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On the Resistances of a Slurry Electrode Vanadium Redox Flow Battery

机译:在浆料电极钒氧化还原电池的电阻上

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We studied the half-cell performance of a slurry-based vanadium redox flow battery via the polarization and electrochemical impedance spectroscopy methods. First, the conductive static mixers are examined and lower ohmic and diffusion resistances are shown. Further analyses of the slurry electrodes for the catholyte (VO2+-VO2+) and anolyte (V3+-V2+) are presented for the graphite powder slurry containing up to 15.0 wt.% particle content. Overall, the anolyte persists as the more resistive half-cell, while ohmic and diffusion-related limitations are the dominating resistances for both electrolytes. The battery is further improved by the addition of Ketjen black nanoparticles, which results in lower cell resistances. The best results are achieved when 0.5 wt.% Ketjen black nanoparticles are dispersed with graphite powder since the addition of nanoparticles reduces ohmic, charge transfer and mass diffusion resistances by improving particle-particle dynamics. The results prove the importance of understanding resistances in a slurry electrode system.
机译:我们通过偏振和电化学阻抗光谱法研究了基于浆料的钒氧化还原流电池的半电池性能。首先,检查导电静态混合器,并示出了较低的欧姆和扩散电阻。进一步分析用于阴极电解液(VO2 + -VO2 +)和阳极电解液(V3 + -V2 +)的浆料电极用于含有高达15.0重量%的石墨粉末浆料。%颗粒含量。总的来说,阳极电解液持续到更电阻的半电池,而欧姆和扩散相关的限制是两个电解质的主导电阻。通过加入Ketjen黑纳米颗粒进一步改善了电池,这导致细胞抗性较低。当0.5重量%时,达到最佳结果。%Ketjen黑纳米颗粒用石墨粉末分散,因为通过改善颗粒 - 粒子动力学,可以减少欧姆,电荷转移和质量扩散抗性。结果证明了了解浆料电极系统中的抗性的重要性。

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