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This collection offers new research findings, innovations, and
industrial technological developments in extractive metallurgy,
energy and environment, and materials processing. Technical topics
included in the book are thermodynamics and kinetics of
metallurgical reactions, electrochemical processing of materials,
plasma processing of materials, composite materials, ionic liquids,
thermal energy storage, energy efficient and environmental cleaner
technologies and process modeling. These topics are of interest not
only to traditional base ferrous and non-ferrous metal industrial
processes but also to new and upcoming technologies, and they play
important roles in industrial growth and economy worldwide.
With both nickel and cobalt featuring heavily in modern industry,
there is an ongoing and intense interest in ore supplies and
processing, applications development, and recycling. This book
presents a collection of authoritative papers covering the latest
advances in all aspects of nickel and cobalt processing, including
fundamentals, technology, operating practices, and related areas of
Platinum-Group Metals (PGM) processing. Special emphasis is given
to the treatment of sulphide and laterite ores, concentrates, and
secondary materials for the production of nickel and cobalt.
This collection presents papers from a symposium on extraction of
rare metals as well as rare extraction processing techniques used
in metal production. Topics include the extraction and processing
of elements such as antimony, arsenic, gold, indium, palladium,
platinum, rare earth metals including yttrium and neodymium,
titanium, tungsten, and vanadium. Rare processing techniques are
covered, including direct extraction processes for rare-earth
recovery, biosorption of precious metals, fluorination behavior of
uranium and zirconium mixture of fuel debris treatment, and
recovery of valuable components of commodity metals such as zinc,
nickel, and metals from slag.
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 presents the papers from a symposium on extraction
of rare metals as well as rare extraction processing techniques
used in metal production. Paper topics include the extraction and
processing of elements like antimony, arsenic, calcium, chromium,
hafnium, gold, indium, lithium, molybdenum, niobium, rare earth
metals, rhenium, scandium, selenium, silver, strontium, tantalum,
tellurium, tin, tungsten, vanadium, and zirconium. Rare processing
techniques presented include bio leaching, molecular recognition
technology, recovery of valuable components of commodity metals
such as magnesium from laterite process wastes, titanium from
ilmenites, and rare metals from wastes such as phosphors and LCD
monitors.
This collection presents papers from a symposium on extraction of
rare metals as well as rare extraction processing techniques used
in metal production. Topics include the extraction and processing
of elements such as antimony, arsenic, gold, indium, palladium,
platinum, rare earth metals including yttrium and neodymium,
titanium, tungsten, and vanadium. Rare processing techniques are
covered, including direct extraction processes for rare-earth
recovery, biosorption of precious metals, fluorination behavior of
uranium and zirconium mixture of fuel debris treatment, and
recovery of valuable components of commodity metals such as zinc,
nickel, and metals from slag.
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 offers new research findings, innovations, and
industrial technological developments in extractive metallurgy,
energy and environment, and materials processing. Technical topics
included in the book are thermodynamics and kinetics of
metallurgical reactions, electrochemical processing of materials,
plasma processing of materials, composite materials, ionic liquids,
thermal energy storage, energy efficient and environmental cleaner
technologies and process modeling. These topics are of interest not
only to traditional base ferrous and non-ferrous metal industrial
processes but also to new and upcoming technologies, and they play
important roles in industrial growth and economy worldwide.
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