Intensification of Liquid–Liquid Processes
Part of Cambridge Series in Chemical Engineering
- Author: Laurence R. Weatherley, University of Kansas
- Date Published: May 2020
- availability: Available
- format: Hardback
- isbn: 9781108421010
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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.
Read more- 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: May 2020
- format: Hardback
- isbn: 9781108421010
- length: 376 pages
- dimensions: 253 x 178 x 22 mm
- weight: 0.88kg
- contains: 259 b/w illus.
- availability: Available
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.
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