumder
"Laser ablation is a process that can be used to synthesize novel nanoscale particles as well as to deposit thin films of various materials. Usually, nanoscale particles and thin films are formed at r
Jan 1, 1994
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Process Design and Optimization for High-Temperature Vacuum CarburizingBy X. Jay Gao
A fast high-temperature carburizing process integrated with materials design and optimization via a systems design approach was developed to significantly reduce process cycle time. Process experimen
Jan 1, 2003
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Zirconium Chlorination Behavior: A Literature ReviewBy Donald Voit
"The reaction between zirconia/zircon, coke, and chlorine involves a slow reaction between the coke and the zirconia/zircon and a fast reaction with chlorine. Because of the fast chlorine reaction, th
Jan 1, 2011
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Thermodynamic Properties of Equilibrium Phases in the Ag-Cu-S System Below 500 K: Experimental StudyBy Fiseha Tesfaye, Pekka Taskinen
"Thermodynamics of the equilibrium phase assemblage Ago_9Cul.lS-Cu2-xS-CuS have been studied by an EMF -method. The ternary phase was synthesized from the pure Cu2S and Ag2S in vacuum furnace at high-
Jan 1, 2014
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Two-Phase Predictive Finite-Element Flow Model for Semi-Solid SlurriesBy Frederic Pineau
Semisolid metal alloys have a special microstructure of globular grains suspended in a liquid metal matrix. This particular physical state of the matter can be exploited to produce near-net- shape par
Jan 1, 2001
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Reaction Sequences in Sulphide Particle OxidationBy E. J. Peuraniemi
Oxidation of chalcopyrite concentrate and two low-iron copper mattes were studied using a laboratory scale laminar-flow furnace simulating the phenomena taking place in different zones of the reaction
Jan 1, 2000
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New Model for Assessment of Metal Production and Recycling SystemBy Kiyoshi Shibata
A new assessment model has been proposed for metal production and its recycling system. The model consists of three processes, smelting of ore, cascading and upgrading of metal scrap. The present appr
Jan 1, 1998
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Characterization of Pyrite from Coal SourcesBy M. C. Esposito
Seven pyrite samples purified from coal sources and one ore source pyrite (for comparative purposes) have been characterized by chemical and mineralogical analyses, inherent floatability, apparent spe
Jan 1, 1987
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Characterization of Amorphous Vacuum-Evaporated SnO2 Thin FilmsBy Shadia J. Ikhmayies
"Tin oxide (SnU2) thin films of thicknesses in the range 100-600 nm were prepared on glass substrates by vacuum evaporation at ambient temperature. The films were characterized by transmittance measur
Jan 1, 2012
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Economic and Environmental Trade-Offs for Li-Based Battery RecyclingBy Xue Wang, Callie Babbitt, Chelsea Bailey, Matt Ganter, Gabrielle Gaustad, Brian Landi
"Current trends, motivated by fossil fuel dependence and unprecedented greenhouse gas (GHG) emissions, show lithium-ion batteries (LIBs) emerging as a competitive energy storage technology due to high
Jan 1, 2012
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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