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  • CIM
    Chipewyan Granite - a Building-Stone Prospect in Alberta

    By John D. Godfrey

    Geological mapping on the Canadian Shield in northeastern Alberta outlined severalgranitoid rock massespotentially suitable as building stone. A particularly attractive prospect, the Chipewyan Red Gra

    Jan 1, 1979

  • AUSIMM
    Chirano Gold Mine Expansion – A Case Study

    By S Ellis

    In January 2008 Chirano Gold Mines Limited committed to expansion of the Chirano Gold Project from its existing design capacity of 2 Mtpa ROM ore to a new design value of 3.5 Mtpa. In addition to incr

    Aug 8, 2011

  • IMPC
    Chitosan as a Selective Flocculant for Beneficiation of High Alumina Containing Indian Iron Ore Slimes: A Theoretical and Experimental Study

    By Vinay Jain, Dharmendr Kumar, Beena Rai, Venugopal Tammishetti

    "Selective dispersion-flocculation is considered to be an effective process for the beneficiation of ultrafine particles. This process is based on the preferential adsorption of a flocculant on the mi

    Jan 1, 2018

  • TMS
    Chloride As An Alternative To Cyanide For The Extraction Of Gold - Going Full Circle?

    At the present time, cyanide is the most widely used reagent to extract gold from its ores and concentrates. However, its use in mining has become the focus of intense attack by various groups throug

    Jan 1, 2003

  • TMS
    Chloride Capacity In FeO-Fe2O3-SiO2 Molten Slag At 1523 K

    By Yu Yamashita

    There have been increasing in melting recycled scraps in copper smelting processes, and thus growing interests in the chlorine behavior. In this study, chloride dissolution in FeO-Fe2O3-SiO2slag (SiO2

    Jan 1, 2006

  • SME
    Chloride Control in SX-EW Plants

    By G. Tapia, R. J. Kelley

    Empresa Minera de Mantos Blancos S.A. successfully commissioned two copper SX-EW plants in late 1995. The design of these solvent extraction plants is such that chloride tenors of 30-35 g/l can be tol

    Jan 1, 1998

  • CIM
    Chloride hydrometallurgy for complex sulphides: A review

    By D. S. Flett

    "The current state-of-the-art of chloride hydrometallurgy for treatment of complex sulphide bulk concentrates is reviewed. General considerations regarding the various flowsheet steps are examined and

    Jan 1, 2002

  • SME
    Chloride Leaching Of A Complex Matte: Comparison Of Oxidants

    By H. I. Kim

    The leaching of a complex matte in chlorine and chloride media was studied. The matte was prepared from manganese nodules by the reduction smelting-sulfidation route. From XRD analysis, the major phas

    Jan 1, 2009

  • CIM
    Chloride Leaching of Gold from Sulfide Concentrates

    By O. Hyvärinen

    Outokumpu has developed a new chloride leaching process called HydroCopper®. In this process copper sulfide concentrates are leached at atmospheric pressure in concentrated sodium chloride solution us

    Jan 1, 2005

  • SME
    Chloride Management in Copper Solution Extraction Process

    By C. R. Everly

    "The purpose of this paper is to review the most effective methods of reducing chloride transfer and chloride removal in the solution extraction and electrowinning (SX/EW) process. Elevated chlorides

    Jan 1, 2015

  • TMS
    Chloride Metallurgy - Process Technology Development

    By Edgar Peek

    "The two dominant metallurgical problems in treating most base metal sulphide concentrates in both the chloride and sulphate system are iron removal and sulphur elimination, respectively [1-3]. In thi

    Jan 1, 2011

  • TMS
    Chloride Processing Of Metal Sulphides: Review Of Fundamentals And Applications

    The physico-chemical principles of chloride hydrometallurgy are reviewed to rationalise the complex chemistry in chloride-based processes for metal sulphides in terms of the predicted Eh-log[Cl-] rela

    Jan 1, 2003

  • AUSIMM
    Chloride Route Titanium Dioxide Pigments - Process and Properties

    Economic and environmental pressures are shifting the world balance of titanium dioxide production away from sulphate based. manufacture towards the more cost effective and cleaner chloride route. I

    Jan 1, 1991

  • TMS
    Chloride-Free Processing of Aluminum Scrap to Recover By-Product Materials

    By William D. Riley

    The U. S. Bureau of Mines has developed technology to recover by-product materials from aluminum scrap using engineered scavenger compounds (ESC). ESCs are structural oxides with a channel or tunnel s

    Jan 1, 1995

  • AIME
    Chlorides in Oil-field Waters

    Reply to discussion of the paper of C. W. Washburne, presented at the New York meeting, February, 1914 (Trans., xlviii, 687 to 694 (1914)). C. W. WASHBURNE, New York, N. Y. (communication to the Sec

    Jan 4, 1915

  • AIME
    Chlorides in Oil-Field Waters

    By C. W. Washburne

    THE waters of many oil fields have been regarded as buried sea water which has been retained in the sediments since the time of their deposition. The preservation of connate water through geological t

    Jan 3, 1914

  • AIME
    Chlorides, Bromides, Iodides, Fluorides

    By William E. Ford, Edward Salisbury Dana

    I. Anhydrous Chlorides, Bromides, Iodides; Fluorides. II. OxycMorides ; Oxyfluorides. III. Hydrous Chlorides; Hydrous Fluorides. The Fourth Class includes the haloids, that is, the compounds wit

    Jan 1, 1922

  • AUSIMM
    Chloridisation of Zinc Ferrite in a HCI/H2O Atmosphere

    By Van Weert G

    Ferrous chloride solution pyrohydrolysis is a successful IICI regeneration process which is carried out in either a spray roaster or a fluid bed. Pyrohydrolysis is not restricted to ferrous chloride

    Jan 1, 1993

  • AIME
    Chloridizing Leaching at Park City

    By Theodore Holt

    Outline of the Process THE Mines Operating Co.'s plant at Park City, Utah, was designed to treat the low-grade fillings in the old stopes of the Ontario mine. These fillings carry 6 to 14 oz. of

    Jan 7, 1914

  • AIME
    Chloridizing Leaching At Park City

    Discussion of the paper of THEODORE P. HOLT, presented at the Salt Lake meeting August, 1914, and printed in Bulletin No. 91, July, 1914, pp. 1699 to 1708. F. S. SCHMIDT, Salt Lake City, Utah.-Any fu

    Jan 11, 1914