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Intensification of Liquid–Liquid Processes

$117.00 USD

Part of Cambridge Series in Chemical Engineering

  • Date Published: April 2020
  • availability: This ISBN is for an eBook version which is distributed on our behalf by a third party.
  • format: Adobe eBook Reader
  • isbn: 9781108372893

$ 117.00 USD
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  • Explore and review novel techniques for intensifying transport and reaction in liquid-liquid and related systems with this essential toolkit. Topics include discussion of the principles of process intensification, the nexus between process intensification and sustainable engineering, and the fundamentals of liquid-liquid contacting, from an expert with over forty-five years' experience in the field. Providing promising directions for investment and for new research in process intensification, in addition to a unique review of the fundamentals of the topic, this book is the perfect guide for senior undergraduate students, graduate students, developers, and research staff in chemical engineering and biochemical engineering.

    • Features state-of-the-art reviews of specific intensification techniques in liquid-liquid systems, including enhancement of fluid dynamics, liquid membranes and new solvents, and a summary of underpinning recent research in each case
    • Provides an updated overview of the fundamentals of drop behaviour and mass transfer phenomena in liquid-liquid systems
    • Contains information to inform choice of new potential intensification techniques for industrial liquid-liquid processes, and to enable informed decisions on directions for new research and development
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    Product details

    • Date Published: April 2020
    • format: Adobe eBook Reader
    • isbn: 9781108372893
    • contains: 259 b/w illus.
    • availability: This ISBN is for an eBook version which is distributed on our behalf by a third party.
  • Table of Contents

    1. Introduction
    2. Droplets and dispersions
    3. Mass transfer
    4. Membrane and emulsion based intensifications
    5. High gravity fields
    6. Electrically driven intensification of liquid-liquid processes
    7. Intensification of liquid-liquid coalescence
    8. Ionic liquid solvents and intensification
    9. Liquid-liquid phase transfer catalysis.

  • Author

    Laurence R. Weatherley, University of Kansas
    Laurence Weatherley is a Distinguished Professor at the University of Kansas.

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