Corrosion behavior of ferritic and ferritic-martensitic steels in supercritical carbon dioxide
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DOI: 10.1016/j.energy.2019.03.146
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- Xu, Jinliang & Sun, Enhui & Li, Mingjia & Liu, Huan & Zhu, Bingguo, 2018. "Key issues and solution strategies for supercritical carbon dioxide coal fired power plant," Energy, Elsevier, vol. 157(C), pages 227-246.
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- Fan, Y.H. & Yang, D.L. & Tang, G.H. & Sheng, Q. & Li, X.L., 2022. "Design of S–CO2 coal-fired power system based on the multiscale analysis platform," Energy, Elsevier, vol. 240(C).
- Liu, Kairui & Wang, Limin & Bai, Wengang & Che, Defu, 2025. "Comparative study on dynamic characteristics of 600 MW supercritical coal-fired boilers using CO2 and water as working fluids," Energy, Elsevier, vol. 314(C).
- Guo, Tingshan & Liang, Zhiyuan & Shao, Huaishuang & Zhao, Qinxin, 2024. "Atomistic insight into the interfacial reaction and evolution between FeCr alloys and supercritical CO2 with impurities," Energy, Elsevier, vol. 313(C).
- Yang, D.L. & Tang, G.H. & Li, X.L. & Fan, Y.H., 2022. "Capacity-dependent configurations of S–CO2 coal-fired boiler by overall analysis with a unified model," Energy, Elsevier, vol. 245(C).
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Keywords
Steel; Corrosion; Supercritical carbon dioxide; Supercritical water; Temperature;All these keywords.
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