
Current Trends and Future Developments on (Bio-) Membranes
Recent Achievements for Ion-Exchange Membranes
Elsevier (Publisher)
Published on 14. September 2023
Book
Paperback/Softback
374 pages
978-0-323-88509-6 (ISBN)
Description
Current Trends and Future Developments on (Bio-) Membranes: Recent Achievements for Ion-Exchange Membranes focuses on introducing and analyzing ion-exchange membranes performance and overviewing recent achievements in the structural development of ion-exchange membranes in various applications. Hence, this book is a key reference text for R&D managers in who are interested in the development of ion-exchange membrane technologies as well as academic researchers and postgraduate students working in the wider area of strategic treatments, separation and purification processes.
More details
Language
English
Place of publication
Philadelphia
United States
Target group
Professional and scholarly
Product notice
Paperback (trade)
Dimensions
Height: 235 mm
Width: 191 mm
Thickness: 20 mm
Weight
647 gr
ISBN-13
978-0-323-88509-6 (9780323885096)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Angelo Basile | Kamran Ghasemzadeh
Current Trends and Future Developments on (Bio-) Membranes
Recent Achievements for Ion-Exchange Membranes
E-Book
09/2023
Elsevier
€200.00
Available for download
Persons
Angelo Basile is a Full Professor and a leading authority in membrane science and technology. Since 2014, he has served as Full Professor in Systems, Methods and Technologies of Chemical Engineering Processes at CNR-ITM in Rende, Italy. His work covers hydrogen purification and production using membrane reactors, CO? capture, process intensification, and the treatment of industrial effluents with advanced membrane operations. Basile has edited many scientific books and authored numerous book chapters, bridging complex research with clear knowledge for engineers and scientists. Motivated by the role of AI/ML in accelerating membrane process design and automation, he supports integrating data-driven methods for smart plants and reaction-separation optimisation.
Kamran Ghasemzadeh is currently working as a senior research associate at the chemical engineering department, University of Manchester, UK since August 2022. At the same time, he has served as an associate professor in the chemical engineering department at Urmia University of Technology, Iran, wherein he developed research on membranes/membrane reactors for many processes.
Kamran Ghasemzadeh's h-index = 21, with 126 document results in a total of 1135 citations in the areas: Energy, Chemical Engineering, Environmental Science, and membrane technologies, (www.scopus.com - March 30/2023). He has more than 50 papers published in national/international congresses; and is a reviewer for 70 int. journals, an editor/author of more than 10 scientific books, and 45 chapters on int. books on membrane science and technology. Today Ghasemzadeh is collaborating with the Dept. of chem. Eng. at the University of Manchester (UK) on the valorisation of biomass by-products. He participated in various national and international projects on membrane reactors and membrane science. In the last years, he was the supervisor/co-supervisor of more than 38 Thesis for Master and Ph.D. students. Ghasemzadeh served as Director of the UUT research center during the period Sep. 2018 - April 2022.
Kamran Ghasemzadeh is currently working as a senior research associate at the chemical engineering department, University of Manchester, UK since August 2022. At the same time, he has served as an associate professor in the chemical engineering department at Urmia University of Technology, Iran, wherein he developed research on membranes/membrane reactors for many processes.
Kamran Ghasemzadeh's h-index = 21, with 126 document results in a total of 1135 citations in the areas: Energy, Chemical Engineering, Environmental Science, and membrane technologies, (www.scopus.com - March 30/2023). He has more than 50 papers published in national/international congresses; and is a reviewer for 70 int. journals, an editor/author of more than 10 scientific books, and 45 chapters on int. books on membrane science and technology. Today Ghasemzadeh is collaborating with the Dept. of chem. Eng. at the University of Manchester (UK) on the valorisation of biomass by-products. He participated in various national and international projects on membrane reactors and membrane science. In the last years, he was the supervisor/co-supervisor of more than 38 Thesis for Master and Ph.D. students. Ghasemzadeh served as Director of the UUT research center during the period Sep. 2018 - April 2022.
Editor
Senior Researcher, ITM-CNR, University of Calabria, Italy
Institute for Materials and Processes, School of Engineering, University of Edinburgh, Edinburgh, UK
Content
1. Fundamental of ion-exchange membranes
2. Organic ion-exchange membranes
3. Inorganic ion-exchange membranes
4. Ion-exchange membranes in electrodialysis process for desalination
5. Ion-exchange membranes in electrodialysis process for wastewater treatment
6. Ion-exchange membranes in revers electrodialysis process
7. Ion-exchange membranes in non-microbial fuel cell systems
8. Ion-exchange membranes in microbial fuel cell systems
9. Ion-exchange membranes in electrolysis process
10. Ion-exchange membranes in redox flow batteries
11. Ion-exchange membranes in microfluidic devices
12. Concentration polarization in ion-exchange membranes
13. Economic of ion-exchange membranes
2. Organic ion-exchange membranes
3. Inorganic ion-exchange membranes
4. Ion-exchange membranes in electrodialysis process for desalination
5. Ion-exchange membranes in electrodialysis process for wastewater treatment
6. Ion-exchange membranes in revers electrodialysis process
7. Ion-exchange membranes in non-microbial fuel cell systems
8. Ion-exchange membranes in microbial fuel cell systems
9. Ion-exchange membranes in electrolysis process
10. Ion-exchange membranes in redox flow batteries
11. Ion-exchange membranes in microfluidic devices
12. Concentration polarization in ion-exchange membranes
13. Economic of ion-exchange membranes