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60 Years of the Loeb-Sourirajan Membrane

Principles, New Materials, Modelling, Characterization, and Applications

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2022
ISBN13: 9780323899772
Rubricering
Elsevier Science e druk, 2022 9780323899772
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

60 Years of the Loeb-Sourirajan Membrane: Principles, New Materials, Modelling, Characterization and Applications bring forth theoretical advances, novel characterization techniques, materials development, advanced treatment processes, and emerging applications of membrane-based technologies. The trigger for writing this book is the 2020, 60th anniversary of the first asymmetric polymeric membrane invented by Dr. Sidney Loeb and Dr. Srinivasa Sourirajan (University of California, Los Angeles, USA) on the breakthrough discovery of the semipermeable membrane for seawater desalination.

The book places emphasis on the advances of organic and inorganic membranes in different fields, covering not only the primary application of membranes for water and wastewater treatment but also other applications dealing with energy conversion and storage, organic solvent purification, gas separation, and biomedical processes.

Specificaties

ISBN13:9780323899772
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

Section 1: Green/Advanced Polymeric Materials<br>1. Ionic liquid-based membrane<br>2. Zwitterionic polymers in biofouling and organic fouling mechanisms<br>3. Recent advances in 3D printed membranes for water applications<br>4. Recent advances of TFC membrane fabrication<br>5. Recent Advances in High-Performance Membrane for Vanadium Redox Flow Battery<br>6. Membranes for vanadium air flow batteries<br><br>Section 2: Advanced Inorganic Materials<br>7. Carbon membrane for water/gas separation<br>8. MOF membranes for gas separation and pervaporation<br>9. Advanced ceramic membrane design for separation and energy application<br>10. Recent Advances on Lithium-ion Battery Separators with Enhanced Safety<br>11. Ion exchange membranes for low-temperature polymer exchange membrane fuel cells: current status and future prospective<br><br>Section 3: Advanced Hybrid Materials<br>12. Organosilica membrane for gas separation<br>13. Hybrid Materials for Membrane Distillation<br>14. Metal Organic Frameworks for Membrane Fabrication<br>15. Mixed Matrix Membranes for Ultrafiltration Applications<br>16. Zwitterion-modified Membranes for Water Reclamation<br><br>Section 4: Computational Modelling and Simulation<br>17. Modeling/simulation on spiral wound membrane<br>18. Computational Fluid Dynamics (CFD) modelling of reverse osmosis membrane systems<br>19. Prediction of Membrane Filtration Based on Transport Model<br>20. Molecular dynamics simulation<br><br>Section 5: Characterization Methods<br>21. Advanced Characterization of Membrane Surface Fouling<br>22. Analysis of membrane fouling: physical, chemical and biological characterization techniques<br><br>Section 6: Emerging & Industrial Applications<br>23. Current status of ion exchange membranes for ED/RED and MCDI/CapMix<br>24. Scaling Issue of RO Membrane<br>25. Ceramic membrane for fuel cell application<br>26. Membrane for gas separation

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        60 Years of the Loeb-Sourirajan Membrane