A vanadium redox flow battery model incorporating the effect of ion concentrations on ion mobility

被引:118
|
作者
Zhou, X. L. [1 ]
Zhao, T. S. [1 ]
An, L. [1 ]
Zeng, Y. K. [1 ]
Yan, X. H. [1 ]
机构
[1] Hong Kong Univ Sci & Technol, Dept Mech & Aerosp Engn, Kowloon, Hong Kong, Peoples R China
关键词
Flow battery; Ion mobility; Numerical modeling; ENERGY-STORAGE; PERFORMANCE CHARACTERIZATION; CYCLING PERFORMANCE; MEMBRANE; CROSSOVER; ELECTRODE; PROGRESS; TRANSPORT; SYSTEM; FIELD;
D O I
10.1016/j.apenergy.2015.08.028
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Previous vanadium redox flow battery models (VRFB) use the ion mobility deduced from the ion diffusivity measured at low ion concentrations, resulting in an overestimation of the ionic conductivity in VRFBs that virtually operate at much higher ion concentrations. To address this issue, we propose to use the Stokes-Einstein relationship to determine an ion concentration-dependent ion mobility. A two-dimensional, transient model that incorporates the effect of ion concentrations on ion mobility is developed for VRFBs. It is shown that the present model results in: (i) a more accurate estimation of ionic conductivity, (ii) a more accurate prediction of cell voltage particularly at high current densities, and (iii) a more realistic simulation of the concentration distributions and local current density distributions in the electrodes. Finally, the model is applied to the study of the effects of important electrode design parameters and operating conditions on cell performance. It is found that the local current density, being distributed across the electrode in a manner opposite to that predicted by previous models, is much lower at the current collector side than that at the membrane side. This fact suggests that the region away from the membrane is not well utilized in conventional electrodes, thus a thinner electrode is preferred. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:157 / 166
页数:10
相关论文
共 50 条
  • [41] Dynamic modelling of the effects of ion diffusion and side reactions on the capacity loss for vanadium redox flow battery
    Tang, Ao
    Bao, Jie
    Skyllas-Kazacos, Maria
    JOURNAL OF POWER SOURCES, 2011, 196 (24) : 10737 - 10747
  • [42] Uncovering the effect of ion exchange membrane on capacity decay and efficiency for all-vanadium redox flow battery by modeling analysis
    Shan, Jiawei
    Xiao, Dong
    INTERNATIONAL JOURNAL OF GREEN ENERGY, 2022, 19 (12) : 1367 - 1374
  • [43] Colloidal silicalite-nafion composite ion exchange membrane for vanadium redox-flow battery
    Yang, Ruidong
    Cao, Zishu
    Yang, Shaowei
    Michos, Loannis
    Xu, Zhi
    Dong, Junhang
    JOURNAL OF MEMBRANE SCIENCE, 2015, 484 : 1 - 9
  • [44] Porous composite membrane of PVDF/Sulfonic silica with high ion selectivity for vanadium redox flow battery
    Ling, Ling
    Xiao, Min
    Han, Dongmei
    Ren, Shan
    Wang, Shuanjin
    Meng, Yuezhong
    JOURNAL OF MEMBRANE SCIENCE, 2019, 585 : 230 - 237
  • [45] High ion selectivity Aquivion-based hybrid membranes for all vanadium redox flow battery
    Liu, Lei
    Guo, Ziyang
    Yang, Jie
    Wang, Shuyan
    He, Zhenfeng
    Wang, Chao
    ADVANCED COMPOSITES AND HYBRID MATERIALS, 2021, 4 (03) : 451 - 458
  • [46] Commercial perfluorosulfonic acid membranes for vanadium redox flow battery: Effect of ion-exchange capacity and membrane internal structure
    Vrana, Jiri
    Charvat, Jiri
    Mazur, Petr
    Belsky, Petr
    Dundalek, Jan
    Pocedic, Jaromir
    Kosek, Juraj
    JOURNAL OF MEMBRANE SCIENCE, 2018, 552 : 202 - 212
  • [47] Effect of Baffles in Flow Channel on the Performance of Vanadium Redox Flow Battery
    Wu, Horng-Wen
    Zeng, Yi-Kai
    PROCESSES, 2023, 11 (02)
  • [48] Nonlinear model predictive control of vanadium redox flow battery
    Skupin, Piotr
    Ambati, Seshagiri Rao
    JOURNAL OF ENERGY STORAGE, 2023, 62
  • [49] Ion Effects on Vanadium Transport in Nafion Membranes for Vanadium Redox Flow Batteries
    Lawton, Jamie S.
    Jones, Amanda M.
    Tang, Zhijiang
    Lindsey, Melanie
    Zawodzinski, Thomas
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2017, 164 (13) : A2987 - A2991
  • [50] Multi-physics Model for a Vanadium Redox Flow Battery
    Merei, Ghada
    Adler, Sophie
    Magnor, Dirk
    Leuthold, Matthias
    Sauer, Dirk Uwe
    8TH INTERNATIONAL RENEWABLE ENERGY STORAGE CONFERENCE AND EXHIBITION (IRES 2013), 2014, 46 : 194 - 203