Photoelectrochemical and Enzymatic Conversion of Co2 into Fuels: A Shift Towards Net Zero Energy Landscape. Cet article n’est pas disponible.
Langue : anglais
Edité par Elsevier Science Ltd, 2025
- Livre broché
- Neuf

Vendeur : Revaluation Books, Exeter, Royaume-UniRevaluation Books
Vendeur AbeBooks depuis 6 janvier 2003
Etat: Neuf
EUR 295,43
A propos de cet article
525 pages. 9.00x6.00x9.02 inches. In Stock.
N° de réf. du vendeur x-044329285X
- Titre
- Photoelectrochemical and Enzymatic Conversion of Co2 into Fuels: A Shift Towards Net Zero Energy Landscape
- Auteur
- Srivastava, Rohit (Editor)/ Bastakoti, Bishnu (Editor)
- Éditeur
- Elsevier Science Ltd
- Année de publication
- 2025
- État de l'article
- Brand New
- Reliure
- Paperback
- Langue
- anglais
- ISBN à 10 chiffres
- 044329285X
- ISBN à 13 chiffres
- 9780443292859
- Poids de l'article
- 0,84 kilogramme
This will be a welcomed resource for researchers, students, academicians, engineers, and environmental experts and agencies studying the effects and benefits of the conversion of carbon dioxide into fuels for sustainable and renewable energy.
« Synopsis » peut appartenir à une autre édition de cet ouvrage.
À propos de l’auteur
Rohit Srivastava is Senior Assistant Professor in the Department of Petroleum Engineering at Pandit Deendayal Energy University, Gandhinagar, India. His research focuses on green hydrogen and carbon dioxide reduction into green fuels.
Dr. Bishnu Prasad Bastakoti is an Associate Professor in the Department of Chemistry at North Carolina A&T State University. He earned his PhD at Saga University in Japan as a Monbukagakusho Scholar. He then joined the National Institute for Materials Science as a Japan Society for the Promotion of Science Fellow. Previously, he worked as a research associate at the University of Sydney and Harvard University. He has published over 100 peer-reviewed articles. He is working on a broad design challenge to control various structural properties, such as porosity, crystallinity, and pore size, in porous inorganic nanomaterials. He is especially interested in using highly porous nanostructured materials in catalysis and energy conversion.
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