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Topics on CO2 sequestration and reduction in greenhouse gas
emissions from process engineering and materials for clean energy
are covered. Papers addressing sustainable technologies in
extractive metallurgy, materials processing and manufacturing
industries with reduced energy consumption and CO2 emission are
also included, as well as industrial energy efficient technologies
including innovative ore beneficiation, smelting technologies,
recycling and waste heat recovery. The book also carries
contributions from all areas of non-nuclear and non-traditional
energy sources, including renewable energy sources such as solar,
wind, biomass, etc. The book also emphasizes novel mineral
beneficiation, processing, and extraction techniques leading to
waste minimization of critical rare-earth materials used in energy
systems (e.g., magnets, display and lighting devices).
Topics covered in this collection include the following: *Enabling
& Understanding Sustainability - Ferrous & Non-ferrous
Metals Processing *Understanding & Enabling Sustainability -
(Rechargeable) Batteries *Enabling & Understanding
Sustainability - Rare Earth Element Applications *Enabling &
Understanding Sustainability - Building Materials & Slag
Valorisation *Designing Materials and Systems for Sustainability
*Understanding & Enabling Sustainability - Light Metals
Recycling & Waste Valorisation *Understanding & Enabling
Sustainability - Education Research Innovation I *Understanding
& Enabling Sustainability - Education Research Innovation II +
Electronic Equipment
This is a collection of papers presented in the 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, gold,
indium, palladium, platinum, rare earth metals including yttrium
and neodymium, titanium, tungsten, and vanadium. The rare
processing techniques covered include direct extraction process for
rare earth element 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.
With impending and burgeoning societal issues affecting both
developed and emerging nations, the global engineering community
has a responsibility and an opportunity to truly make a difference
and contribute. The papers in this collection address what
materials and resources are integral to meeting basic societal
sustainability needs in critical areas of energy, transportation,
housing, and recycling. Contributions focus on the engineering
answers for cost-effective, sustainable pathways; the strategies
for effective use of engineering solutions; and the role of the
global engineering community. Authors share perspectives on the
major engineering challenges that face our world today; identify,
discuss, and prioritize engineering solution needs; and establish
how these fit into developing global-demand pressures for materials
and human resources.
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 book covers various technological aspects of sustainable
energy ecosystems and processes that improve energy efficiency, and
reduce and sequestrate carbon dioxide (CO2) and other greenhouse
emissions. Papers emphasize the need for sustainable technologies
in extractive metallurgy, materials processing and manufacturing
industries with reduced energy consumption and CO2 emission.
Industrial energy efficient technologies include innovative ore
beneficiation, smelting technologies, recycling, and waste heat
recovery. The book also contains contributions from all areas of
non-nuclear and non-traditional energy sources, including renewable
energy sources such as solar, wind, and biomass. Papers from the
following symposia are presented in the book: Energy Technologies
and Carbon Dioxide Management Recycling and Sustainability Update
Magnetic Materials for Energy Applications V Sustainable Energy and
Layered Double Hydroxides
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Drying, Roasting, and Calcining of Minerals (Hardcover, 1st ed. 2016)
Thomas Battle, Jerome Downey, Lawrence May, Boyd Davis, Neale Neelameggham, …
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R4,093
R3,517
Discovery Miles 35 170
Save R576 (14%)
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Ships in 12 - 17 working days
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The papers in this volume give the reader focused information on
the important extractive metallurgy unit operations of drying,
roasting, and calcining
Topics covered in this collection include the following: *Enabling
& Understanding Sustainability - Ferrous & Non-ferrous
Metals Processing *Understanding & Enabling Sustainability -
(Rechargeable) Batteries *Enabling & Understanding
Sustainability - Rare Earth Element Applications *Enabling &
Understanding Sustainability - Building Materials & Slag
Valorisation *Designing Materials and Systems for Sustainability
*Understanding & Enabling Sustainability - Light Metals
Recycling & Waste Valorisation *Understanding & Enabling
Sustainability - Education Research Innovation I *Understanding
& Enabling Sustainability - Education Research Innovation II +
Electronic Equipment
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