This book covers topics of equilibria and kinetics of adsorption in porous media. Fundamental equilibria and kinetics are dealt with for homogeneous as well as heterogeneous particles. Five chapters of the book deal with equilibria and eight chapters deal with kinetics. Single component as well as multicomponent systems are discussed. In kinetics analysis, we deal with the various mass transport processes and their interactions inside a porous particle. Conventional approaches as well as the new approach using Maxwell-Stefan equations are presented. Various methods to measure diffusivity, such as the Differential Adsorption Bed (DAB), the time lag, the diffusion cell, chromatography, and the batch adsorber methods are also covered by the book. It can be used by lecturers and engineers who wish to carry out research in adsorption. A number of programming codes written in MatLab language are included so that readers can use them directly to better understand the behavior of single and multicomponent adsorption systems.
Reihe
Sprache
Verlagsort
Zielgruppe
Produkt-Hinweis
Maße
Höhe: 216 mm
Breite: 155 mm
Dicke: 51 mm
Gewicht
ISBN-13
978-1-86094-130-6 (9781860941306)
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Schweitzer Klassifikation
Autor*in
Univ Of Queensland, Australia
Part 1 Equilibria: fundamentals of pure component adsorption equilibria; practical approaches of pure component adsorption equilibria; pure component adsorption in microporous solids; multicomponent adsorption equilibria; heterogeneous adsorption equilibria. Part 2 Kinetics: fundamentals of diffusion and adsorption in porous media; diffusion and adsorption in porous media - Maxwell-Stefan approach; analysis of adsorption kinetics in a single homogeneous particle; analysis of adsorption kinetics in a zeolite particle; analysis of adsorption kinetics in a heterogeneous particle. Part 3 Measurement techniques: time lag analysis in diffusion and adsorption in porous media; analysis of steady state and transient diffusion cells; adsorption and diffusion measurement by a chromatography method; kinetics of a batch adsorber.