
6th International Symposium on High-Temperature Metallurgical Processing
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Content
2 - Half Title [Seite 2]
3 - Title Page [Seite 4]
4 - Copyright Page [Seite 5]
5 - Table of Contents [Seite 6]
6 - Preface [Seite 15]
7 - About the Editors [Seite 16]
8 - High Efficiency New Metallurgical Process and Technology [Seite 22]
8.1 - Recovery of Iron from Hematite-Rich Diasporic-Type Bauxite Ore [Seite 23]
8.2 - Al Control in High Titanium Ferro with Low Oxygen Prepared by Thermite Reaction [Seite 31]
8.3 - Production of Green Steel from Red Mud: A Novel Concept [Seite 38]
8.4 - Production of ZrB?-TiB? Ceramic Composite Powders by SHS [Seite 46]
8.5 - Study on Inclusions in CuCr25 Prepared by Thermit Reduction-Electromagnetic Casting [Seite 54]
8.6 - Progress on Protection of Titanium-Bearing Materials in Chinese Blast Furnace [Seite 62]
9 - Fundamental Research of Metallurgical Process I [Seite 69]
9.1 - Example of the Refractory Corrosion Test Work with Nickel Matte [Seite 70]
9.2 - Effects of Functional Additives on the SHS of Boron Carbide [Seite 78]
9.3 - High Temperature Softening Behaviours of Iron Blast Furnace Feeds and Their Correlations to the Microstructures [Seite 84]
9.4 - Sintering Behavior of Pelletizing Feed in Composite Agglomeration Process (CAP) of Iron Ore Fines [Seite 92]
9.5 - Effect of Anodic Polarization on Layer-Growth of Fe-Ni-Cr Anodes in Cryolite-Alumina Melts [Seite 100]
9.6 - Influence of Mineralogy on Metallurgical Properties of Lump Ore [Seite 108]
9.7 - Study on Thermal Physical Properties of 304 Stainless Steel [Seite 116]
9.8 - Solubility of SC?O? in NA?ALF?-K?ALF?-ALF? Melts [Seite 122]
9.9 - Formation Mechanism of 2CaO·SiO? and 3CaO·P?O? Solid Solution in CaO-SiO?-FetO-P?O? Slags [Seite 130]
10 - Fundamental Research of Metallurgical Process II [Seite 138]
10.1 - Liquidus in System Cu?O - CaO -Al?O? at 1250°C [Seite 139]
10.2 - Cohering Behavior of Coal Ash with Pellet Scrap Powder and Relationship Between Coal Ash and Kiln Ringing [Seite 147]
10.3 - Improving the Pelletization of Chromite Concentrate by HPGR and Its Mechanism [Seite 155]
10.4 - Influence of Sulfur on Dissolution of Graphite in Molten Iron [Seite 163]
10.5 - Effect of MgO on Emergence of Blast Furnace Primary Slag with Comprehensive Furnace Burden [Seite 170]
10.6 - Volatilization Behavior and Mechanisms of Arsenic, Sulfur and Carbon in the Refractory Gold Concentrate [Seite 177]
10.7 - Study on Enhanced Reduction of Liquid Lead Slag with Coal Particles [Seite 185]
10.8 - Comprehensive Research on Basicity and Coal Dosage of Sinter Based on Cost Analysis [Seite 193]
10.9 - The Upper Limit of Trace Elements of Low-Grade Iron Ore Used in Sinter [Seite 201]
10.10 - Corrosion Mechanism of MgO-C Ladle Refractory in Contact with MgO-CaO-Al?O?-SiO? Slag [Seite 207]
11 - Materials Preparation [Seite 215]
11.1 - High Temperature Investigation of Viscosity for FeCrMnNi As-Cast TRIP/TWIP Steel [Seite 216]
11.2 - Production of CrB? Powder via Self Propagating High Temperature Synthesis [Seite 224]
11.3 - Formation of Intermetallic Phases in Al-Sc Alloys Prepared by Molten Salt Electrolysis at Elevated Temperatures [Seite 228]
11.4 - Chemical Processing of a High Carbon FeCr Alloy Fine Powder [Seite 236]
11.5 - Copper Removal from Ferronickel [Seite 244]
11.6 - Preparation of Al-Ti Master Alloys by Aluminothermic Reduction of TiO? in Cryolite Melts at 960°C [Seite 252]
