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One of the major challenges confronting the mining and minerals processing industry in the 21st century will be managing in an environment of ever decreasing water resources. Because most mineral processing requires high water use, there will be even more urgency to develop and employ sustainable technologies that will reduce consumption and the discharge of process-affected water. Water in Mineral Processing provides a comprehensive, state-of-the-art examination of this vital issue. A compilation of papers presented at the First International Symposium on Water in Mineral Process
Mineral industries --- Water reuse. --- Dredging spoil --- Water-supply. --- Waste disposal --- Environmental aspects.
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Materials at high temperatures --- High-temperature superconductors --- Metals --- Light metals --- Alloys --- Effect of high temperatures on --- Metallurgy
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In recent years, global metallurgical industries have experienced fast and prosperous growth. High-temperature metallurgical technology is the backbone to support the technical, environmental, and economical needs for this growth. This collection features contributions covering the advancements and developments of new high-temperature metallurgical technologies and their applications to the areas of processing of minerals; extraction of metals; preparation of refractory and ceramic materials; sintering and synthesis of fine particles; treatment and recycling of slag and wastes; and saving of energy and protection of environment. The volume will have a broad impact on the academics and professionals serving the metallurgical industries around the world.
Surfaces (Physics). --- Materials. --- Characterization and Evaluation of Materials. --- Metallic Materials. --- Materials Engineering. --- Materials at high temperatures --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Physics --- Surface chemistry --- Surfaces (Technology) --- Materials --- Materials science. --- Metals. --- Engineering—Materials. --- Metallic elements --- Chemical elements --- Ores --- Metallurgy --- Material science --- Physical sciences
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In recent years, global metallurgical industries have experienced fast and prosperous growth. High-temperature metallurgical technology is the backbone to support the technical, environmental, and economical needs for this growth. This collection features contributions covering the advancements and developments of new high-temperature metallurgical technologies and their applications to the areas of processing of minerals; extraction of metals; preparation of refractory and ceramic materials; sintering and synthesis of fine particles; treatment and recycling of slag and wastes; and saving of energy and protection of environment. The volume will have a broad impact on the academics and professionals serving the metallurgical industries around the world.
Physics --- Surface chemistry --- Metals and their compounds --- Materials sciences --- Applied physical engineering --- materiaalkennis --- oppervlakte-onderzoek --- metalen
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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.
Materials science. --- Acoustical engineering. --- Engineering --- Materials Science. --- Characterization and Evaluation of Materials. --- Materials Engineering. --- Engineering Acoustics. --- Materials. --- Engineering materials --- Industrial materials --- Acoustic engineering --- Sonic engineering --- Sonics --- Sound engineering --- Sound-waves --- Material science --- Materials --- Industrial applications --- Engineering design --- Manufacturing processes --- Physical sciences
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Characterization is an important and fundamental step in material research before and after processing. This bookfocuses on the characterization of minerals, metals, and materials as well as the application of characterization results on the processing of these materials. It is a highly authoritative collection of articles written by experts from around the world. The articles center on materials characterization, extraction, processing, corrosion, welding, solidification, and method development. In addition, articles focus on clays, ceramics, composites, ferrous metals, non-ferrous metals, minerals, electronic, magnetic, environmental, advanced and soft materials. This book will serve the dual purpose of furnishing a broad introduction of the field to novices while simultaneously serving to keep subject matter experts up-to-date.
Materials science. --- Engineering --- Ceramics. --- Glass. --- Composites (Materials). --- Composite materials. --- Materials Science. --- Characterization and Evaluation of Materials. --- Ceramics, Glass, Composites, Natural Materials. --- Materials Engineering. --- Materials. --- Material science --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Ceramic technology --- Industrial ceramics --- Keramics --- Engineering materials --- Industrial materials --- Materials --- Physical sciences --- Amorphous substances --- Ceramics --- Glazing --- Building materials --- Chemistry, Technical --- Clay --- Engineering design --- Manufacturing processes
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This collection focuses on the characterization of minerals, metals, and materials as well as the application of characterization results on the processing of these materials. Papers cover topics such as clays, ceramics, composites, ferrous metals, non-ferrous metals, minerals, electronic materials, magnetic materials, environmental materials, advanced materials, and soft materials. In addition, papers covering materials extraction, materials processing, corrosion, welding, solidification, and method development are included. This book provides a current snapshot of characterization in materials science and its role in validating, informing, and driving current theories in the field of materials science. This volume will serve the dual purpose of furnishing a broad introduction of the field to novices while simultaneously serving to keep subject matter experts up-to-date.
