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  • TMS
    Recovery of Copper and Cobalt From Industrial Slag By Top-submerged Injection of Gaseous Reductants

    By Xun An

    Slag from an electric slag cleaning furnace was injected with methane and air mixtures to facilitate the recovery of copper and cobalt. The effects of methane-to-air ratio, gas flow rate and temperatu

    Jan 1, 1998

  • TMS
    Recovery of Copper by the Outokumpu VSF Solvent Extraction Technology

    By Bror Nyrnan

    Solvent extraction technology and equipment have been developed within Outokumpu since the early seventies. During this period altogether nine solvent extraction processes for molybdenium, zinc, rheni

    Jan 1, 1994

  • TMS
    Recovery of Copper from a-Etchant Solution

    By C. W. Won

    a-etchant solution is the waste material obtained during the etching by ammoniacal solution of printed circuits for PCs. This material contains a substantial amount of copper (13-14%) but is usually d

    Jan 1, 1993

  • TMS
    Recovery of Copper from Chalcopyrite by Means of a Cupric Chloride Leach

    By K. J. Cathro

    A hydrometallurgical process is described for the recovery of copper from chalcopyrite concentrates. The process is based on a cupric chloride leach, the concentrate having first been "activated" by h

    Jan 1, 1976

  • CIM
    Recovery of Copper from Concentrated Solution by Solvent Extraction Using Kelex 100

    By G. M. Ritcey

    The recovery of copper from low-grade solutions res ulting from dump leaching is well known, whereas the recovery from highly concentrated copper solutions has not been practiced. This paper discusses

    Jan 1, 1973

  • SME
    Recovery Of Copper From Crushed And Sized Porphyry Mine Wastes

    By W. A. McKinney

    In conventional dump leaching of porphyry mine strip wastes, many years are required to extract up to 20 percent of the copper from the contained sulfide minerals. Furthermore, none of the molybdenum,

    Jan 1, 1970

  • SME
    Recovery Of Copper From In Situ Leach Solutions

    By J. F. Edwards

    In situ extraction of copper through borehole injection presents a new technology for the mining of copper. For the successful application of this technology, copper recovery at the surface must be sp

    Jan 1, 1988

  • TMS
    Recovery Of Copper From Industrial Copper Reverb Slags

    By R. G. Reddy

    Industrial copper reverberatory furnace slags were treated by high temperature techniques (sulfide and carbothermic reduction) to recover copper in alloy or matte phase at 1473K. Recovery was investig

    Jan 1, 1983

  • TMS
    Recovery of Copper from Nickel Laterite Leach Waste by Chemical Reduction Using Sodium Dithionite

    By J. A. S. Tenorio, A. B. Botelho Junior, I. A. Anes, D. C. R. Espinosa, M. A. Caralho

    Recovery of metals from reserves with low grade and from waste with high presence of contamination is a challenge to be overcome. Metals like nickel, cobalt and copper could be recovery from nickel la

    Mar 1, 2018

  • TMS
    Recovery Of Copper From Slow Cooled Ausmelt Furnace Slag By Floatation

    By Qingwei Qin, Ping Xue, Guangqiang Li

    Ausmelt furnace slag contains about 0.9% Cu (mass %). With increasing the amount of Ausmelt furnace slag, the recovery of copper from it will produce an enormous economic yield. The recovery of copper

    Jan 1, 2015

  • TMS
    Recovery Of Copper From Weak Acid By Cementation Process

    By A. Elizabet Serna

    The weak acid is a by product obtained in a pre-treatment of gases from a copper smelter prior to sulfuric acid manufacture and the main components of this weak acid are: sulfuric acid. copper, arseni

    Jan 1, 1996

  • TMS
    Recovery of Copper Nanoparticles from AMD by Cementation with Iron and SDS

    By G. Granata

    In this work, we studied the recovery of copper from AMD by cementation with iron powder. To control the size of copper particles within the nanoscale range, we tested the use of the anionic surfactan

  • TMS
    Recovery Of Cr During Smelting Treatment Of Stainless Steel Dust

    By Xinlei Jia, Wenming Guo, Yanling Zhang

    A large amount of stainless steel dust rich in Fe, Cr, and Ni has been being generated in China. Smelting treatment is accepted as a practical method for the recovery/reutilization of these second res

    Jan 1, 2015

  • TMS
    Recovery of Critical Rare Earth Elements for Green Energy Technologies

    By Jyothi Rajesh Kumar, Jin-Young Lee

    21st century is electronic revolution in human lives as well as energy is one of the most significant tasks. Rare earth elements (REEs) occupy a key role in daily life as well as high-tech industrial

    Mar 1, 2017

  • SAIMM
    Recovery Of Economic Values From Backfill Prior To Placement.

    By C. J. Van Niekerk

    When gold plant residues are cycloned for producing a coarse product for backfilling the gold and uranium values are upgraded in the backfill product. Gravity concentration, wet high intensity magneti

    Jan 1, 1988

  • TMS
    Recovery Of Elemental Sulfur From Its Chlorides

    By E. Allain

    Extraction of basic metals from sulfides by conventional pyrometallurgical processing leads to the emission of SO2. To avoid this inconvenient, low temperature selective chlorination of sulfide concen

    Jan 1, 1998

  • SME
    Recovery Of Elemental Sulfur From Ores By Solvent Extraction ? Introduction

    By C. J. Lewis

    Considerable amounts of the world's known reserves of elemental sulfur are found near the surface in areas of volcanic activity both active and inactive. Because such deposits cannot in general-b

    Jan 1, 1970

  • SME
    Recovery Of Eudialyte From A Greenland Ore By Magnetic Separation

    Large deposits of eudialyte, a low grade zirconium bearing mineral, occur on the Southern Coast of Greenland in the Ilimaussaq intrusion. Various processes were tested in the laboratory to recover eud

    Jan 1, 1993

  • CIM
    Recovery of Europium and Yttrium from Electronic Scrap

    By C. A. Morais, L. V. Resende

    "The technological development observed in recent years has stimulated the application of rare earth (RE) elements. Amongst their various applications it is well worth mentioning their use in electron

    Jan 1, 2012

  • TMS
    Recovery of Fe-Cu Alloys from Copper Slag

    By Mario Sanchez, Jose Palacios, Fernando Parada

    Carbon steels have less than 0.02% copper and have low atmospheric corrosion resistance. The addition of at least 0.20 wt% Cu improves this property. Also, 0.8 wt% Cu in steel shows a hardening potent

    Mar 1, 2018