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Analysis of internal reaction and mass transfer of zinc-nickel single flow battery
A three-dimensional steady state model of internal reaction and mass transfer has been established for a better understanding of electrochemical performance of zinc-nickel single flow battery (ZNB). Combining with a global kinetic, the model is based on a comprehensive description of mass, momentum, charge for reactions considering the flow between anode and cathode, species transport, and electrochemical reaction between electrodes and electrolyte. This paper emphasizes an internal ion concentration and electrode current density distribution of the ZNB. The effect of channel width and electrolyte flow rate on the electrochemical performance is also studied in the simulation. In addition, the verification of the mathematical model is illustrated by the agreement between the numerical and experimental I–V curves.
Analysis of internal reaction and mass transfer of zinc-nickel single flow battery
A three-dimensional steady state model of internal reaction and mass transfer has been established for a better understanding of electrochemical performance of zinc-nickel single flow battery (ZNB). Combining with a global kinetic, the model is based on a comprehensive description of mass, momentum, charge for reactions considering the flow between anode and cathode, species transport, and electrochemical reaction between electrodes and electrolyte. This paper emphasizes an internal ion concentration and electrode current density distribution of the ZNB. The effect of channel width and electrolyte flow rate on the electrochemical performance is also studied in the simulation. In addition, the verification of the mathematical model is illustrated by the agreement between the numerical and experimental I–V curves.
Analysis of internal reaction and mass transfer of zinc-nickel single flow battery
Xiao, Min (author) / Wang, Yucai (author) / Yao, Shouguang (author) / Song, Yindong (author) / Cheng, Jie (author) / He, Ke (author)
2016-11-01
10 pages
Article (Journal)
Electronic Resource
English
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