Chlorine Gas Generation in Mixed-Acid Vanadium Redox

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Chlorine Gas Generation in Mixed-Acid Vanadium Redox ( chlorine-gas-generation-mixed-acid-vanadium-redox )

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21. Cohen, N.; Jacobs, T. A.; Emanuel, G.; Wilkins, R. L., Chemical Kinetics of Hydrogen Halide Lasors. 1. The H2-Cl2 System. Int. J. Chem. Kinet. 1969, 551-569. 22. Zhou, X. L.; Lin, L. Y.; Lv, Y. H.; Zhang, X. Y.; Wu, Q. X., A Sn-Fe flow battery with excellent rate and cycle performance. J. Power Sources 2018, 404, 89-95. 23. Zhang, Y. L.; Henkensmeier, D.; Kim, S.; Hempelmann, R.; Chen, R. Y., Enhanced reaction kinetics of an aqueous Zn-Fe hybrid flow battery by optimizing the supporting electrolytes. J. Energy Storage 2019, 25. 24. Alotto, P.; Guarnieri, M.; Moro, F., Redox flow batteries for the storage of renewable energy: A review. Renew. Sust. Energ. Rev. 2014, 29, 325-335. 25. Zeng, Y. K.; Zhao, T. S.; An, L.; Zhou, X. L.; Wei, L., A comparative study of all- vanadium and iron-chromium redox flow batteries for large-scale energy storage. J. Power Sources 2015, 300, 438-443. 15

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