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Rapid Solidification of Alloy PowdersBy Carlos G. Levi
"The principles involved in the rapid solidification of supercooled metal droplets and existing numerical models are reviewed. The limitations of these models for studying alloy solidification are dis
Jan 1, 1986
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Pressure Acid Leaching of Zinc and Copper Concentrates by DynatecBy M. J. Collins
Pressure leaching of zinc sulphide concentrates has been practiced commercially for nearly two decades. The process, which includes direct leaching of concentrate with spent electrolyte in an autoclav
Jan 1, 2000
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Leaching Of Petroleum Catalysts With Cyanide For Palladium RecoveryBy P. L. Sibrell
The U.S. Bureau of Mines has tested cyanide leaching for recovery of palladium (Pd) from spent petroleum processing catalysts. Three different catalyst samples were supplied by a spent-catalyst proce
Jan 1, 1995
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Upgrading Scrap Automotive Aluminum Alloys With The Impulse Atomization And Quench TechniqueBy K. Olsen
As aluminum alloy usage in automobiles grows, there are increasing demands on recycling processes and facilities to deal with mixed alloy automotive aluminum scrap. These processes and facilities stri
Jan 1, 1995
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Removal FE (Iii) From Dilute Solutions Containing Zn (Ii) by Ion Flotation TechniquesBy Martín Reyes
Iron concentration by ion flotation techniques, from sulfate solutions in presence of zinc was studied in a laboratory flotation column by continuous mode using a synthesized sand shell plate sparger,
Jan 1, 2009
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Calcium Oxide As A Reagent For The Capture Of Arsenic Emissions During The Roasting Of Enargite (CU3AsS4)By B. S. Terry
Experiments have been conducted to assess the feasibility of capturing bearing emissions arsenic with CaO during the roasting of enargite (Cu3AsS4). Enargite/CaO mixtures have been heat treated in air
Jan 1, 1994
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Reduction of Manganese Ore Pellets in a Methane-Containing AtmosphereBy Richard Elliott
Current methods for producing low-carbon manganese alloying materials for the steel industry are energy intensive and costly. To enable wider implementation of high Mn steel alloys, a novel solid-stat
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Recycling of Mobile Phone Batteries Using the Ausmelt Catalytic Waste ConverterBy J. Fogarty, J. Sofra
The mobile telecommunications sector is one of the fastest growing industries worldwide. However, increasingly stringent environmental regulations are placing pressure on manufacturers to accept respo
Jan 1, 2000
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Activity Measurement Of The Constituents In Molten Sn-Ag-In And Sn-Zn-Mg . Ternary Lead Free Solder Alloys By Mass SpectrometryBy Takahiro Miki
Soldering material widely used is Sn-Pb alloy, which have low melting point and excellent electrical, strength properties and wettability. However, Pb is one of the toxic elements, which is undesirabl
Jan 1, 2003
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Lead Sulfate Scale in a Copper Smelter Acid PlantBy J. M. Rapkoch
In late October 1996, an acid plant at a major U.S. copper smelter was faced with unexpected and rapidly increasing pressure drop across the gas cooling tower in the acid plant, indicating a build-up
Jan 1, 2000
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Thermodynamic Study of the Equilibrium Distribution of Platinum Group Metals Between Slag and Molten Metals and Slag and Copper MatteBy Katsunori Yamaguchi
Secondary materials, that contain relatively high concentrations of platinum group metals, (PGMs) are treated in copper smelting process. The PGMs lost in the slag is increasing with increasing quanti
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Nanostructured Laser Melted Binary AlloysBy S. M. Copley, M. Yankova, E. Y. Yankov, J. A. Todd
"Nanophased coupled growth structures, with spacings of -10 nm, have been observed in banded microstructures produced by laser melting hypoeutectic Ag-Cu alloys. These coupled growth structures compri
Jan 1, 1994
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Synthesis of Titanium Dioxide by Microwave Solid State Method and its Photocatalytic PropertyBy Hongbo Zhu, Kun Yang, Jingyan Jia, Jinhui Peng, Libo Zhang, Yi Xia
"Titanium dioxide is broadly considered as the most potential useful photocatalytic material. In this work, titanium dioxide was synthetized by microwave solid-state method and characterized by thermo
Jan 1, 2014
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Vibration Damping of High-Chromium Ferromagnetic SteelBy B. M. Satish
The aim of the present work is to study the effect of annealing on the vibration damping capacity of high-chromium (16%) ferromagnetic steel. The alloys were prepared from raw materials of 99.9% purit
Jan 1, 2009
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Recent Advances In Modem Continuous Converting (Keynote)By Moto Goto
Today, Pierce-Smith converters, coupled together with various types of smelting units, are used in most of the world's smelters. However, due to the "batch" processing nature, and problems associ
Jan 1, 2003
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Using Image Analysis to Determine Liberation Sizes in a Bulk Sulfide Concentrate from Missouri Lead Ore TailingsBy W. L. Cornell
Bulk sulfide concentrate produced from Missouri Pb ore concentrator tailings must be reground to liberate sulfide values for subsequent sepa-ration. Studies to determine grinding parameters for optimu
Jan 1, 1987
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Thermodynamic Properties of ORC System with Zeotropic Mixed Working Fluids for Low Temperature Waste Heat RecoveryBy Xin Zhang, Mengqi Li, Hongxu Li, Xinrong Zhang, Hao Bai, Ning Li
"Organic Rankin Cycle (ORC) is an effective technology to transform low-grade energy resource into electricity. In this paper, based on thermodynamic principle, considering the waste heat resource low
Jan 1, 2013
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A Remotely Operable Sensor for Precision Surface Mapping Using Coherent Frequency Modulated (FM) Laser RadarBy A. Slotwinski, R. E. Barry, M. M. Menon, P. T. Spampinato
"A coherent FM laser radar based sensor for remote metrology of plasma facing material surfaces in a fusion reactor is described. The sensor is capable of 3-D mapping of surfaces, based on a series of
Jan 1, 1997
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The Copper Loss In Slag Of Flash Smelting Furnace In Tamano SmelterBy T. Maruyama
The Tamano Smelter of Hibi Kyodo Smelting CO. ,Ltd. went into operation in 1972. The Flash Smelting Furnace that was originally adapted was equipped with electrodes that were attached to the settler s
Jan 1, 2003
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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