ISBN-10:
3527295909
ISBN-13:
9783527295906
Pub. Date:
06/28/2000
Publisher:
Wiley
Microreactors: New Technology for Modern Chemistry / Edition 1

Microreactors: New Technology for Modern Chemistry / Edition 1

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Overview

Tiny devices with huge potential!

New concepts of chemical synthesis have led to an increasing demand for miniaturization and more complex systems. Microreaction technology is a hot topic as it opens completely new possibilities for chemical engineering, combinatorial chemistry, and biotechnology. Small, inexpensive, independent, and versatile devices ensure many reactions achieve maximum selectivity, minimum waste, minimum investment, a better control of the process, safe manufacture and production on demand - to create a more efficient process.

This book outlines the fabrication techniques of microfluidic components, unit operations of micro-chemical engineering and current world-wide activities. Requirements with respect to needs of the chemical industry have been included.

Chemists, chemical engineers, biotechnologists, process engineers, microsystem technologists in the chemical and pharmaceutical industry and academia, as well as manufacturers of analytical instruments, will find this book a state-of- the-art review of this extremely interesting and rapidly developing field.

Product Details

ISBN-13: 9783527295906
Publisher: Wiley
Publication date: 06/28/2000
Edition description: 1 ED
Pages: 300
Product dimensions: 6.70(w) x 9.60(h) x 0.90(d)

About the Author

Wolfgang Ehrfeld and Volker Hessel are the authors of Microreactors: New Technology for Modern Chemistry, published by Wiley.

Table of Contents

State of the Art of Microreaction Technology
Modern Microfabrication Techniques for Microreactors
Micromixers
Micro Heat Exchangers
Microseparation Systems and Specific Analytical Modules for Microreactors
Microsystems for Liquid Phase Reactions
Microsystems for Gas Phase Reactions
Gas/Liquid Microreactors
Microsystems for Energy Generation
Microsystems for Catalyst and Material Screening
Methodology for Distributed Production
References

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