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Copper Isasmelt - Process Investigations
By R. L. Player
"The Copper Isasmelt process has been developed over the past 15 years by Mount Isa Mines Limited (MIM) and the Commonwealth Scientific and Industrial Research Organisation (CSIRO). The first two comm
Jan 1, 1996
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Copper Isasmelt ? Dealing With Impurities
By Gerardo R. Alvear
The ability to efficiently remove impurities contained in concentrates is a key point to consider when selecting copper smelting technology for new plants or modernisation projects. Volatilisation of
Jan 1, 2006
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Copper Leaching from Pyritic Ores
By P. Blazy
A hydrometallurgical procedure for the recovery of metal from ore, particularly of copper from sulphide materials is described. In the course of this procedure, the raw material is first of all submit
Jan 1, 1976
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Copper Losses In Copper Smelting Slags (Invited)
By Ivan Imris
The common problem of new and conventional technology of copper production is the copper losses in the slags, which may be divided into mechanical and physico-chemical losses. In the first group can b
Jan 1, 2003
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Copper Matte Granulation At The Kennecottutah Copper Smelter
By David B. George
Kennecott Utah Copper adopted Outokumpu Flash Smelting and Kennecott-Outokumpu Flash Converting in 1995, a process based on granulating high grade copper matte. While nickel mattes and very small qu
Jan 1, 2006
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Copper Metallurgy At The KGHM Polska Miedz S.A. - Present State And Perspectives
By Józef Czernecki
The Polish copper concentrates are characterised by low content of sulphur and iron. At KGHM Polska Miedz S.A. two copper production technologies are in use. The shaft furnace process is used at the L
Jan 1, 1999
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Copper Mineral Reactions in Supercritical and Subcritical Water (U.S. Bureau of Mines Salt Lake City Research Center)
By A. E. Isaacson
The U.S. Bureau of Mines is studying the effect of supercritical water, at 400' C and 3,500 psi, and subcritical water, at lower temperatures and pressures, on mixtures of minerals and metals to
Jan 1, 1989
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Copper Mineralization of the Mesozoic Passaic Formation, Northern New Jersey
By J. H. Puffer
The copper mineralization of the Mesozoic Passaic Formation of New Jersey is typical of copper deposits in eastern North American Mesozoic sediments. Most such deposits are located at the base of the
Jan 1, 1987
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Copper Ore Preconcentration By Heavy Media Separation For Reduced Capital And Operating Costs
By Walter E. McCulloch
Recent laboratory bench scale and pilot plant metallurgical tests at Mountain States R and D International have demonstrated that some copper ores because of relatively coarse copper sulfide mineraliz
Jan 1, 1999
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Copper Production From Leaching Solutions With An Innovative Process Competitive To Traditional Solvent Extraction - Electrowinning
By M. Olper
Today, copper production from direct leaching of oxidized copper ores followed by solvent extraction-electrowinning (SX-EW) accounts for about 15% of the total primary world output. SX-EW is a well-ac
Jan 1, 1999
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Copper Production With Outokumpu Flash Smelting: An Update
By Ilkka V. Kojo
This paper gives an overview of the primary copper smelting business during the years of flash Smelting in the light of various projects taking into account the sustainability of copper production. Al
Jan 1, 2006
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Copper Pyrometallurgy: The Quest For An Environmentally Acceptable Continuous Process
By J. C. Yannopoulos
The quest for a continuous copper smelting and converting process, which has been going on for a long time, has not as yet reached its objective. The most recent efforts for the development of a cont
Jan 1, 1983
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Copper Recovery from Printed Circuit Board of E-Waste
By Katsunori Okaya, Gjergj Dodbiba, Hiroyuki Ono, Toyohisa Fujita, Seiji Matsuo
"In an attempt to raise the copper grade of Printed Circuit board (PCB) by removing other components, carbonization treatment was investigated. The crushed PCB without surface-mounted parts was carbon
Jan 1, 2011
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Copper Recovery from the Mine Tailings by Combination of Flotation with High-Pressure Oxidative Leaching and Solvent Extraction
By Atsushi Shibayama
The aim of this research was to develop a copper recovery process from mine tailings (0.34%Cu) using flotation followed by high-pressure oxidative leaching (HPOL) and solvent extraction. The results o
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Copper Recovery From Waste Printed Circuit Board
By Kazuya Koyama
The leaching of copper from a printed circuit board (PCB) and the electrodeposition of copper from a cuprous solution in ammoniacal alkaline solutions were examined in order to develop an energy-savin
Jan 1, 2003
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Copper Recycling from Industrial Waste by Matte Smelting
By Kazuhiro Asai
Hitachi Refinery of Nippon Mining & Metals Co., Ltd. installed a reverberatory type recycling fumace in 1978 in order to treat the industrial wastes which contain metal elements such as copper, gold a
Jan 1, 1997
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Copper Recycling Project In Japan
By Masafumi Maeda
Our aim in this project was to develop a new copper refining technology utilizing pyrometallurgical treatment and a raw materials preparation technique. In the recycling process; raw material is not a
Jan 1, 1995
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Copper Refinery Modernization: Project Organization Coping With A Multi-Constraints Context
By P. C. Guillaume
Global plant modernizations or expansions cannot be considered in the same light as any other industrial investment project. Relationships between the partners, relationships and communications with t
Jan 1, 1999
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Copper Refining Electrolyte Purification by the use of Molecular Recognition Technology (MRT) For Bismuth Removal
By Tracy Morris, Weldon Read, Luis Navarro
"Bismuth is a recognized contaminant in the electrolytic refining of copper that can render many cathodes to be outside ASTM standards and unsuitable for copper rod and other downstream products if no
Jan 1, 2012
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Copper Removal From Ferronickel
By Jianjun Wang, Jiaqing Peng, Lingen Luo, Zhenbang li, Yinghe Lin
Copper removal from ferronickel by FeS has been exploring studied. It is found that the decopperizing agent FeS makes the copper removal in ferronickel effectively. The effects of FeS addition amount,
Jan 1, 2015