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Copper And Gold Recovery From Bor, Serbia, Old Flotation Tailings DamBy Lj. Obradovic
The aim of this paper is to study the feasibility of copper and gold recovery from the old flotation tailing dam at Bor, Serbia. Laboratory leaching experiments were carried out using a composite samp
Jan 1, 2006
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Copper And Iron Impurities In The Cyanide Leaching Of GoldBy Patrick R. Taylor
This paper presents a fundamental study of the thermodynamic and kinetic effects of copper and iron on gold-cyanide leaching. It quantifies the solubilities of the impurities, complex formation, and k
Jan 1, 1983
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Copper And Its ByproductsBy Marc Lonoff
Byproducts are more important to the copper mining companies than to the copper market. Copper ores frequently contain gold, silver, molbydenum and cobalt. With the increase in the prices of these met
Jan 1, 1980
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Copper And Its FutureBy John G. Hall
Everyone forms his own mental picture when the subject of copper is mentioned. To an architect, copper is a warm, enduring metal with a quiet beauty; to the historian, man's first metal; to the p
Jan 1, 1968
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Copper And Silver Recovery From A Complex Sulfide Concentrate By Ferrous Chloride-Oxygen LeachingBy B. J. Scheiner
A ferrous chloride-oxygen leaching system was investigated by the Federal Bureau of Mines as a means of re-covering copper and silver from a sulfide concentrate that had been pretreated to remove a ma
Jan 1, 1978
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Copper Cities' New Approach To Molybdenum FlotationBy J. J. Bean
The development drilling program of the Copper Cities mine indicated that the molybdenum content of the ore would be about 0.011% MoS2' The molybdenum content of the Miami mine at the same time w
Jan 1, 1972
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Copper Concentrate Enrichment ProcessBy W. A. Yuill
A process has been developed for increasing the grade of chalcopyrite concentrates from about 25 percent copper to about 60 percent copper. The concentrates are treated with two steps of autoclaving a
Jan 1, 1984
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Copper Concentrate Pressure Leaching - Plant Scale-Up From Continuous Laboratory TestingBy R. E. Brewer
Phelps Dodge Mining Company (Phelps Dodge) is operating a pressure leach vessel (PLV) for copper concentrates at the Bagdad Mine facility in Arizona. This single PLV unit was engineered and construct
Jan 1, 2004
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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 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 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 In The Absence Of Acid Misting Using The Ferrous/Ferric-Sulfur Dioxide Anode Reaction - A Pilot StudyBy W. J. Dolinar, S. P. Sandoval
The US Bureau of Mines (USBM) 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/ m
Jan 1, 1996
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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 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 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 Heap Leach Pad Performance: Geotechnical Lessons Learned Evaluation Of Several Heaps After 3 Plus Years Of ServiceBy C. J. Burkhalter, H. Andrade, T. C. A. Gardner, J. P. Campbell
During the 1990’s several copper heap leach facilities treating crushed and agglomerated oxide and sulfide ore were constructed in South America. The majority of these facilities have been in operatio
Jan 1, 2002
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Copper Heap Leaching At San ManuelBy J. G. Jenkins
Magma Copper Co.'s San Manuel solvent extraction/electrowinning (SX-EW) facility has operated since May 1986. The original facility had a design capacity of 22.6 kt/a (25,000 stpy) of electrowon
Jan 1, 1995
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Copper Hosted in Red Beds at Tambomachay Deposit (Cuzco, Peru), Trapped by Bacterially Reduced Sulfur during Migration of Basinal FluidsBy C. Salcedo, J. Vallance, J. Sáez, M. Robles, J. Spangenberg, S. Rosas, L. Fontboté
The Tambomachay ore deposit (13°28'36.78"S, 71°57'35.98"W, about 6 km north of the town of Cuzco, Peru) consists of Cu hosted in arkosic red beds of the Kayra Formation (Lower Eocene). Bornite, chalco
Jan 1, 2019
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Copper Hydrometallurgy - Evolution And MilestonesBy Archie W. Fletcher, R. J. Wesely, Nathaniel Arbiter, A. D. Zunkel
In contrast to pyrometallurgy's six thousand year history in the production of metals, that of hydrometallurgy is of relatively recent origin. The earliest reference to it at all was in the 16th
Jan 1, 1993