TY - JOUR
T1 - 固 体 氧 化 物 电 解 池 技 术 的 应 用 前 景 与 挑 战
AU - Gou, Yunjie
AU - Li, Guangdong
AU - Wang, Zhenhua
AU - Sun, Kening
N1 - Publisher Copyright:
© 2022 Fushun Petroleum Institute. All rights reserved.
PY - 2022/12/25
Y1 - 2022/12/25
N2 - Solid oxide electrolysis cell (SOEC) technology can realize the efficient and flexible conversion of electrical and thermal energy to chemical energy on the basis of solid electrolytes. It can be connected with renewable energy sources such as solar and wind power and tidal energy to utilize the excess electricity generated for efficient, clean, and large-scale production of hydrogen. When coupled with the CO2 capture process, it enables the co-electrolysis of CO2 and H2O to produce syngas. In addition, it can be combined with large-scale industries to produce high-value-added chemicals such as ethylene, ammonia, and formaldehyde with low-value-added raw materials generated. SOEC technology can meet the needs of the future society for the large-scale renewable energy conversion and storage, which is of great significance for accelerating the substitution process of non - fossil energy worldwide and the realization of China's carbon peak and neutrality goals. This paper mainly discussed the electrode and electrolyte materials used in solid oxide electrolysis technology, the application scenarios and principles at the current stage, and the challenges faced. Moreover, it predicted the future development directions of the technology.
AB - Solid oxide electrolysis cell (SOEC) technology can realize the efficient and flexible conversion of electrical and thermal energy to chemical energy on the basis of solid electrolytes. It can be connected with renewable energy sources such as solar and wind power and tidal energy to utilize the excess electricity generated for efficient, clean, and large-scale production of hydrogen. When coupled with the CO2 capture process, it enables the co-electrolysis of CO2 and H2O to produce syngas. In addition, it can be combined with large-scale industries to produce high-value-added chemicals such as ethylene, ammonia, and formaldehyde with low-value-added raw materials generated. SOEC technology can meet the needs of the future society for the large-scale renewable energy conversion and storage, which is of great significance for accelerating the substitution process of non - fossil energy worldwide and the realization of China's carbon peak and neutrality goals. This paper mainly discussed the electrode and electrolyte materials used in solid oxide electrolysis technology, the application scenarios and principles at the current stage, and the challenges faced. Moreover, it predicted the future development directions of the technology.
KW - Ethylene
KW - Solid oxide electrolysis cell technology
KW - Syngas
KW - Synthetic ammonia
UR - http://www.scopus.com/inward/record.url?scp=85148740728&partnerID=8YFLogxK
U2 - 10.3969/j.issn.1006-396X.2022.06.004
DO - 10.3969/j.issn.1006-396X.2022.06.004
M3 - 文章
AN - SCOPUS:85148740728
SN - 1006-396X
VL - 35
SP - 28
EP - 37
JO - Shiyou Huagong Gaodeng Xuexiao Xuebao/Journal of Petrochemical Universities
JF - Shiyou Huagong Gaodeng Xuexiao Xuebao/Journal of Petrochemical Universities
IS - 6
ER -