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Science and technology of separation membranes / Tadashi Uragami.

By: Uragami, Tadashi [author.].
Material type: materialTypeLabelBookPublisher: Chichester, West Sussex, UK : Wiley, 2017Description: 1 online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9781118932575; 1118932579; 9781118932551; 1118932552.Subject(s): Membrane separation | Membrane filters | Membranes (Technology) | SCIENCE / Chemistry / Industrial & Technical | TECHNOLOGY & ENGINEERING / Chemical & Biochemical | Membrane filters | Membrane separation | Membranes (Technology)Genre/Form: Electronic books.Additional physical formats: Print version:: Science and technology of separation membranes.DDC classification: 660/.28424 Online resources: Wiley Online Library
Contents:
Introduction to Membrane Science and Technology -- Membrane Structure -- Preparation Methods of Membranes -- Membrane Shapes and Modules -- Characterization of Membrane -- Fundamentals of Membrane Transport Phenomena -- Phenomena during Membrane Permeation and Separation -- Dialysis -- Reverse Osmosis -- Nanofiltration -- Ultrafiltration -- Microfiltration -- Comparison of Pressure-Driven Membrane Separation Processes -- Front Matter -- Forward Osmosis -- Pervaporation -- Evapomeation -- Temperature-Difference Controlled Evapomeation -- Membrane Distillation -- Gas Permeation -- Carrier Transport -- Membrane Reactor -- Membrane Contactors -- Fuel Cell Membranes -- Hybrid Systems of the Membrane Separation Process -- Optical Resolution by Membranes -- Material Separations by Other Membrane Processes -- Conclusions and Prospects for the Future.
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Introduction to Membrane Science and Technology -- Membrane Structure -- Preparation Methods of Membranes -- Membrane Shapes and Modules -- Characterization of Membrane -- Fundamentals of Membrane Transport Phenomena -- Phenomena during Membrane Permeation and Separation -- Dialysis -- Reverse Osmosis -- Nanofiltration -- Ultrafiltration -- Microfiltration -- Comparison of Pressure-Driven Membrane Separation Processes -- Front Matter -- Forward Osmosis -- Pervaporation -- Evapomeation -- Temperature-Difference Controlled Evapomeation -- Membrane Distillation -- Gas Permeation -- Carrier Transport -- Membrane Reactor -- Membrane Contactors -- Fuel Cell Membranes -- Hybrid Systems of the Membrane Separation Process -- Optical Resolution by Membranes -- Material Separations by Other Membrane Processes -- Conclusions and Prospects for the Future.

Includes bibliographical references and index.

Print version record.

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