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Showing 1 - 4 of
4 matches in All Departments
Oxygen Reduction Reaction: Fundamentals, Materials and Applications
covers the design, synthesis and performance efficacies of the
entire spectrum of oxygen reduction catalysts, extrapolating down
to their applications in practical, alternative, renewable energy
devices. Catalysts covered include heme inspired iron-based, heme
inspired non-iron-based, non-heme-based, noble metal-based,
non-noble metal-based and metal-free homogeneous and heterogeneous
catalysts. The book contains critical analyses and opinions from
experts around the world, making it of interest to scientists,
engineers, industrialists, entrepreneurs and students.
Advancements in Polymer-Based Membranes for Water Remediation
describes the advanced membrane science and engineering behind the
separation processes within the domain of polymer-based membrane
systems in water remediation. Emphasis has been put on several
aspects, ranging from fundamental concepts to the commercialization
of pressure and potential driven membranes, updated with the latest
technological progresses, and relevant polymer materials and
application potential towards water treatment systems. Also
included in this book are advances in polymers for membrane
application in reverse osmosis, nanofiltration, ultrafiltration,
microfiltration, forward osmosis, and polymeric ion-exchange
membranes for electrodialysis and capacitive deionization. With its
critical analyzes and opinions from experts around the world, this
book will garner considerable interest among actual users, i.e.,
scientists, engineers, industrialists, entrepreneurs and students.
Progress and Recent Trends in Microbial Fuel Cells provides an
in-depth analysis of the fundamentals, working principles,
applications and advancements (including commercialization aspects)
made in the field of Microbial Fuel Cells research, with critical
analyses and opinions from experts around the world. Microbial Fuel
cell, as a potential alternative energy harnessing device, has been
progressing steadily towards fruitful commercialization.
Involvements of electrolyte membranes and catalysts have been two
of the most critical factors toward achieving this progress. Added
applications of MFCs in areas of bio-hydrogen production and
wastewater treatment have made this technology extremely attractive
and important. .
Direct Methanol Fuel Cell Technology presents the overall progress
witnessed in the field of DMFC over the past decade, highlighting
the components, materials, functions, properties and features,
designs and configurations, operations, modelling, applications,
pros and cons, social, political and market penetration, economics
and future directions. The book discusses every single aspect of
DMFC device technology, the associated advantages and drawbacks of
state-of-the-art materials and design, market opportunities and
commercialization aspects, and possible future directions of
research and development. This book, containing critical analyses
and opinions from experts around the world, will garner
considerable interest among actual users/scientists/experts.
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