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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.
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.
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.
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.
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
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
This collection includes the analysis, development, and operation
of high-temperature processes that involve the extraction and
processing of material resources, production, and treatment of
metals, alloys, and ceramic materials. Contributions describe
innovative methods for achieving property enhancement, impurity
segregation and removal, byproduct recovery, waste minimization,
energy efficiency, and utilization of complex ores. Also included
are various technical, economic, and environmental issues
associated with commercial-scale high-temperature processing
methods.
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.
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