There is a strong need to store electrical energy from fluctuating renewable energy sources such as solar or wind and to decarbonize transport and industry. High-temperature electrolysis is expected to contribute significantly to reach these goals. This reference text provides a detailed guide, including the fundamental and materials aspects of solid oxide and protonic ceramic electrolysis cells at stack and system levels, as well as recent developments. Applications discussed include the production of green hydrogen as well as the combination of high-temperature electrolysis with other processes for the synthesis of ammonia, methane or e-fuels. Highly relevant to the field of renewable energy supply and conversion, the text provides a comprehensive and accessible reference for researchers, engineers, and graduate students from various disciplines.
Key Features
| ISBN: | 9780750339490 |
| Publication date: | 13th January 2023 |
| Author: | Werner Sitte, Rotraut Merkle |
| Publisher: | IOP Publishing an imprint of Institute of Physics Publishing |
| Format: | Hardback |
| Pagination: | 400 pages |
| Series: | IOP Ebooks |
| Genres: |
Energy, power generation, distribution and storage Materials science |
There is a strong need to store electrical energy from fluctuating renewable energy sources such as solar or wind and to decarbonize transport and industry. High-temperature electrolysis is expected to contribute significantly to reach these goals. This reference text provides a detailed guide, including the fundamental and materials aspects of solid oxide and protonic ceramic electrolysis cells at stack and system levels, as well as recent developments. Applications discussed include the production of green hydrogen as well as the combination of high-temperature electrolysis with other processes for the synthesis of ammonia, methane or e-fuels. Highly relevant to the field of renewable energy supply and conversion, the text provides a comprehensive and accessible reference for researchers, engineers, and graduate students from various disciplines.
Key Features
High Temperature Electrolysis features in the following genres: Energy, power generation, distribution and storage, Materials science
High Temperature Electrolysis is available in Hardback
High Temperature Electrolysis was written by Werner Sitte, Rotraut Merkle and published by IOP Publishing an imprint of Institute of Physics Publishing
High Temperature Electrolysis has 400 pages
Yes it is part of IOP Ebooks series
£108.00