Materials science. --- Metals. --- Ceramics. --- Glass. --- Composites (Materials). --- Composite materials. --- Materials Science. --- Characterization and Evaluation of Materials. --- Metallic Materials. --- Ceramics, Glass, Composites, Natural Materials. --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Ceramic technology --- Industrial ceramics --- Keramics --- Metallic elements --- Material science --- Materials --- Amorphous substances --- Ceramics --- Glazing --- Building materials --- Chemistry, Technical --- Clay --- Chemical elements --- Ores --- Metallurgy --- Physical sciences
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The technology, operation, energy, environmental, analysis, and future development of the metallurgical industries utilizing high temperature processes are covered in the book. The innovations on the extraction and production of ferrous and nonferrous metals, alloys, and refractory and ceramic materials, the heating approaches and energy management, and the treatment and utilizations of the wastes and by-products are the topics of special interests. This book focuses on the following issues: •High Efficiency New Metallurgical Process and Technology Fundamental Research of Metallurgical Process •Alloys and Materials Preparation •Direct Reduction and Smelting Reduction •Coking, New Energy and Environment •Utilization of Solid Slag/Wastes and Complex Ores •Characterization of High Temperature Metallurgical Process.
Materials science. --- Acoustical engineering. --- Engineering --- Materials Science. --- Characterization and Evaluation of Materials. --- Materials Engineering. --- Engineering Acoustics. --- Materials. --- Engineering materials --- Industrial materials --- Acoustic engineering --- Sonic engineering --- Sonics --- Sound engineering --- Sound-waves --- Material science --- Materials --- Industrial applications --- Engineering design --- Manufacturing processes --- Physical sciences
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This collection features contributions covering the advances and developments of new high-temperature metallurgical technologies and their applications to the areas of: processing of minerals; extraction of metals; preparation of metallic, refractory, and ceramic materials; treatment and recycling of slag and wastes; conservation of energy; and environmental protection. The volume will have a broad impact on the academics and professionals serving the metallurgical industries around the world by providing them with comprehensive coverage of a wide variety of topics.
Materials at high temperatures --- High-temperature superconductors --- Metals --- Light metals --- Alloys --- Effect of high temperatures on --- Metallurgy --- Materials science. --- Engineering --- Metals. --- Materials Science. --- Characterization and Evaluation of Materials. --- Metallic Materials. --- Materials Engineering. --- Materials. --- Surfaces (Physics). --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Physics --- Surface chemistry --- Surfaces (Technology) --- Materials --- Engineering—Materials. --- Metallic elements --- Chemical elements --- Ores --- Material science --- Physical sciences
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In recent years, global metallurgical industries have experienced fast and prosperous growth. High-temperature metallurgical technology is the backbone to support the technical, environmental, and economical needs for the growth. This collection features contributions covering the advancements and developments of new high-temperature metallurgical technologies and their applications to the areas of processing of minerals; extraction of metals; preparation of metallic, refractory and ceramic materials; treatment and recycling of slag and wastes; and saving of energy and protection of environment.The volume will have a broad impact on the academics and professionals serving the metallurgical industries around the world.
Materials at high temperatures --- High-temperature superconductors --- Materials science. --- Engineering --- Metals. --- Materials Science. --- Characterization and Evaluation of Materials. --- Metallic Materials. --- Materials Engineering. --- Materials. --- Surfaces (Physics). --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Physics --- Surface chemistry --- Surfaces (Technology) --- Materials --- Engineering—Materials. --- Metallic elements --- Chemical elements --- Ores --- Metallurgy --- Material science --- Physical sciences
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