Understanding the Vanadium Redox Flow Batteries

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Understanding the Vanadium Redox Flow Batteries ( understanding-vanadium-redox-flow-batteries )

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32658 Paths tSouSsutastianianbalbeleEEnneergrgyy Burger, B. & Kranzer, D. (2009). Extreme high efficiency pv-power converters, EPE 2009 - Barcelona . Candel, S. (2001). Mcanique des Fluides. Heintz, A. & Illenberger, C. (1998). Thermodynamics of vanadium redox flow batteries - electrochemical and calorimetric investigations, Ber. Bunsenges. Phys. Chem. 102. Kausar, N. (2002). Studies of V(IV) and V(V) species in vanadium cell electrolyte, PhD thesis, UNSW, Australia . Mousa, A. (2003). Chemical and electrochemical studies of V(III) and V(II) solutions in sulfuric acid solution for vanadium battery applications, PhD thesis, UNSW, Australia . Munson, B., Young, D. & Okiishi, T. (1998). Fundamentals of Fluid Mechanics, third edn. Oriji, G., Katayama, Y. & Miura, T. (2004). Investitgation on V(IV)/V(V) species in a vanadium redox flow battery, Electrochimica Acta 49. Skyllas-Kazacos, M. & Menictas, C. (1997). The vanadium redox battery for emergency back-up applications, Intelec 97 . Sum, E., Rychcik, M. & Skyllas-Kazacos, M. (1985). Investigation of the V(V)/V(VI) system for use in the positive half-cell of a redox battery, Journal of Power Sources 16. Sum, E. & Skyllas-Kazacos, M. (1985). A study of the V(II)/V(III) redox couple for redox flow cell applications, Journal of Power Sources 15. Van herle, J. (2002). Electrochemical Technology, Fuel Cells and Batteries, postgrade course. Wen, Y., Zhang, H., Qian, P., Zhao, P., Zhou, H. & Yi, B. (2006). Investigation on the electrode process of concentrated V(IV)/V(V) species in a vanadium redox flow battery, Acta Physico-Chimica Sinica 22. Wensong, Y. & Lai, J.-S. (2008). Ultra high efficiency bidirectional dc-dc converter with multi-frequency pulse width modulation, IEEE Applied Power Electronics Conference and Exposition, APEC 2008 . Wilkes, J. (2005). Fluid mechanics for chemical engineers. View publication stats

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