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Accessible and written by an internationally recognized membrane scientist and inventor of membrane technology, the work covers the entire range of membrane systems, from artificial and synthetic membranes to real and in vivo membrane systems. Vieth brings together the conceptual understanding, analytical power and quantitative approaches needed to design new and more efficient types of membrane systems, for example, asymmetric enzyme membranes as biosensors. Models are presented and evaluated with applications to biocatalysis, bioreactors and other aspects of biotechnology, biomedicine and polymer science. One of the highlights is an important, timely chapter on recombinant cell reactors, which presents a complete description of the genetic control system (lac operon) and its stable functioning in a novel reactor configuration. The book will serve as an indispensable tool for designing more efficient and novel membranes and membrane bioreactors.
This work investigates the fundamental principles and quantitative methodologies required to analyze, model, and design advanced membrane systems across biological and synthetic applications. Wolf R. Vieth, an internationally recognized expert in the field, synthesizes his extensive research to provide a comprehensive framework for membrane technology. The text integrates theoretical conceptualization with practical engineering approaches to address the complexities of both artificial and in vivo membrane environments.
What You Will Find
Experts recognize this text as a foundational resource for researchers and engineers working in the intersection of biotechnology and polymer science. Readers frequently note the technical density of the prose, which is tailored for professionals seeking rigorous analytical tools for membrane design.
Page Count:
378
Publication Date:
1988-09-08
Publisher:
Oxford University Press
ISBN-10:
019520767X
ISBN-13:
9780195207675
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