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Battery Recycling By Hydrometallurgy: Evaluation of Simultaneous Treatment of Several Cell Systems
By C. A. Nogueira, F. Margarido
"A research work has being carried out annmg at evaluating the possibility of treating simultaneously several electrochemical systems of spent batteries using the same process, in order to overcome th
Jan 1, 2012
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Phase Relations And Activity Of Iron Oxide In The FeOx-CaO-SiO2 System At 1300-1400°C Under Various Partial Pressures Of Oxygen
By Hector M. Henao
In order to provide the thermochemical data regarding the slag system, which are of importance for sulfide smelting and metallurgical processes but still lacking, an experimental study was carried out
Jan 1, 2006
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On the Reaction Mechanism of Oxidized Chalcopyrite Particles and Copper Matte with Iron Silicate Slag
By K. Fagerlund
Methods for simulation of settler reactions, matte-slag separation and matte settling in copper flash smelting have been examined. The reaction, separation and settling phenomena of slightly oxidized
Jan 1, 1997
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The Double Membrane Electrolytic Cell: A New Tool In Metal Recycling
By J. V. Atwood
The U.S. Bureau of Mines has developed a novel Double Membrane Electrolytic Cell (DMEC) that exhibits unique features for recycling contaminated metals and metal alloys. The DMEC incorporates two anio
Jan 1, 1995
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Sustainability, Energy Efficiency and CO2 Elimination in Concentrate Drying
By Jyri Talja, Shaolong Chen, Hannu Mansikkaviita
"Drying (water removal) prior to smelting is always economically feasible. Unnecessary heating of vapour can thus be eliminated resulting in savings of5-15 MUSD every year.Thermodynamically removal of
Jan 1, 2012
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Recovery of Silver From Residues of the Zinc Jarosite Process
By C. S. Ek
As a continuation of previous work, further tests have been carried out to recover silver from the residues obtained in a zinc jarosite process. Selective flotation has been performed with different r
Jan 1, 1990
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Cerro Verde Hydrometallurgical Plant Design Features and Operation
By O. Durand
The Cerro Verde Hydrometallurgical Plant, located at Arequipa in the southern part of Peru, started its operation in 1977 with a design capacity of 33,000 MT/year of copper cathodes. The plant has tr
Jan 1, 1987
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A Study of Carbon-Burdened and Cold-Bonded Pelletizing-Electrosmelting Process Disposing Low-Grade Manganese Ore
By Chen Wen, Li Zhao-jia, Zhao Qiang, Ning Shun-ming, Tang Sanchuan, Wang Hong-qiang
"The carbon-burdened and cold-bonded pelletizing-electrosmelting process is used to dispose low-grade manganese, and the qualified rich-manganese slag is obtained. On the condition that reduction roas
Jan 1, 2012
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Effect Of Oxygen Enrichment On The Teniente Converter Productivity At The Ilo Smelter, Perú
By Jose Bengoa
Low metal prices and environmental restrictions are always a challenge for copper smelters operation and its productivity. Thus, in order to reduce production costs and control gas emissions, improvem
Jan 1, 2003
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Topsoe WSA Technology Provides Efficient Desulfurization of Off-Gases From Non-Ferrous Roasters
By Ole Rud Bendixen
Topsoe has developed a Wet gas Sulphuric Acid (WSA) process which effectively recovers SO2 in off-gases from non-ferrous smelters and roosters. The product is concentrated sulphuric acid of typically
Jan 1, 1996
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Reduction Process of Iron Ores in A Two-Stage Fluidized Bed System
By Yoon-Bong Hahn
A mathematical model has been developed to analyze and predict the reduction process of iron ore particles in a two-stage fluidized bed system. This model includes the effect of particle degradation t
Jan 1, 1996
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Theoretical Modeling of the Oxidation of Carbon/Carbon Composites
By Feng Gao
A general unsteady- state model, based on a cracked substrate, has been developed to account for reaction and diffusion within porous substrate during oxidation of Carbon Fiber Reinforced Carbon matri
Jan 1, 1993
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SPCC's 1,200,000 TPA Copper Isasmelt
By H. Walqui
Southern Peru Copper Corporation (SPCC) are currently modernizing the Ilo copper smelter. A single ISASMELT furnace will start smelting 1,200,000 tonnes per year of concentrate during the second half
Jan 1, 2006
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High Current Density Copper Electrorefining
By René Winand
A new process was studied at large laboratory scale at Université Libre de Bruxelles, under contract with Metallurgie Hoboken-Overpelt. A two cathodes (1m long ; 0.2 m high) channel cell was used at 2
Jan 1, 1987
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The Leaching Behavior of Nickel and Cobalt from Metals and Ores - A Review
By Kenneth N. Han
Thermodynamic and kinetic aspects of nickel and cobalt leaching from metals. minerals and ores in various media have been reviewed and discussed in this paper. A kinetic model developed to delineate t
Jan 1, 1993
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COPPER, Introduction and Overview by J .C. Agarwal and J .C. Yannopoulos xv Index to Volumes I and 11
By Jagdish C. Agarwal
Although copper ranks very low in the order of abundance of elements in the crust of the earth, it has been one of the first metals utilized by mar, at his emergence from the Stone Age, about 10,000 y
Jan 1, 1976
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Precursors for PCDD/F Formation During Combustion Process
By N. Menad
The formation of the dioxins can be dependent on the quantities of carbon, hydrogen, chlorine and oxygen present in a given system, as well as on parameters such as temperature and pressure. Inadequat
Jan 1, 2000
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Design, Construction, and Operation of Periodic Reverse Current Process at Tamano
By Tatsuzo Kitamura
The tank house of Tamano refinery, that started its operation in January, 1972, was constructed incorporating the application of Periodic Reverse Current (P.R.C.) from the outset of design works. In 1
Jan 1, 1976
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Mineralogy and Flowsheet Changes at the Camchib Mines Inc. Mill, Chibougamau, Quebec
By André Laplante
The mineralogy of the Joe Mann mine differs from that of other deposits of the Chibougamau area that are exploited by Les Mines Camchib Inc.. It is characterized by very fine first generation gold and
Jan 1, 1989
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Copper Extraction From Smelter Flue Dust By Lime-Roast/Ammoniacal Heap Leaching (College of Mines and Earth Resources University of Idaho)
By Zhi-biao Yin
Copper smelter flue dusts often cannot be directly recycled to the smelting process and accumulate as hazardous wastes requiring environmentally acceptable disposal. Because of the limited amount of f
Jan 1, 1992