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Bringing Redox Flow Batteries to the Grid

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[207] [208] [209] [210] [211] [212] [213] [214] [215] [216] [217] [218] [219] [220] K. Wei, L. Li, Fe-Cr redox flow battery systems including a balance arrangement and methods of manufacture and operation, 10,777,836 B1, 2020. https://patentimages.storage.googleapis.com/6f/7f/ab/b0a5ed8b9b1b76/US10777836.pdf. R.M. Darling, M.L. Perry, Method of maintaining health of flow battery, 20160056487 A1, 2013. L. LI, Q. Luo, Near Neutral Aqueous Fe-Cr Complex Flow Battery: Reducing Electricity Storage Cost to < $100/kWh, ECS Meet. Abstr. MA2021-02 (2021) 120–120. https://doi.org/10.1149/MA2021-021120mtgabs. Y.K. Zeng, T.S. Zhao, X.L. Zhou, J. Zou, Y.X. Ren, A hydrogen-ferric ion rebalance cell operating at low hydrogen concentrations for capacity restoration of iron-chromium redox flow batteries, J. Power Sources. 352 (2017) 77–82. https://doi.org/10.1016/j.jpowsour.2017.03.125. R.F.Gahn,Methodandapparatusforrebalancingaredoxflowcellsystem,4,576,878,1986. https://patentimages.storage.googleapis.com/48/f3/fa/16f7760ad6b677/US4576878.pdf. Y.Song,C.E.Evans,Methodandsystemforrebalancingelectrolytesinaredoxflowbattery system, 10,923,753, 2021. https://www.osti.gov/biblio/1805523. E. Wesoff, Flow Battery Startup EnerVault Files for Assignment Before Creditors, Greentech Media. (2015). https://www.greentechmedia.com/articles/read/Flow-Battery- Startup-EnerV ault-Files-For-Assignment-Before-Creditors. E. Wesoff, Flow Battery Aspirant Imergy Has Let Go Its Staff and Is Selling Its Assets, Greentech Media. (2016). https://www.greentechmedia.com/articles/read/flow-battery- aspirant-imergy-has-let-go-its-staff-and-is-selling-its-assets. Y. Ahn, J. Moon, S.E. Park, J. Shin, J. Wook Choi, K.J. Kim, High-performance bifunctional electrocatalyst for iron-chromium redox flow batteries, Chem. Eng. J. 421 (2021) 127855. https://doi.org/10.1016/j.cej.2020.127855. Y.K. Zeng, T.S. Zhao, X.L. Zhou, L. Zeng, L. Wei, The effects of design parameters on the charge-discharge performance of iron-chromium redox flow batteries, Appl. Energy. 182 (2016) 204–209. https://doi.org/10.1016/j.apenergy.2016.08.135. H.Zhang,Y.Tan,J.Li,B.Xue,Studiesonpropertiesofrayon-andpolyacrylonitrile-based graphite felt electrodes affecting Fe/Cr redox flow battery performance, Electrochim. Acta. 248 (2017) 603–613. https://doi.org/10.1016/j.electacta.2017.08.016. S.R. Tirukkovalluri, R.K. Hanuman Gorthi, Synthesis, characterization and evaluation of Pb electroplated carbon felts for achieving maximum efficiency of Fe-Cr redox flow cell, J. New Mater. Electrochem. Syst. 16 (2013) 287–292. https://doi.org/10.14447/jnmes.v16i4.155. S. Wang, Z. Xu, X. Wu, H. Zhao, J. Zhao, J. Liu, C. Yan, X. Fan, Excellent stability and electrochemical performance of the electrolyte with indium ion for iron–chromium flow battery, Elsevier Ltd, 2021. https://doi.org/10.1016/j.electacta.2020.137524. M. Lopez-Atalaya, G. Codina, J.R. Perez, J.L. Vazquez, A. Aldaz, Optimization studies on a Fe/Cr redox flow battery, J. Power Sources. 39 (1992) 147–154. https://doi.org/10.1016/0378-7753(92)80133-V . 135

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