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Progress in redox flow batteries, remaining challenges and their applications in energy storage

RSC Advances · 2012 · Vol. 2(27) · pp. 10125–10125
Puiki LeungXiaohong LiCarlos Ponce de LeónL.E.A. BerlouisChee Tong John LowF.C. Walsh

Abstract

Redox flow batteries, which have been developed over the last 40 years, are used to store energy on the medium to large scale, particularly in applications such as load levelling, power quality control and facilitating renewable energy deployment. Various electrode materials and cell chemistries have been proposed; some of the successful systems have been demonstrated on a large-scale in the range of 10 kW–10 MW. Enhanced performance is attributable to the improvements in electrodes, separator materials and an increasing awareness of cell design. This comprehensive review provides a summary of the overall development of redox flow battery technology, including proposed chemistries, cell components and recent applications. Remaining challenges and directions for further research are highlighted.

Advanced battery technologies researchAdvanced Battery Technologies ResearchElectrocatalysts for Energy ConversionSoftware deploymentRenewable energyEnergy storageProcess engineeringSeparator (oil production)Flow batteryRedoxComputer scienceBattery (electricity)Nanotechnology
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References
Progress in Flow Battery Research and Development
Journal of The Electrochemical Society · 2011 · 1,427 citations
Electrochemical Energy Storage for Green Grid
Chemical Reviews · 2011 · 5,125 citations
Redox flow cells for energy conversion
Journal of Power Sources · 2006 · 1,099 citations
Reticulated vitreous carbon as an electrode material
Journal of Electroanalytical Chemistry · 2003 · 339 citations
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