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Appendix D Bibliography [97]Ma, X., Zhang, H., Sun, C., Zou, Y., and Zhang, T. 2012. An optimal strategy of electrolyte flow rate for vanadium redox flow battery. Journal of Power Sources 203, 153–158. [98]Ling, C. Y., Cao, H., Chng, M. L., Han, M., and Birgersson, E. 2015. Pulsating electrolyte flow in a full vanadium redox battery. Journal of Power Sources 294, 305–311. [99]Forsythe, G. E., Malcolm, M. A., and Moler, C. B. 1977. Computer methods for mathematical computations. Prentice-Hall series in automatic computation. Prentice-Hall, Englewood Cliffs NJ. [100]König, S., Suriyah, M. R., and Leibfried, T. 2017. A plug flow reactor model of a vanadium redox flow battery considering the conductive current collectors. accepted - in press. Journal of Power Sources. [101]AMG Titanium Alloys & Coatings. Vanadium Electrolyte Solution 1.6M. [102]Sun, C., Chen, J., Zhang, H., Han, X., and Luo, Q. 2010. Investigations on transfer of water and vanadium ions across Nafion membrane in an operating vanadium redox flow battery. Journal of Power Sources 195, 3, 890–897. [103]Tang, A., Ting, S., Bao, J., and Skyllas-Kazacos, M. 2012. Thermal modelling and simulation of the all-vanadium redox flow battery. Journal of Power Sources 203, 165–176. 164PDF Image | Model-based Design Vanadium Redox Flow Batteries
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