Jiang / Hwang / Alvear | 6th International Symposium on High-Temperature Metallurgical Processing | E-Book | sack.de
E-Book

E-Book, Englisch, 768 Seiten, eBook

Reihe: The Minerals, Metals & Materials Series

Jiang / Hwang / Alvear 6th International Symposium on High-Temperature Metallurgical Processing


1. Auflage 2016
ISBN: 978-3-319-48217-0
Verlag: Springer International Publishing
Format: PDF
Kopierschutz: 1 - PDF Watermark

E-Book, Englisch, 768 Seiten, eBook

Reihe: The Minerals, Metals & Materials Series

ISBN: 978-3-319-48217-0
Verlag: Springer International Publishing
Format: PDF
Kopierschutz: 1 - PDF Watermark



The analysis, development, and/or operation of high temperature processes that involve the production of ferrous and nonferrous metals, alloys, and refractory and ceramic materials are covered in the book. The innovative methods for achieving impurity segregation and removal, by-product recovery, waste minimization, and/or energy efficiency are also involved. Eight themes are presented:

1: High Efficiency New Metallurgical Process and Technology

2: Fundamental Research of Metallurgical Process

3: Alloys and Materials Preparation

4: Direct Reduction and Smelting Reduction

5: Coking, New Energy and Environment

6: Utilization of Solid Slag/Wastes and Complex Ores

7: Characterization of High Temperature Metallurgical Process

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


The Minerals, Metals & Materials Society (TMS) is a member-driven international professional society dedicated to fostering the exchange of learning and ideas across the entire range of materials science and engineering, from minerals processing and primary metals production, to basic research and the advanced applications of materials. Included among its nearly 13,000 professional and student members are metallurgical and materials engineers, scientists, researchers, educators, and administrators from more than 70 countries on six continents. For more information on TMS, visit www.tms.org.



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