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  • AIME
    Chlorination Behaviors of Some Metal Sulfides as Investigated by Thermogravimetric Analysis

    By I. Iwasaki, R. Titi-Manyaka

    Chlorination and chloridization behaviors of pyrite, pyrrhotite, marcasite, chalcocite, covellite, galena, sphalerite, heazlewoodite, and elemental sulfur were investigated by thermogravimetric analys

    Jan 1, 1974

  • TMS
    Chlorination Kinetics of Xenotime with Chlorine in Presence of Carbon

    By M. A. Gimenes

    The utilization of chlorination in extractive metallurgy and advanced ceramics areas has been widely investigated as a preparative route in order to obtain intermetallic compounds, which are used as p

    Jan 1, 2000

  • AIME
    Chlorination Of Copper And Nickel Sulfide Concentrates

    By I. Iwasaki, K. A. Smith

    A chlorination process for treating metal sulfide flotation concentrates is described. The process involves low temperature chlorination combined with sulfur chloride conversion and selective oxidatio

    Jan 1, 1986

  • AIME
    Chlorination of Gold-Ores ; Laboratory-Tests

    By A. L. Sweetser

    EXPERIENCE has shown how difficult it is to obtain information regarding laboratory-tests in connection with the chlorination-process for the extraction of gold from its ores, and I therefore present

    Sep 1, 1907

  • AIME
    Chlorination Of Gold-Ores; Laboratory-Tests.

    By Charles H. White

    Discussion of the paper of A. L. Sweetser, Tress., xxxviii., 236. CHARLES H. WHITE, Harvard University, Cambridge, Mass. (communication to the Secretary*) :-Those interested in leaching-processes gla

    Jan 7, 1908

  • TMS
    Chlorination of Manganese Oxides

    By Ana E. Bohé, Georgina De Micco, Gastón G. Fouga

    "In this work the reaction between several manganese oxides and chlorine is investigated in the range of temperatures between 650 and 950ºC. The reaction path for the chlorination of MnO is establishe

    Jan 1, 2008

  • TMS
    Chlorination of Titania Feedstocks

    By Samantha Moodley, Rauf Hurman Eric, Cevat Kucukkaragoz, Aditya Kale

    "Two titania slags, rutile and synthetic rutile were chlorinated with petroleum coke and CO in a small bubbling fluidized bed reactor. The study aims to identify differences in chlorination mechanism,

    Jan 1, 2012

  • AUSIMM
    Chlorination of Titaniferous Feedstocks

    By H Aral, L Malishev

    The carbothermic chlorination of titaniferous materials such as rutile, synthetic rutile (SR), upgraded slag and ilmenite in a fluidised bed is an established commercial process. In this work, ilmenit

    Jan 1, 2000

  • SME
    Chlorination Of Zirconium Bearing Materials To Produce High Purity Zirconia

    Zirconium chloride is of great commercial importance as starting materials for production of ZrO2, Zirconium metal and other Zirconium compounds from its main resources (Zircon Sands). The present stu

    Jan 1, 1997

  • TMS
    Chlorination Operations at Jerritt Canyon, Nevada

    By D. S. Barr

    The Freeport McMoRan chlorination circuit is comprised of four related processes: ore chlorination, gas scrubbing, chlorine supply and excess hypochlorite removal ("hypo kill"). Each of these processe

    Jan 1, 1987

  • AIME
    Chlorination Process for the Recovery of Copper from Chalcopyrite

    By G. L. Hundley, R. E. Mussler, D. H. Yee, F. E. Block, R. S. Olsen

    An anhydrous chlorination process for the recovery of copper from chalcopyrite was investigated. Pelletized concentrate was reacted continuously with gaseous chlorine in a vertical shaft reactor at 55

    Jan 1, 1974

  • TMS
    Chlorination Roasting Of Rare Earth Element Oxides

    By Larry G. Twidwell, Jannette L. Chorney, Bryce D. Ruffier, Katelyn M. Lyons, Daniel W. Gaede, Ryan J. Foy, Jerome P. Downey

    The Army Research Laboratory (ARL) has an interest in the recovery and processing of rare earth elements. At Montana Tech, elevated temperature chlorination of rare earth oxides is presently being inv

    Jan 1, 2015

  • SME
    Chlorination-Grade Feedstock From Domestic Ilmenite

    By John B. Wright

    This paper describes laboratory techniques and subsequent results of Bureau of Mines research to produce chlorination-grade feedstock from an abundant, low-grade, domestic, rock ilmenite ore. The rese

    Jan 1, 1984

  • AIME
    Chlorination-grade feedstock from domestic ilmenite

    By G. W. Elger, H. E. Bell, J. E. Tress, J. B. Wright

    This paper describes laboratory techniques and subsequent results of US Bureau of Mines (USBM) research to produce chlorination-grade feed- stock from an abundant, low-grade, domestic, rock ilmenite o

    Jan 1, 1986

  • TMS
    Chlorination: A Potential Approach for the Beneficiction of Chromite

    By N. Kanari

    One of the criteria to define the market value of chromite concentrate is its chromium to iron ratio. Changing this ratio for a definite chromite mineral is impossible by physical processing. This stu

    Jan 1, 1997

  • TMS
    Chlorine Anion Elimination from Zinc Sulfate Solution by Periodical Current Reverse Electrolytic System

    By M. Suzuki, M. Dobashi, M. Kahata, T. Yoshida

    Almost 30% of steel in Japan is produced by electric arc furnace (EAF) treatment of iron scrap. EAF dust includes approximately 20 wt % of Zn and 3- 5 wt % of CI and is treated by the pyrometallurgica

    Jan 1, 1997

  • AUSIMM
    Chlorine as a Suitable Lixiviant for Gold

    Chlorine as a lixiviant for gold possesses a number of significant chemical and Idnetic advantages over cyanide but because of its corrosive and vaporous nature the method of implementation needs to

    Jan 1, 1991

  • AUSIMM
    Chlorine Based Flooded Pit Leaching of Oxide Gold Deposits

    The capacity of chlorine based solutions to rapidly and effectively dissolve coarse gold in oxide ores is well established. The inherent advantages of chlorine are high dissolution rates (10 - 100 tim

    Jan 1, 1992

  • AUSIMM
    Chlorine Based In-Situ Leaching of Alluvial Gold Deposits

    Alluvial mining even of shallow deposits is often economically a marginal proposition and causes significant disruption of the land surface through the need for large scale excavation. In-situ leach

    Jan 1, 1992

  • AIME
    Chlorine Dezincing in Lead Refining

    By Jesse Betterton

    IN the Parkes process of lead refining, after desilverization has been completed by means of zinc additions, there will remain in the lead from 0.5 to 0.6 per cent zinc. At this stage in the refining

    Jan 1, 1933