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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References and recommended reading Papers of particular interest, published within the period of review, have been highlighted as: • Paper of special interest •• Paper of outstanding interest. [1] Office of Electricity Delivery & Energy Reliability, Sandia National Laboratories, DOE Global Energy Storage Database, Energystorageexchange.org. https://www.energystorageexchange.org/policies (accessed December 1, 2018). [2] Big battery boom hits another roadblock: Fire-fearing cities, Bloomberg. (2018). https://www.bloomberg.com/news/articles/2018-05-18/the-big-battery- boom-hits-another-roadblock-fire-fearing-cities (accessed November 19, 2018). [3] International Electrotechnical Commission, IEC - TC 21 Work programme, Secondary cells and batteries, Iec.Ch. (2018). https://www.iec.ch/dyn/www/f?p=103:23:0::::FSP_ORG_ID:1290 (accessed November 21, 2018). [4] International Standard IEC 61427-2:2015, Secondary cells and batteries for renewable energy storage – General requirements and methods of test – Part 2: On-grid applications, 1st ed., International Electrotechnical Commission, 2015. [5] Z.G. Yang, Is this the ultimate grid battery? IEEE Spectrum. 54 (2017) 36–41. doi:https://doi.org/10.1109/MSPEC.2017.8093799. [6] Vanadium is the latest beneficiary of the battery craze, The Economist. (2018). https://www.economist.com/business/2018/07/21/vanadium-is-the-latest- beneficiary-of-the-battery-craze (accessed November 19, 2018). [7] Historical cobalt prices and price chart. Investment Mine. (2018). http://www.infomine.com/investment/metal-prices/cobalt/all/ (accessed November 19, 2018). [8] E.A. Olivetti, G. Ceder, G.G. Gaustad, X. Fu, Lithium-ion battery supply chain considerations: Analysis of potential bottlenecks in critical metals, Joule. 1 (2017) 229–243. doi:10.1016/j.joule.2017.08.019. 15

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