Basile / Ghasemzadeh | Power Valorization to Liquid Fuels | Buch | 978-0-443-27521-0 | sack.de

Buch, Englisch, 330 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 450 g

Basile / Ghasemzadeh

Power Valorization to Liquid Fuels

Exploring the Membrane Technology Role
Erscheinungsjahr 2026
ISBN: 978-0-443-27521-0
Verlag: Elsevier Science

Exploring the Membrane Technology Role

Buch, Englisch, 330 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 450 g

ISBN: 978-0-443-27521-0
Verlag: Elsevier Science


Power Valorization to Liquid Fuels: Exploring the Membrane Technology Role presents an in-depth exploration of the latest advancements in power valorization, focusing on the conversion of renewable energy into valuable liquid fuels. This comprehensive guide navigates the recent developments and emerging technologies, offering a bridge between research and practice. The book delves into the efficient technologies and environmental control strategies for power valorization to liquid fuels, including the latest developments in power valorization approaches and the analysis of emerging technologies for renewable energy conversion. It provides a detailed overview of the underlying principles, processes, and advancements in technologies. The book also highlights the environmental implications, providing insights into the carbon footprint and sustainability aspects associated with power valorization to liquid fuels. Furthermore, it explores existing policies, successful regulatory frameworks, and proposes policy recommendations to facilitate the growth of power valorization to liquid fuels. Power Valorization to Liquid Fuels: Exploring the Membrane Technology Role is an essential resource for researchers, engineers, policymakers, and students interested in renewable energy and its conversion into liquid fuels. It offers valuable insights into the transformative potential of power-to-liquid technologies, making the information accessible to a wide range of audiences.

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Weitere Infos & Material


1. Introduction to Power Valorisation to liquid fuels
2. Wind power to methanol by tracking membrane technology role
3. Solar power to methanol by tracking membrane technology role
4. Hydropower to methanol by tracking membrane technology role
5. Geothermal power to methanol by tracking membrane technology role
6. Wind power to liquid hydrocarbons by tracking membrane technology role
7. Solar power to liquid hydrocarbons by tracking membrane technology role
8. Hydropower to liquid hydrocarbons by tracking membrane technology role
9. Geothermal power to liquid hydrocarbons by tracking membrane technology role
10. Wind power to DME by tracking membrane technology role
11. Solar power to DME by tracking membrane technology role
12. hydropower to DME by tracking membrane technology role
13. Geothermal power to DME by tracking membrane technology role
14. Economic perspectives on power valorisation to liquid fuels
15. Environmental sustainability in power valorisation


Basile, Angelo
Angelo Basile, a Chemical Engineer with a Ph.D. in Technical Physics, was a senior Researcher at the ITM-CNR as a responsible for the research related to both ultra-pure hydrogen production and CO2 capture using Pd-based Membrane Reactors. He is a reviewer for 165 int. journals, an editor/author of more than 50 scientific books and 140 chapters on international books on membrane science and technology; with various patens (7 Italian, 2 European, and 1 worldwide). He is a referee of 1more than 150 international scientific journals and a Member of the Editorial Board of more than 20 of them. Basile is also an associate editor of the: Int. J. Hydrogen Energy; Asia-Pacific Journal of Chemical Eng.; journal Frontiers in Membrane Science and Technology; and co-Editor-in-chief of the Int. J. Membrane Science & Technol.

Ghasemzadeh, Kamran
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.



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