LEADER 06351nam 2200769Ia 450 001 9911004841903321 005 20251116163938.0 010 $a1-5231-0489-9 010 $a1-283-10105-X 010 $a9786613101051 010 $a1-118-06207-8 010 $a1-118-06208-6 010 $a1-118-06206-X 035 $a(CKB)2550000000033009 035 $a(EBL)693664 035 $a(OCoLC)747408902 035 $a(SSID)ssj0000506298 035 $a(PQKBManifestationID)11331340 035 $a(PQKBTitleCode)TC0000506298 035 $a(PQKBWorkID)10514078 035 $a(PQKB)10763294 035 $a(MiAaPQ)EBC693664 035 $a(Au-PeEL)EBL693664 035 $a(CaPaEBR)ebr10464665 035 $a(CaONFJC)MIL310105 035 $a(EXLCZ)992550000000033009 100 $a20110519d2011 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$a2nd International Symposium on High-Temperature Metallurgical Processing $eproceedings of a symposium /$fsponsored by the Pyrometallurgy Committee of the Extraction and Processing Division and the Energy Committee of the Extraction and Processing Division and the Light Metals Division of TMS (The Minerals, Metals & Materials Society) ; edited by Jiann-Yang Hwang ... [et al.] 205 $a1st ed. 210 $aWarrendale, Pa. $cMinerals, Metals and Materials Society ;$aHoboken, N.J. $cWiley$dc2011 215 $a1 online resource (435 p.) 300 $aSymposium "held during the TMS 2011 Annual Meeting & Exhibition, San Diego, California, U.S.A., February 27-March 3, 2011." 311 08$a1-118-02938-0 320 $aIncludes bibliographical references and indexes. 327 $a2nd International Symposium on High-Temperature Metallurgical Processing; TABLE OF CONTENTS; Foreword; Editors; 2nd International Symposium on High-Temperature Metallurgical Processing; Energy Efficient New Metal Production Technology; Intrinsic Hydrogen Reduction Kinetics of Magnetite Concentrate Particles Relevant to a Novel Green Ironmaking Technology; A Laboratory Investigation of the Reduction of the Iron Carbonate Bearing Ore to Iron Nugget by Means of the ITmk3 Technology; Behavior of Coal-Based Direct Reduction Reaction of Iron Oxide Pellets by Microwave Heating 327 $aCarbothermal Reduction of Titanium Concentrate at High TemperatureA Simulation Study on Flue Gas Circulating Sintering (FGCS) for Iron Ores; Optimizations of Preparation for U3O8 by Calcination from Ammonium Durante Using Response Surface Methodology; Microwave Field Attenuation Length and Half-Power Depth in Magnetic Materials; Vanukov Furnace Technology: Application Experience for Processing Different Types of Raw Materials and General Development Trends; Microwave Heating and Iron and Steel Production; A Study of Coal-Based Direct Reduction of Composite Binder Magnetite Preheated Pellets 327 $aMicrowave Dielectric Properties of Pyrolyzed CarbonFugitive Emissions Related to Oxidation of Liquid Silicon during Ladle Refining; Reduction Kinetics of Iron Oxide in CaO-SiO2-Al2O3-FexO-C Mixtures; Optimization of the Process Variables for Making Direct Reduced Iron by Microwave Heating Using Response Surface Methodology; Study on Nucleation and Growth Mechanism of Iron Crystal Grain in Coal-Based Shaft Furnace Direct Reduction Iron Pellets by Microwave Heating; Investigation on a Microwave High-Temperature Air Heat Exchanger; Refractories, Slag and Recycling 327 $aStudy on Preparation of High-Quality Synthetic Rutile from Titanium Slag by Activation Roasting Followed by Acid LeachingCalculation of Phase Equilibria Relations in CaO-SiO2-FeOx-MgO System; Dissolution Behavior of Rhodium into Molten Slag; ""One Step"" Technology to Separate Copper, Zinc, Lead from Iron in Metallurgical Slag and Pyrite Cinder: Part 2 - Pilot Test; Effect of Oxygen to Alumina Ratio on the Viscosity of Aluminosilicate and Aluminate Systems; Blast Furnace Burdens Preparation from Metallurgical Dusts and Sludges with Composite Binder 327 $aDetermination of FeO Containing Liquid Slag Surface Tensions Using the Sessile Drop MethodPreparation of Partially Stabilized Zirconia and Interface Structure Analysis; Characteristic of Mineralization of Specularite Iron Ores during Composite Agglomeration Processing; Ferrous and Nonferrous Metals; Enhancing the Pelletization of Brazilian Hematite by Adding Boron Bearing Additives; Study on Improving the Quality of Pellet Made from Vale Hematite Pellet Feed; Decomposition and Oxidation of Bismuthinite in Nitroge-Oxygen Atmospheres 327 $aPyrometallurgical Controls of Silver-Residue Smelting in a Short Rotary Furnace 330 $aHigh Temperature Metallurgical Processing contains the proceedings of the Second International Symposium on Thermal Processing of Minerals, Metals and Materials. This symposium explores physical and chemical transformations in materials that have been designed to facilitate the recovery of valuable metals or produce other useful materials. Representatives from both industry and academia focused on the latest innovative high temperature technologies. Because high temperature processes require high energy input, the presenters addressed the need for sustainable technologies that could pro 606 $aMaterials at high temperatures$vCongresses 606 $aHigh temperature superconductors 606 $aSuperconductors$vCongresses 615 0$aMaterials at high temperatures 615 0$aHigh temperature superconductors. 615 0$aSuperconductors 676 $a669 676 $a669.95 701 $aHwang$b Jiann-Yang$01785523 712 02$aMinerals, Metals and Materials Society.$bPyrometallurgical Committee. 712 02$aMinerals, Metals and Materials Society.$bEnergy Committee. 712 02$aMinerals, Metals and Materials Society.$bLight Metals Division. 712 02$aMinerals, Metals and Materials Society.$bMeeting$f(2011 :$eSan Diego, Calif.) 712 12$aInternational Symposium on High-Temperature Metallurgical Processing. 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9911004841903321 996 $a2nd International Symposium on High-Temperature Metallurgical Processing$94387732 997 $aUNINA