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Membrane Technologies for Biohydrogen Production and Purification. Current Trends and Future Developments on (Bio-) Membranes

  • Book

  • November 2025
  • Elsevier Science and Technology
  • ID: 6249631

Membrane Technologies for Biohydrogen Production and Purification: Current Trends and Future Developments in Bio-Membranes focuses on the introduction, analysis, and application of membrane technologies for biohydrogen production, purification, storage, and transport. The book provides comprehensive coverage of emerging membrane-based technologies for the production and purification of biohydrogen by integrated engineering approaches with a special focus on novel membrane-based techniques for maximizing biohydrogen yields. It details recent developments in materials, design, and engineering aspects of membranes-assisted biohydrogen technology, illustrating their advantages over conventional systems, improved performance, and industry potential. The book sheds light and gives a broad, but very detailed, view from the point of view of scientists, researchers, students, and industrial engineers working in the field of biohydrogen and its technology transfer from laboratory to industry. It also includes an exclusive chapter on case studies of pilot-scale demonstrations of membrane-assisted biohydrogen production and purification, assuring the industrial potential of the book's topic. This makes it a key reference for experts and R&D managers interested in the industrial development of biohydrogen production as well as academic researchers and postgraduate students working in the wider areas of membrane technology and biohydrogen technology.

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Table of Contents

1. Introduction to membrane technology for biohydrogen
2. Biohydrogen production techniques
3. Role of membranes in biohydrogen technology
4. Membrane bioreactors for biohydrogen
5. Anaerobic membrane bioreactor (AnMBR) for biohydrogen production
6. Microbial electrolysis for biohydrogen production
7. Electrodialysis membrane for biohydrogen production
8. Polymeric membranes for biohydrogen technology
9. Non-porous polymeric membranes for biohydrogen purification
10. Ionic liquid membranes for biohydrogen purification
11. Advanced 2D materials for biohydrogen purification
12. Membrane technology for hydrogen storage and transport
13. Membrane for Microbial fuel cells
14. Pilot scale studies for membranes in biohydrogen technology

Authors

Angelo Basile Senior Researcher, ITM-CNR, University of Calabria, Italy.

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.

Rambabu Krishnamoorthy Research Scientist, Faculty of Chemical Engineering, Khalifa University, united Arab Emirates. Dr. Rambabu is currently working as a Research Scientist in the Department of Chemical Engineering at Khalifa University, UAE. He has completed his Ph.D. in Chemical Engineering on the topic of membrane materials. He has more than ten years of teaching and research experience. His research areas consist of membrane materials, nanoparticles, water treatment, biohydrogen, bioprocesses, algal biomass, and waste management. His research works also include modeling chemical and biochemical processes using various software. He has good expertise in industry consultancy projects and holds a good track record of journal publications. He has published more than 100 journals and conference papers in various leading scientific journals of Elsevier, Taylor & Francis, Springer, Nature, etc. He has been listed in the Top 2% of Eminent Scientists list under Energy and Environment category for the year 2021 (Scopus). He has received several funded projects in research areas related to waste valorization, water treatment, and nanotechnology. He has been recognized as an excellent researcher by various professional/research bodies and obtained a number of research awards.