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  • AUSIMM
    Carbonate in Synthetic and Biological Apatites

    By X Liu

    The crystal chemistry of carbonate in Ca apatites, including Na-free and Na-bearing hydroxylapatite (CHAP) and Na-bearing fluorapatite (CFAP) and chlorapatite (CCLAP), has been investigated by Fourier

    Jan 1, 2008

  • SME
    Carbonate/Phosphate Flotation Separation By The MRI No-Conditioning Process

    By J. Hanna

    The University of Alabama Mineral Resources Institute (MRI) has developed a unique process for selective fatty acid flotation of carbon-ate gangue from sedimentary apatites "francolite" in the pH rang

    Jan 1, 1989

  • TMS
    Carbonate/Phosphate Flotation Separation by the MRI No-conditioning Process

    By John Hanna

    The University of Alabama Mineral Resources Institute (MRI) has developed a unique process for selective fatty acid flotation of carbonate gangue from sedimentary apatites (francolite) in the pH range

    Jan 1, 1989

  • SME
    Carbonatites: An Important Source For Space-Age Materials

    By D. P. Gold

    Major sources and reserves of Cb/Nb, Ta, REE, Y, Sc, Zr, Hf, Cu, apatite and vermiculite may be concentrated in primary and secondary minerals associated with different stages and depths of emplacemen

    Jan 1, 1991

  • NIOSH
    Carbonizing Properties - Eastern Kentucky Coals From Elkhorn No. 1, Elkhorn No. 2, Leatherwood, And Harlan Beds ? Introduction And Summary

    By J. D. Davis

    THIS report gives results of an investigation of the carbonizing properties of the following eastern Kentucky coals: Elkhorn No. I bed, No. 28 mine, Wayland, Floyd County; Elkhorn No. 2 bed, Turner No

    Jan 1, 1952

  • NIOSH
    Carbonizing Properties And Petrographic Composition Of No. 2-Bed Coal From Bartoy Mine And No. S-Bed Coal From Wilkeson-Miller Mine, Wilkeson, Pierce County, Wash. ? Introduction And Summary

    By J. D. Davis

    The carbonizing properties of No. 2-bed coal from the Bartoy mine and No. 5- or Miller-bed coal from the Wilkeson-Miller mine, both at Wilkeson, Pierce County, Wash., were determined by the Bureau of

    Jan 1, 1942

  • NIOSH
    Carbonizing Properties Of West Virginia Coals And Blends Of Coals From The Alma, Cedar Grove, Dorothy Powellton A, Eagle, Pocahontas And Beckley Beds ? Introduction

    By A. C. Fieldner

    In 1927 the Carbonization Committee of the American Gas Association proposed cooperation with the Bureau of Mines in the development of suitable methods for determining the carbonizing properties of A

    Jan 1, 1938

  • NIOSH
    Carbonizing Properties: British Columbia, Matanuska Valley (Alaska), And Washington Coals And Blends Of Six Of Them With Lower Sunnyside (Utah) Coals ? Introduction

    By J. D. Davis

    THIS-report gives results of in investigation of the carbonizing properties of 18 coals, including 2 from Alaska, 12 from British Columbia, 3 from Washington, and 1 from Utah. Each coal was carbonized

    Jan 1, 1952

  • NIOSH
    Carbonizing Properties: Chilton Coal From Lorado No. 5 Mine Lorado, Logan County, W. Va. - Introduction And Summary

    By J. D. Davis

    THE CARBONIZING properties of Chilton-bed coal from Lorado No. 5 mine, HE Logan County, W. Va., were determined by Bureau of Mines-American Gas Association tests at 600°, 700°, 800°, 900°, and 1,000°

    Jan 1, 1951

  • NIOSH
    Carbonizing Properties: Pocahontas No. 6, Davy Sewell, And Fire Creek Coals From West Virginia And Upper And Lower Kittanning And Upper And Lower Freeport Coals From Pennsylvania

    By J. D. Davis

    THE carbonizing properties of one medium- and and five low-volatile coals from West Virginia and one high-volatile A and two medium-volatile coals from Pennsylvania were determined by 800° and 900° C.