12 - Direct Reduction and Smelting Reduction [Seite 260]
12.1 - On the Simultaneous Iron Oxide Reduction and Carburization Kinetics [Seite 261]
12.2 - Slag Chemistry of Bottom Blown Copper Smelting Furnace at Dongying Fangyuan [Seite 269]
12.3 - Reduction Behavior of Multi-Nonferrous Metals-Bearing Iron Concentrate Pellet by Mixed CO/H? Gas [Seite 277]
12.4 - Viscosity Property of Gold-Antimony Smelting Slags by Blast Furnace [Seite 285]
12.5 - Experimental Investigation on Reduction Kinetics of Stainless Steel-Making Slag in Iron Bath Smelting Reduction [Seite 293]
12.6 - Kinetics of Vanadium Extraction from Hot Metal by Basic Slag [Seite 300]
12.7 - Phase Transformation in Magnesium-Rich Nickel Oxide Ore after Reduction Roasting Process [Seite 308]
12.8 - Recovery of Cr during Smelting Treatment of Stainless Steel Dust [Seite 316]
12.9 - Effect of Additives on the Reduction and Melting Separation of Ludwigite/Coal Composite Pellet [Seite 324]
13 - Coking, New Energy and Environment [Seite 331]
13.1 - The Self-Reducing Pellet Production from Organic Household Waste [Seite 332]
13.2 - The Application of a Recent Thermodynamic Model for Coke Crystallites: Chemisorption of Methyl Groups, Decomposition of Natural Gas, and theReduction of Metal Oxides [Seite 340]
13.3 - The Use of Metallurgical Oil Sludge as a Reductant in a High Temperature Metallurgical Process [Seite 348]
13.4 - Kinetics between SiO and CH? at High Temperature [Seite 357]
13.5 - The Research on Process Characteristics of Different Fuels for Blast Furnace Injection [Seite 365]
13.6 - Phosphorus Removal of Oolitic High Phosphorus Iron Ore Using Biomass Char [Seite 373]
13.7 - A Prediction Model for the High-Temperature Performance of Limp Coal Used in Corex [Seite 379]
13.8 - Effective Utilization of Semicharcoal in Sintering [Seite 387]
13.9 - Influence of Coke Breeze Combustion Conditions on the Emission of NOx in Sintering Process [Seite 395]
14 - Characterization of High Temperature Metallurgical Process [Seite 403]
14.1 - Assessment of Gas-Metal-Slag Interaction in a Steel Making Ladle through Physical and Mathematical Modelling [Seite 404]
14.2 - Analysis of BF Hearth Reasonable Cooling System Based on the Water Dynamic Characteristics [Seite 412]
14.3 - Simulation Study on Solution Foaming by Controlling Gas Generation Reaction in Water-Glycerol System [Seite 420]
14.4 - Distribution Behavior of Vanadium, Chromium and Phosphorous between Basic Slag and Semi-Steel [Seite 428]
14.5 - Distribution Behaviours of Cu, Co and Fe during Cu Smelter Slag Cleaning Process [Seite 436]
14.6 - Discussion of the Investigation Method on the Reaction Kinetics of Metallurgical Reaction Engineering [Seite 444]
14.7 - Simulation Computation of 430 Ferritic Stainless Steel Solidification [Seite 452]
15 - Utilization of Solid Slag/Wastes and Complex Ores [Seite 458]
15.1 - Analysis of Sulfidation Routes for Processing Weathered Ilmenite Concentrates Containing Impurities [Seite 459]
15.2 - Use of Recycled Fluxes Substituting Fluorspar for Refining Operation in a BOF Reactor [Seite 467]
15.3 - Research on Foam Concrete Features by Replacing Cement with Industrial Waste Residues [Seite 475]
15.4 - Study on Reduction Disintegration of Sinter from Titanomagnetite Concentrate [Seite 483]
15.5 - Techno-Economic Assessment of Recycling BOF Offgas Cleaning System Solid Wastes by Using Zinc-Free Scrap [Seite 491]
15.6 - Modeling and Recovery of Iron (Fe) from Red Mud by Coal Reduction [Seite 498]
