• Medientyp: E-Book
  • Titel: Trickle bed reactors : reactor engineering & applications
  • Enthält: Front Cover; Trickle Bed Reactors Reactors : Engineering & Applications; Copyright; Contents; Preface; Chapter 1 - Introduction; Trickle Bed Reactors; Reactor Engineering of Trickle Bed Reactors; Organization of this Book; References; Chapter 2 - Hydrodynamics and Flow Regimes; Introduction; Flow Regimes; Flow Regime Transition; Estimation of Key Hydrodynamic Parameters; Summary; References; Chapter 3 - Reaction Engineering of Trickle Bed Reactors; Introduction; Overall Rate of Reaction; Reactor Performance Models for Trickle Bed Reactors; Summary; References
    Chapter 4 - Flow Modeling of Trickle BedsIntroduction; Characterization of Packed Beds; Single-Phase Flow through Packed Bed; Gas-Liquid Flow through Packed Beds; Summary; References; Chapter 5 - Reactor Performance and Scale-Up; Introduction; Reactor Performance; Trickle Bed Reactor Design and Scale-Up; Engineering of Trickle Bed Reactors; Summary; References; Chapter 6 - Applications and Recent Developments; Introduction; Examples of Trickle Bed Reactor Applications; Recent Developments; Closure; References; Notations; Author Index; Subject Index
  • Beteiligte: Ranade, Vivek V. [VerfasserIn]; Chaudhari, R. V. [VerfasserIn]; Gunjal, Prashant R. [VerfasserIn]
  • Erschienen: Amsterdam; Boston: Elsevier, 2011
    Online-Ausg.
  • Umfang: Online Ressource (x, 274 p.); Ill., graf. Darst
  • Sprache: Englisch
  • ISBN: 9780080931449; 0080931448; 9780444527387; 0444527389
  • RVK-Notation: VN 7320 : Allgemeines
  • Schlagwörter: Rieselreaktor
    Online-Ressource
  • Art der Reproduktion: Online-Ausg.
  • Entstehung:
  • Anmerkungen: Includes bibliographical references and indexes. - Description based on print version record
  • Beschreibung: Hydrodynamics and Flow Regimes -- Reaction Engineering of Trickle Bed Reactors -- Flow Modeling of Trickle Beds -- Reactor Performance and Scale-up -- Applications and Recent Developments

    This book provides a hybrid methodology for engineering of trickle bed reactors by integrating conventional reaction engineering models with state-of-the-art computational flow models. The content may be used in several ways and at various stages in the engineering process: it may be used as a basic resource for making appropriate reactor engineering decisions in practice; as study material for a course on reactor design, operation, or optimization of trickle bed reactors; or in solving practical reactor engineering problems. Facilitates development of high fidelity models for industrial applications Facilitates selection and application of appropriate models Guides development and application of computational models to trickle beds