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This book concerns the most up-to-date advances in computational
transport phenomena (CTP), an emerging tool for the design of
gas-solid processes such as fluidized bed systems. The authors
examine recent work in kinetic theory and CTP and illustrate
gas-solid processes' many applications in the energy, chemical,
pharmaceutical, and food industries. They also discuss the kinetic
theory approach in developing constitutive equations for gas-solid
flow systems and how it has advanced over the last decade as well
as the possibility of obtaining innovative designs for multiphase
reactors, such as those needed to capture CO2 from flue gases.
Suitable as a concise reference and a textbook supplement for
graduate courses, Computational Transport Phenomena of Gas-Solid
Systems is ideal for practitioners in industries involved with the
design and operation of processes based on fluid/particle mixtures,
such as the energy, chemicals, pharmaceuticals, and food
processing.
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