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Analysis of Fluid Flow in Redox Flow Batteries

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Analysis of Fluid Flow in Redox Flow Batteries ( analysis-fluid-flow-redox-flow-batteries )

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References [1] L.L.N. Laboratory, Energy Flow Charts, (n.d.). https://flowcharts.llnl.gov/commodities/energy (accessed June 30, 2020). [2] G.L. Soloveichik, Flow Batteries: Current Status and Trends, Chem. Rev. 115 (2015) 11533–11558. https://doi.org/10.1021/cr500720t. [3] L. Li, S. Kim, W. Wang, M. Vijayakumar, Z. Nie, B. Chen, J. Zhang, G. Xia, J. Hu, G. Graff, J. Liu, Z. Yang, A stable vanadium redox-flow battery with high energy density for large-scale energy storage, Adv. Energy Mater. 1 (2011) 394–400. https://doi.org/10.1002/aenm.201100008. [4] K. Mongird, V. Fotedar, V. Viswanathan, V. Koritarov, P. Balducci, B. Hadjerioua, J. Alam, Energy Storage Technology and Cost Characterization Report, 2019. https://www.energy.gov/sites/prod/files/2019/07/f65/Storage Cost and Performance Characterization Report_Final.pdf (accessed November 30, 2020). [5] P. Alotto, M. Guarnieri, F. Moro, Redox flow batteries for the storage of renewable energy: A review, Renew. Sustain. Energy Rev. 29 (2014) 325–335. https://doi.org/10.1016/j.rser.2013.08.001. [6] S. Selverston, E. Nagelli, J.S. Wainright, R.F. Savinell, All-Iron Hybrid Flow Batteries with In-Tank Rebalancing, J. Electrochem. Soc. 166 (2019) A1725–A1731. https://doi.org/10.1149/2.0281910jes. [7] Y. Yang, G. Zheng, Y. Cui, A membrane-free lithium/polysulfide semi-liquid battery for large-scale energy storage, Energy Environ. Sci. 6 (2013) 1552–1558. https://doi.org/10.1039/c3ee00072a. 71

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