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This book provides a detailed overview of the plasma fluidized bed.
It is an innovative tool and generally combines plasma process with
another efficient reactor, fluidized bed, providing an excellent
method for particulate processes over conventional technology. The
development and designs of typical types of plasma fluidized beds,
mainly thermal plasma fluidized beds and non-thermal plasma
fluidized beds are discussed. The influencing factors on the
performance of plasma fluidized beds are analyzed in detail. The
mechanism, i.e. the discharge characteristics, hydrodynamics, heat
transfer and mass transfer are analyzed to offer a further insight
of plasma fluidized beds. Applications of plasma fluidized beds for
different areas, including metallurgy extraction, green energy
process, environmental protection and advanced materials are
presented. The book is a valuable reference for scientists,
engineers and graduate students in chemical engineering and
relative fields.
This book introduces a new technology for environmental protection,
namely plasma cleaning. It brings together technological advances
and research on plasma generators and their application in
environmental science and engineering, including contaminated soil
remediation, waste water degradation, metal recovery from waste
solution, sterilization and polluted air remediation. It provides a
balanced and comprehensive discussion of the core principles, novel
plasma reactors and diagnostics, and state-of-the-art environmental
applications of plasma. As such, it represents a valuable reference
guide for scientists, engineers and graduate students in the fields
of environmental science and plasma physics.
This book provides an overview of hydrogen production from
renewable resources such as ethanol using plasma or
plasma-catalytic technologies. Further, it presents a balanced and
comprehensive treatment of the core principles, novel plasma
reactors and diagnostics, as well as state-of-the-art plasma energy
applications. It brings together technological advances and
research on plasma generators and their application in hydrogen
production, including plasma-assisted alcohol reforming technology,
plasma-catalytic alcohol reforming technology, the alcohol
reforming mechanism, models of alcohol reforming for hydrogen
production, the energy balance of hydrogen production from ethanol,
and a comparison of alcohol reforming assisted by different plasma
treatment systems. As such, it offers a valuable reference guide
for scientists, engineers and graduate students in the fields of
energy and environment, plasma physics and chemistry.
This book provides a detailed overview of the plasma fluidized bed.
It is an innovative tool and generally combines plasma process with
another efficient reactor, fluidized bed, providing an excellent
method for particulate processes over conventional technology. The
development and designs of typical types of plasma fluidized beds,
mainly thermal plasma fluidized beds and non-thermal plasma
fluidized beds are discussed. The influencing factors on the
performance of plasma fluidized beds are analyzed in detail. The
mechanism, i.e. the discharge characteristics, hydrodynamics, heat
transfer and mass transfer are analyzed to offer a further insight
of plasma fluidized beds. Applications of plasma fluidized beds for
different areas, including metallurgy extraction, green energy
process, environmental protection and advanced materials are
presented. The book is a valuable reference for scientists,
engineers and graduate students in chemical engineering and
relative fields.
This book provides an overview of hydrogen production from
renewable resources such as ethanol using plasma or
plasma-catalytic technologies. Further, it presents a balanced and
comprehensive treatment of the core principles, novel plasma
reactors and diagnostics, as well as state-of-the-art plasma energy
applications. It brings together technological advances and
research on plasma generators and their application in hydrogen
production, including plasma-assisted alcohol reforming technology,
plasma-catalytic alcohol reforming technology, the alcohol
reforming mechanism, models of alcohol reforming for hydrogen
production, the energy balance of hydrogen production from ethanol,
and a comparison of alcohol reforming assisted by different plasma
treatment systems. As such, it offers a valuable reference guide
for scientists, engineers and graduate students in the fields of
energy and environment, plasma physics and chemistry.
This book introduces a new technology for environmental protection,
namely plasma cleaning. It brings together technological advances
and research on plasma generators and their application in
environmental science and engineering, including contaminated soil
remediation, waste water degradation, metal recovery from waste
solution, sterilization and polluted air remediation. It provides a
balanced and comprehensive discussion of the core principles, novel
plasma reactors and diagnostics, and state-of-the-art environmental
applications of plasma. As such, it represents a valuable reference
guide for scientists, engineers and graduate students in the fields
of environmental science and plasma physics.
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