    Jan 1, 1950

  • NIOSH
    Carbonizing Properties: Tennessee Coals From The Jellico Bed In Campbell County And The Sewanee Bed In Marion County - Introduction And Summary

    By D. A. Reynolds

    THIS REPORT gives results of an investigation of the carbonizing properties of two Tennessee coals, one from the Jellico bed in Campbell County and the other from the Sewanee bed in Marion County. Jel

    Jan 1, 1953

  • NIOSH
    Carbonizing Properties: West Virginia Coals From The Beckley Bed, Caretta No. 5 Mine, McDowell County, And Glen Rogers No. 2 Mine, Wyoming County - Introduction And Summary

    By D. A. Reynolds

    THIS PAPER gives results of an investigation of the composition and carbonizing properties of coals from the Beckley bed, Caretta No. 5 mine, Susanna, McDowell County, and Glen Rogers No. 2 mine, Glen

    Jan 1, 1953

  • NIOSH
    Carbonizing Properties: West Virginia Coals From The Pittsburgh Bed Jamison No. 9 Mine, Marion County, And Upper Freeport Bed, Bull Run No. 1 Mine, Preston County ? Introduction And Summary

    By J. D. Davis

    THIS REPORT gives results of an investi¬gation of the carbonizing properties of coals from Pittsburgh bed, Jamison No. 9 mine, Marion County, W. Va., and from Upper Freeport bed, Bull Run No. 1 mine,

    Jan 1, 1952

  • IMPC
    Carbothermal Reduction and Nitride Preparing for Vanadium Nitride via One-step Method

    By S. S. Yu

    In this paper, the producing process of using V2O3 as raw material to obtain vanadium nitride was analyzed through the means of thermodynamic. The analysis shows that conversion follows the principle

    Jan 1, 2014

  • TMS
    Carbothermal Reduction Study Of Kaolin And Two Different Silica Sources

    By Sutham Niyomwas

    Synthesis of alumina-mullite-silicon carbide composite (Al2O3-Al6Si2O13-SiCw) was obtained in situ by carbothermal reduction of a mixture of kaolin and two different silica sources. The carbothermal r

    Jan 1, 2006

  • SAIMM
    Carbothermic reduction of a willemite concentrate for use in the Waelz process

    By V. A. Leão, V. S. Coimbra, V. A. A. Oliveira, R. F. M. de Souza, G. M. de Lima

    A willemite concentrate consisting mainly of willemite (55.3%) and dolomite (15.6%) was reduced in a tube furnace with charcoal as reductant. The effects of temperature and varying reductant additions

    Nov 6, 2023

  • TMS
    Carbothermic Reduction of Chalcopyrite in Presence of Lime

    By Animesh Jha

    The carbothermic reduction of chalcopyrite has been studied in the temperature range 1073 to 1273K in presence of lime. The role of lime during the reduction process is explained and the phase equilib

    Jan 1, 1992

  • TMS
    Carbothermic Reduction Of Minerals In A Plasma Environment

    By J. J. Moore

    The application of plasma technology to process metallurgy is briefly discussed. Experiments involving in-flight reduction of minerals (taconite, chromite, in particular) with a solid-based carbon red

    Jan 1, 1985

  • TMS
    Carbothermic Reduction of Nickel-Cobalt-Chromium Oxide Mixture for the Production of NiCoCr Superalloy Powder

    By Eoghan T. M Doyle

    Oxide mixtures of nickel (NiO), cobalt (COO) and chromium (Cr203) were prepared with graphite in stoichiometric amounts and the powder mixtures were compacted to produce cylindrical pellets. The compo

    Jan 1, 1992

  • SME
    Carboxyl Stretching Vibrations Of Spontaneously Adsorbed And Lb Transferred Calcium Carboxylates As Determined By FTIR Internal Reflection Spectroscopy

    The nature of adsorbed calcium carboxylates (oleate and stearate) has been investigated by in-situ/ex-situ Fourier transform infrared internal reflection spectroscopy (FTIR/IRS). Previous spectroscopi

    Jan 1, 1998