15.7 - Utilization of Iron-Bearing Dusts in Iron Ore Sintering by Composite Agglomeration Process [Seite 504]
15.8 - Thermodynamics Analysis and Industrial Trials of Bottom-Blowing Smelting for Processing Lead Sulfate-Containing Materials [Seite 512]
15.9 - Strengthening Reduction Process of Vanadium Titanao-Magnetite with CaF? Added at High Temperature [Seite 520]
15.10 - Research on the Technology of Producing Building Stone by Using Blast Furnace Slag [Seite 528]
16 - Poster Session [Seite 536]
16.1 - Recovery of Gallium from Secondary V-Recycling Slag by Alkali Fusion [Seite 537]
16.2 - Activities of Titanium Ions in Molten Calcium Chloride [Seite 545]
16.3 - Study on the Influence of Rich Oxygen Atmosphere for the Properties and Structure of Castables Used in Hot Wind Pipe of Blast Furnaces [Seite 549]
16.4 - Study on the Removal of Gases in RH Refining Progress through Experiments Using Vacuum Induction Furnace [Seite 555]
16.5 - Apparent Viscosity Measurement of Iron Particles [Seite 563]
16.6 - Effect of Al?O? on Precipitation Behavior of Phosphorus Enrichment Phase in Dephosphorization Slag [Seite 569]
16.7 - Thermodynamic Analysis of Titanium Behavior in Hot Metal and Titanium Load Foundation [Seite 577]
16.8 - Deoxidation Study on V-Ti-Fe as Hydrogen Storage Alloy [Seite 583]
16.9 - Study on Damage Mechanism of Ductile Cast Iron Cooling Stave [Seite 591]
16.10 - Application of Carbon Composite Bricks for Blast Furnace Hearth [Seite 599]
16.11 - Oxidation Character of Carbon Composite Bricks Used in Blast Furnace [Seite 607]
16.12 - Control of the Forming Behavior of Anosovite in the Reduction of Ilmenite by Hydrogen [Seite 614]
16.13 - Characteristic and Kinetics of Oxidation of Coke by CO? Based on Isothermal Method [Seite 622]
16.14 - Research Progress of Iron Carburization in Blast Furnace [Seite 630]
16.15 - Adsorptive Removal of Pb(II) from Aqueous Solution Using Raw and Wasted Low Grade Iron Ore with Phosphorus as Adsorbent [Seite 637]
16.16 - Fundamental Study of High Al?O? Sinter Softening and Melting Behavior [Seite 645]
16.17 - Suitable Water Flow and Water Temperature Difference of Blast Furnace [Seite 653]
16.18 - The Study on Vacuum Degassing Process of AlV55 Alloy [Seite 661]
16.19 - Mathematical Heat Transfer Model of Surface Quenching Process for Hot Charging [Seite 668]
16.20 - Investigation of the Slag Forming Route When Smelting Medium-Phosphorus Hot Metal [Seite 676]
16.21 - High Temperature Interaction between Sinter and Lump Ores/Pellet in Cohesive Zone of Blast Furnace [Seite 683]
16.22 - Research on Deep Reduction and Magnetic Separation of Marine Placer Based on Carbon Composite Pellet [Seite 690]
16.23 - Study on Arsenic Removal in Molten Steel [Seite 698]
16.24 - Study on Crystallization Properties of Mold Flux in Magnetic Field [Seite 1]
16.25 - Separation of Non-Metallic Inclusions from Aluminum Melt by Super Gravity [Seite 713]
16.26 - The Slagging Behavior of Single Furnace Burden [Seite 721]
16.27 - Economical Research of Dephosphorization in Single Slag Melting Process [Seite 727]
16.28 - Thermal Design Method for Strures of Microwave Hot Air Reactor [Seite 736]
16.29 - The Phase Transformation of Bayan Obo Ore Treated with Insufficient Reductant [Seite 744]
16.30 - Study on the Evolution of Nonmetallic Inclusions in N510L Beam Plate during Production Process [Seite 752]
17 - Author Index [Seite 761]
18 - Subject Index [Seite 765]
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