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  • TMS
    Copper Converting At Bindura Nickel Corporation Using Ausmelt Technology

    By E. N. Mounsey

    Ausmelt Technology was selected by Bindura Nickel Corporation (BNC) as the basis for a new copper circuit to process nickel plant copper leach residue to blister, anode and finally cathode copper and

    Jan 1, 1998

  • TMS
    Copper Converting Fluxing Practise During Instantaneous High Arsenic Containing Feed Mixture In Harjavalta

    By Kim Fagerlund

    Boliden Harjavalta Oy operates a copper smelter in Finland, which is based on flash smelting together with Peirce-Smith converting of copper matte. This paper reviews a case study when a high arsenic

    Jan 1, 2005

  • TMS
    Copper Converting Versus Steel Converting A Critical Comparison (Invited)

    By Lauri Holappa

    Copper converting is mostly performed in Peirce-Smith converters. The process is still very similar to the original one developed in the early 20th century. It is a batch process in a horizontal cylin

    Jan 1, 2003

  • CIM
    Copper Cooling Design, Installation and Operational Results for the Slag Cleaning Furnace at Waterval Smelter, Rustenburg Platinum, South Africa

    By R. B. Nourse, R. Hundermark, B. Masters, H. Joubert

    The new 30 MVA slag cleaning furnace at Waterval Smelter, Rustenburg Platinum, South Africa, has been in operation since 10 March 2003. The furnace design and operation face a number of challenges inc

    Jan 1, 2005

  • SME
    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

  • TMS
    Copper Deoxidation by Bubbling Hydrogeditrogen Mixtures Through the Melt

    By 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

  • SME
    Copper Deposits Of The Ruby Creek Area, Ambler River Quadrangle, Alaska ? I. General ? Introduction

    By 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

  • AIME
    Copper Development Bolsters Rum Jungle

    Uranium, discovered in 1949 at Rum Jungle, 40 miles south of Darwin, N. T., was mined and processed to U3O8 from 1954 to 1963 by the Territory Enterprises Pty. Ltd. TEP is a Government company managed

    Jan 10, 1964

  • TMS
    Copper Electrodes For Resistance Spot Welding Of Aluminum

    By B. Fresz

    Before aluminum is utilized in automotive bodies, the longevity of the electrodes employed in the resistance spot welding of aluminum must increase. This paper explores the affects of electrode compos

    Jan 1, 1999

  • SME
    Copper Electrolite Solution Filtration

    By 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

  • TMS
    Copper Electrorefining Impurity Evaluation

    By Daniel Kim, Michael Free, Justin McAllister, Urian Marshall, Shijie Wang

    "Cathode impurity levels of electrorefined copper were evaluated based on 1/10* scale laboratory electrorefining tests. Cathodes were evaluated near the top, mid-section, and bottom sections of cathod

    Jan 1, 2012

  • CIM
    Copper Electrowinning at Duisburger Kupferhuette

    By 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

  • TMS
    Copper Electrowinning at INCO's Copper Refinery

    By 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

  • SME
    Copper Electrowinning At Present And In The Future

    Solvent 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

  • SAIMM
    Copper Electrowinning Circuit Design: Optimized Costing as a Function of Cell Arrangement, Productivity, Rectiformer Size, and Throughput

    By E. L. Forner, G. M. Miller, J. Scheepers, A. J. du Toit

    "The sizing, designing, and costing of copper electrowinning circuits requires an in-depth understanding of the fundamental relationships between circuit parameters and the practical operation require

    Nov 1, 2018

  • CIM
    Copper Electrowinning Developments at Glencore Nikkelverk

    By 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

  • SME
    Copper Electrowinning In The Absence Of Acid Misting Using The Ferrous/Ferric-Sulfur Dioxide Anode Reaction - A Pilot Study

    By 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

  • SME
    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

  • TMS
    Copper Electrowinning using Noble Metal Oxide Coated Titanium - Based Bipolar Electrodes

    By K. Asokan, K. Subramanian

    "Electrowinning of copper by monopolar cells require common anode and cathode busbar and crossbars to connect each electrode to the respective common busbar. On the other hand, the bipolar configurati

    Jan 1, 2009

  • CIM
    Copper Electrowinning: 2018 Global Survey of Tankhouse Operating Practice and Performance

    By 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