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Copper Recovery From Sulfide Concentrates By The U.B.C. - Cominco Ferric Chloride Leach RouteBy G. M. Swinkels, A. Vizsolyi, E. Peters
A process is described utilizing ferric chloride leaching followed by reduction of the cupric content to cuprous by cement copper, with CuCl obtained thereafter by crystallization. The residual liquor
Jan 1, 1981
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Copper Recovery From Sulfide Concentrates Via Roast/Leach/ElectrowinningBy Dale C. Matthews, Donald L. Simpson
Hecla Mining Company's Lakeshore Mine and Metallurgical complex near Casa Grande, Arizona, is the first plant in North America to utilize the roast/leach/electrowinning process for production of
Jan 1, 1981
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Copper Recovery from the Mine Tailings by Combination of Flotation with High-Pressure Oxidative Leaching and Solvent ExtractionBy 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 BoardBy 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 Recovery from Waste Printed Circuit BoardsBy N. Santa, V. Salinas
"Printed circuit boards are potentially recyclable materials. Developing suitable methodologies for proper disposal and better utilization, brings major environmental and economic benefits. A methodol
Jan 1, 2017
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Copper Recovery Using Leach/Solvent Extraction/Electrowinning Technology: Forty Years Of Innovation, 2.2 Million Tonnes Of Copper AnnuallyBy G. A. Kordosky
The concept of selectively extracting copper from a low-grade dump leach solution followed by stripping the copper into an acid solution from which electrowon copper cathodes could be produced occurre
Jan 1, 2002
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Copper Recovery Via Oxychloride RoutesBy D. C. McLean
One of the few innovations in hydrometallurgy in recent years has been the utilization of the chemistry of basic iron sulfates called jarosites. These have been used to make iron-zinc separations in t
Jan 1, 1979
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Copper Recycling from Industrial Waste by Matte SmeltingBy 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 JapanBy 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 ReductionBy C. R. Kuzell
IN COMPARISON with recent years 1932 has yielded much less tangible evidence of progress in copper reduction and refining. The industry has been extremely quiet, especially in the United States. Desig
Jan 1, 1933
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Copper Reduction from Solution With Copper SpongeThe observation of lower-than-predicted Fe/Cu ratios in the cementation of copper on iron in tests at elevated temperatures indicated that some other reaction was contributing to the reduction of cupr
Jan 1, 1974
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Copper Refinery Modernization: Project Organization Coping With A Multi-Constraints ContextBy 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 and Production of Semi-fabricated Products at Copper Refineries LtdWithin CRLÆs lifetime there have been a number of products that have proceeded through their life cycles. In each case market forces and technological advances have forced the cessation of the product
Jan 1, 1998
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Copper Refining Electrolysis at High Current Densities with Conventional TechnologyBy A. C. Atenas
The majority of refineries that operate with traditional starting sheet technology ?starting sheet- uses a relatively low current density of 250 A/m2. Industrial tests at high current density with con
Jan 1, 2007
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Copper Refining Electrolyte Purification by the use of Molecular Recognition Technology (MRT) For Bismuth RemovalBy 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 Refining Electrolyte Purification using SuperLig® Molecular Recognition Technology for Bismuth Removal—The Experience at Birla CopperBy R. L. Bruening, L. Navarro, Izatt. S. R., R. Adiga, R. M. Izatt, N. E. Izatt, A. Sharma, N. R. Patel, B. V. Rao
Bismuth is a notorious contaminant in the electrolytic refining of Cu that can cause cathodes to fail to meet ASTM International standards and not be suitable for use in Cu rod and other downstream pr
Jan 1, 2019
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Copper Refining in the United States.*By T. Egleston
THE materials containing copper which are refined in the United States, are, for the most part, the native, coppers of Lake Superior. Until quite recently but little pig copper was made for sale, and
Jan 1, 1881
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Copper Refining: Anode Furnace OperationBy Warren A. Sheaffer
THE chief uses for copper are as a conductor of electricity and as the chief component in brasses and bronzes. For such uses, the copper must be of very high purity. H the impurities are zinc, iron, l
Jan 1, 1942
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Copper Removal From FerronickelBy 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
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Copper Roast Segregation Process: A Promise to be Fulfilled and a Challenge for Material Handling TechnologyBy A. del Campo A.
The roast segregation process, which was patented in 1974, makes use of a set of chemical reactions that are different from the traditional sequential oxidation of iron and copper sulfides used by all
Jan 1, 2007