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Copper Creek: A Different Porphyry Style System?By R. J. Sandberg
The Copper Creek area, part of the Bunker Hill District, Pinal County, Arizona, lies within the southwest porphyry copper province of North America at the intersection of a northwest trend and an east
Jan 1, 2010
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Copper Deoxidation by Bubbling Hydrogeditrogen Mixtures Through the MeltBy Claudio Parra De Lazzari
The determination of the governing step of the deoxidation rate and the effects of the hydrogen content of the mixtures (C), the diameter of the delivery orifice (4) and the Reynolds number of the ori
Jan 1, 1997
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Copper Deposits Of The Ruby Creek Area, Ambler River Quadrangle, Alaska ? I. General ? IntroductionBy R. H. W. Chadwick
We in Kennecott are well aware that Alaskans are interested in the progress of our project at Ruby Creek. We would very much like to be able to present you with a final report at this time and tell yo
Jan 1, 1960
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Copper Electrolite Solution FiltrationBy Judson G. Brown
In the May, 1969 issue of Mining Engineering the Editorial Director, John V. Beall, described the Japanese Onahama Copper Smelter and Refinery as follows: "On the shore of the Pacific, 120 miles nor
Jan 1, 1970
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Copper Electrowinning at Duisburger KupferhuetteBy H. Kudelka
Copper electrowinning at Duisburger Kupferhuette was introduced in March 1975. The electrowinning plant has a capacity of 10,000 mT of copper cathodes a year. The cuprous oxide feed material is an int
Jan 1, 1977
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Copper Electrowinning at INCO's Copper RefineryBy P. M. Tyroler
Inco operates a hydrometallurgical plant to treat the residue from the pressure carbonylation process. The main constituent in the residue is cop¬per. The residue is leached under pressure in an acid
Jan 1, 1987
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Copper Electrowinning At Present And In The FutureSolvent extraction-electro- winning appears to be one of the most important processes for the future in the North American copper industry and for this reason both the SX and EW steps are furtive area
Jan 1, 1985
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Copper Electrowinning Developments at Glencore NikkelverkBy E. Rosseland
Glencore Nikkelverk is operating its Chlorine Leach Process in Kristiansand, Norway, producing nickel, copper and cobalt metals by electrowinning. The copper tankhouse, with an annual capacity of 40 0
Jan 1, 2019
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Copper Electrowinning In The Absence Of Acid Misting Using The Ferrous/Ferric-Sulfur Dioxide Anode Reaction-A Pilot Study (PRIPRINT 95-16)By W. J. Dolinar
The U.S. Bureau of Mines implemented the Fe2+ /Fe3+-SO2 anode reaction in a Cu electrowinning cell with full-size electrodes. Electrowinning was conducted using industrial electrolyte at 258 A/m2 (24
Jan 1, 1995
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Copper Electrowinning: 2018 Global Survey of Tankhouse Operating Practice and PerformanceBy K. C. Sole, G. Robinson, M. S. Moats, W. G. Davenport, S. Sandoval
Global practice in hydrometallurgical production of copper cathode by electrowinning is reviewed, based on individual plant operating data for 2018. Data from 29 plants were collected, representing 38
Jan 1, 2019
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Copper electrowinning: theoretical and practical design - SynopsisBy N. T. Beukes
An engineering house?s perspective of required inputs in designing a copper electrowinning tank house and ancillary equipment calls for both understanding of the key fundamental controlling mechanisms
Jan 1, 2009
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Copper Elimination in Cyanidation EffluentsBy F. Nava-Alonso, O. Alonso-González, A. Uribe-Salas, R. Pérez-Garibay
"Cyanidation is the most used method to recover gold and silver from their ores. In this process, other metals besides gold and silver may sometimes dissolve and interfere with the efficiency of extra
Jan 1, 2008
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Copper EmbrittlementBy L. L. Wyman
SINCE the observations of Heyn,1 relative to the embrittlement of copper after having been heated in hydrogen, this subject has received considerable attention from later investigators. The published
Jan 1, 1931
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Copper Embrittlement, IVBy L. L. Wyman
THE resultant embrittlement caused by the exposure of oxygen-bearing copper when hot and exposed to reducing gases has been the subject of many studies.1 Little attention, however, has been given to t
Jan 1, 1940
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Copper EW Processes: State of the Art in Optimizing Current Density DistributionBy E. P. Wiechrnann, C. M. Castro, G. A. Vidal
In copper Eta plants the optimal current density setpoint depends on the electrolyte composition and temperature. However, conventional plants operate with large standard deviations. A value of 14% wi
Jan 1, 2011
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Copper Exchange Capacity of Clays and the Effect of Competing Ions on in situ Copper LeachingBy Y. Topkaya, R. E. Johnson, B. R. Palmer, R. B. Bhappu, A. E. Clark, R. P. Bush, L. E. Schultze
The U.S. Bureau of Mines conducted copper exchange capacity (CuEC) tests for six common clays under simulated in situ leaching conditions. Regression equations were obtained from the data expressing t
Jan 1, 1993
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Copper Extraction From Complexing SolutionsBy R. F. Hammen
Copper is one of the most widely used metals in industrial processes and is also present in most mining operations. Extraction of copper from solutions often proves difficult due to the presence of co
Jan 1, 1994
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Copper Extraction from Scrap Cables by Biotechnological MeansCopper Extraction from Scrap Cables by Biotechnological Means
Sep 13, 2010
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Copper Extraction From Smelter Flue Dust By Lime Roast/Ammoniacal Heap LeachingBy E. E. Caba
Copper smelter flue dusts containing arsenic are hazardous materials requiring environmentally accept-able disposal, preferably with re-source recovery under the RCRA and CRCLA regulations. However, t
Jan 1, 1992
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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