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  • AIME
    Copper Embrittlement, III

    By L. L. Wyman

    PREVIOUS studies1 by the writer dealing with the embrittlement of copper have been concerned with the behavior of various pure and deoxidized coppers when exposed to an oxidation-reduction cycle, and

    Jan 1, 1933

  • AIME
    Copper Embrittlement, IV

    By 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

  • CIM
    Copper EW Processes: State of the Art in Optimizing Current Density Distribution

    By 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

  • SME
    Copper Exchange Capacity of Clays and the Effect of Competing Ions on in situ Copper Leaching

    By 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

  • CIM
    Copper Extractant Strength: The Effect of Substituents in the 3-Position on Hydroxyoxime Performance

    By R. S. Forgan

    The synthesis and study of a systematic series of phenolic oximes have shown that substitution in the 3-position can greatly affect extractive efficacy. Solid state, solution and gas phase analytical

    Jan 1, 2007

  • TMS
    Copper Extraction From Complexing Solutions

    By 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

  • AUSIMM
    Copper Extraction from Scrap Cables by Biotechnological Means

    Copper Extraction from Scrap Cables by Biotechnological Means

    Sep 13, 2010

  • SME
    Copper Extraction From Smelter Flue Dust By Lime Roast/Ammoniacal Heap Leaching

    By 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

  • TMS
    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

  • TMS
    Copper Extraction From The 60's Into The 21st Century

    By W. G. Davenport

    Changes in copper extraction from 1960 till today are documented. The top ten changes have been: (a) replacement of reverberatory smelting by high intensity oxygen rich smelting (b) growth of the

    Jan 1, 1999

  • AUSIMM
    Copper Flash Smelting Simulation Experiments

    By Segnit E. R

    Results are reported of a study of the reactions occurringin the combustion of chaIcopyrite particles underconditions simulating those in the shaft of a flashsmelter.The reactions were studied using k

    Jan 1, 1977

  • TMS
    Copper For Long-Term Isolation Of High Level Nuclear Waste

    By Lars O. Werme

    Already the KBS Project proposed copper as a suitable material for encapsulation of spent nuclear fuel. The basis for this choice was the thermodynamic stability of copper in water and the fact that d

    Jan 1, 1999

  • TMS
    Copper from Copper Bearing Scrap: A Moving Target

    By Albert W. Spitz

    Profitably recovering copper and precious metals from copper bearing scrap is a demanding and frustrating combination of art, science and economics. With fluctuating markets, varying raw materials and

    Jan 1, 1997

  • TMS
    Copper from Copper Concentrates Via Solutions of Cuprous Sulfate in Acetonitrile -Water Solutions

    By Alan James Parker

    Chalcopyrite can be converted to pure copper by the following five steps. An exothermic sulfation roast of chalcopyrite; leaching of cupric sulfate from the calcine with dilute acid; precipitation of

    Jan 1, 1976

  • SME
    Copper Heap Leach Pad Performance: Geotechnical Lessons Learned Evaluation Of Several Heaps After 3 Plus Years Of Service

    By 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

  • SME
    Copper Heap Leaching At San Manuel

    By 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

  • SME
    Copper Hosted in Red Beds at Tambomachay Deposit (Cuzco, Peru), Trapped by Bacterially Reduced Sulfur during Migration of Basinal Fluids

    By 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

  • SME
    Copper Hydrometallurgy - Evolution And Milestones

    By 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

  • SME
    Copper Hydrometallurgy – Evolution and Milestones

    By Nathaniel Arbiter

    In contrast to pyrometallurgy's 6000year history in metals production, hydrometallurgy is of relatively recent origin. The earliest reference to it was in the 16th century, with the first applica

    Jan 1, 1994

  • AIME
    Copper in a Changing World

    By Charles M. Brinckerhoff

    When I first went to Arizona in 1925, mining was primarily an underground job. Ajo, Sacramento Hill in Bisbee and Jerome were the only open pit operations in the state. Thousands of men, however, were

    Jan 3, 1972