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Membrane Separation Principles and Applications
From Material Selection to Mechanisms and Industrial Uses
An in-depth, authoritative resource on this rapidly growing separation technology—from fundamentals to myriad applications
Ahmad Fauzi Ismail (Edited by), Mukhlis A. Rahman (Edited by), Mohd Hafiz Dzarfan Othman (Edited by), Takeshi Matsuura (Edited by)
9780128128152, Elsevier Science
Paperback, published 10 September 2018
494 pages
22.9 x 15.1 x 3.1 cm, 0.45 kg
Membrane Separation Principles and Applications: From Material Selection to Mechanisms and Industrial Uses, the latest volume in the Handbooks in Separation Science series, is the first single resource to explore all aspects of this rapidly growing area of study. Membrane technology is now accepted as one of the most effective tools for separation and purification, primarily due to its simple operation. The result has been a proliferation of studies on this topic; however, the relationships between fundamental knowledge and applications are rarely discussed. This book acts as a guideline for those who are interested in exploring membranes at a more progressive level. Covering methods of pressure driving force, partial pressure driving force, concentration driving force, electrical potential driving force, hybrid processes, and more, this volume is more complete than any other known resource on membrane separations.
1. Reverse osmosis
2. Nanofiltration
3. Ultrafiltration
4. Microfiltration
5. Gas separation
6. Vapor separation
7. Pervaporation
8. Membrane distillation
9. Dialysis
10. Forward osmosis
11. Pressure retarded osmosis
12. Hybrid processes: Membrane adsorption
13. Hybrid processes: Membrane bioreactor
Subject Areas: Materials science [TGM], Industrial chemistry [TDC], Analytical chemistry [PNF]