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Effect of Compression Ratio of Graphite Felts on the Performance of an All-Vanadium Redox Flow Battery

机译:石墨毡压缩比对全钒氧化还原液流电池性能的影响

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All-vanadium redox flow batteries (VRFBs) are considered promising candidates for large-scale energy storage systems due to their flexible power scale design, high efficiency, deep discharge, long cycle life and environmental friendliness. The performance and efficiency of a VRFB is affected by many factors, including component materials, battery design, electrolyte composition and operating conditions. Among the key components, porous electrodes play a key role, as the electrochemical reaction occurs on the fiber surface of the electrode. As such, many studies have focused on improving reaction kinetics by modifying the surface of the electrode. In this work, the effect of varying the compression ratio (CR) of graphite felts on the performance and efficiency of a VRFB are investigated. The impedance of a single VRFB under varying CRs of graphite felts at various operating conditions were also measured. The results suggest that performance of a VRFB increases with increasing CR due to the decrease of area resistance and concentration overpotential. The porous electrode compressed from 6.5 to 4 mm demonstrates the optimal energy efficiency of 73% at the operating current density 80 mA cm ?2 and electrolyte flow rate 100 mL min ?1 .
机译:全钒氧化还原液流电池(VRFB)因其灵活的功率规模设计,高效率,深放电,长循环寿命和环境友好性而被认为是大规模储能系统的有希望的候选者。 VRFB的性能和效率受许多因素影响,包括组件材料,电池设计,电解质成分和工作条件。在关键成分中,多孔电极起关键作用,因为电化学反应发生在电极的纤维表面上。因此,许多研究集中在通过修饰电极表面来改善反应动力学。在这项工作中,研究了改变石墨毡的压缩比(CR)对VRFB性能和效率的影响。还测量了在不同操作条件下,石墨毡的CR值变化时单个VRFB的阻抗。结果表明,由于面积电阻和浓度超电势的降低,VRFB的性能随CR的增加而增加。从6.5毫米压缩到4毫米的多孔电极在工作电流密度80 mA cm?2和电解质流速100 mL min?1时显示出73%的最佳能量效率。

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