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Redox flow batteries for energy storage challenges

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Redox flow batteries for energy storage challenges ( redox-flow-batteries-energy-storage-challenges )

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[36] Z. Wei, A. Bhattarai, C. Zou, S. Meng, T.M. Lim, M. Skyllas-Kazacos, Real- time monitoring of capacity loss for vanadium redox flow battery, J. Power Sources. 390 (2018) 261–269. doi:10.1016/j.jpowsour.2018.04.063. [37] B. Xiong, J. Zhao, Y. Su, Z. Wei, M. Skyllas-Kazacos, State of charge estimation of vanadium redox flow battery based on sliding mode observer and dynamic model including capacity fading factor, IEEE Trans. Sustain. Energy. 8 (2017) 1658–1667. doi:10.1109/TSTE.2017.2699288. [38] A. Bhattacharjee, H. Samanta, N. Banerjee, H. Saha, Development and validation of a real time flow control integrated MPPT charger for solar PV applications of vanadium redox flow battery, Energy Convers. Manag. 171 (2018) 1449–1462. doi:10.1016/j.enconman.2018.06.088. [39] H.F. A, K. Palanisamy, S. Padmanaban, U. Subramaniam, Intelligence-based battery management and economic analysis of an optimized dual-vanadium redox battery (VRB) for a wind-PV hybrid system, Energies. 11 (2018) 2785. doi:10.3390/en11102785. [40] C. Minke, T. Turek, Materials, system designs and modelling approaches in techno-economic assessment of all-vanadium redox flow batteries – A review, J. Power Sources. 376 (2018) 66–81. doi:10.1016/j.jpowsour.2017.11.058. [41] M. Resch, J. Bühler, B. Schachler, R. Kunert, A. Meier, A. Sumper, Technical and economic comparison of grid supportive vanadium redox flow batteries for primary control reserve and community electricity storage in Germany, Int. J. Energy Res. 43 (2019) 337–357. doi:10.1002/er.4269. [42] M. Fisher, J. Apt, J.F. Whitacre, Can flow batteries scale in the behind-the- meter commercial and industrial market? A techno-economic comparison of storage technologies in California, J. Power Sources. 420 (2019) 1–8. doi:10.1016/j.jpowsour.2019.02.051. [43] C. Minke, U. Kunz, T. Turek, Techno-economic assessment of novel vanadium redox flow batteries with large-area cells, J. Power Sources. 361 (2017) 105– 114. doi:10.1016/j.jpowsour.2017.06.066. [44] P. MacArtain, R. Byrne, N.J. Hewitt, Increased benefit of ZnBr flow battery with 33kWp PV system and smart tariff structure, Energy Procedia. 155 (2018) 514–523. doi:10.1016/j.egypro.2018.11.029. [45] S. Weber, J.F. Peters, M. Baumann, M. Weil, Life cycle assessment of a vanadium redox flow battery, Environ. Sci. Technol. 52 (2018) 10864–10873. doi:10.1021/acs.est.8b02073. 19

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