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Materials for Carbon Dioxide Mitigation Technology offers expert
insight and experience from recognized authorities in advanced
material development in carbon mitigation technology and
constitutes a comprehensive guide to the selection and design of a
wide range of solvent/sorbent/catalyst used by scientists globally.
It appeals to chemical scientists, material scientists and
engineers, energy researchers, and environmental scientists from
academia, industry, and government in their research directed
toward greener, more efficient carbon mitigation processes.
Reactor Process Design in Sustainable Energy Technology compiles
and explains current developments in reactor and process design in
sustainable energy technologies, including optimization and
scale-up methodologies and numerical methods. Sustainable energy
technologies that require more efficient means of converting and
utilizing energy can help provide for burgeoning global energy
demand while reducing anthropogenic carbon dioxide emissions
associated with energy production. The book, contributed by an
international team of academic and industry experts in the field,
brings numerous reactor design cases to readers based on their
valuable experience from lab R&D scale to industry levels. It
is the first to emphasize reactor engineering in sustainable energy
technology discussing design. It provides comprehensive tools and
information to help engineers and energy professionals learn,
design, and specify chemical reactors and processes confidently.
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