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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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[72] [73] [74] [75] • zirconia for all vanadium redox flow battery, Int. J. Hydrogen Energy. 44 (2019) 5997–6006. doi:10.1016/j.ijhydene.2019.01.043. S. Kim, E. Thomsen, G. Xia, Z. Nie, J. Bao, K. Recknagle, et al., 1 kW/1 kWh advanced vanadium redox flow battery utilizing mixed acid electrolytes, J. Power Sources. 237 (2013) 300–309. doi:10.1016/j.jpowsour.2013.02.045. D. Reed, E. Thomsen, Bin Li, W. Wang, Z. Nie, B. Koeppel, et al., Stack developments in a kW class all vanadium mixed acid redox flow battery at the Pacific Northwest National Laboratory, J. Electrochem. Soc. 163 (2016) A5211–A5219. doi:10.1149/2.0281601jes. M. Guarnieri, A. Trovò, A. D'Anzi, P. Alotto, Developing vanadium redox flow technology on a 9-kW 26-kWh industrial scale test facility: Design review and early experiments, Appl. Energy. 230 (2018) 1425–1434. doi:10.1016/j.apenergy.2018.09.021. D. Bryans, V. Amstutz, H. Girault, L. Berlouis, Characterisation of a 200 kW/400 kWh vanadium redox flow battery, Batteries. 4 (2018) 54. doi:10.3390/batteries4040054. Demonstrates the practical characterization of energy efficiency in a utility-scale RFB system. [76] L. Kopietz, P. Schwerdt, J. Girschik, J. Burfeind, A. Grevé, C. Doetsch, Extra- large bipolar plates for redox flow batteries, in: Procedings of the The International Flow Battery Forum 2017, Manchester, UK, 2017: pp. 46–47. [77] • M. Averbukh, A. Pozin, S. Sukoriansky, Electrolyte pumping optimization in already manufactured vanadium redox battery based on experimentally determined electrical and hydrodynamic losses, J. Energy Eng. (2016) 04016050. doi:10.1061/(ASCE)EY.1943-7897.0000398. Reports experimental data for the pressure drop characteristics of carbon felt for the viscosity of vanadium electrolytes. [78] T. Davies, J. Tummino, High-performance vanadium redox flow batteries with graphite felt electrodes, J. Carbon Research. 4 (2018) 8–17. doi:10.3390/c4010008. [79] Q. Ye, J. Hu, P. Cheng, Z. Ma, Design trade-offs among shunt current, pumping loss and compactness in the piping system of a multi-stack vanadium flow battery, J. Power Sources. 296 (2015) 352–364. doi:10.1016/j.jpowsour.2015.06.138. 23

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