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Characterization of carbon felt electrodes for vanadium redox flow batteries - A pore network modeling approach

机译:钒氧化还原液流电池用碳毡电极的表征-孔网络建模方法

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摘要

Carbon felt electrodes are commonly used as porous electrodes in Vanadium redox flow batteries for large-scale energy storage. The transport properties of these electrodes are an important parameter as the transport resistance can form a significant parasitic power loss depending on the configuration of the flow battery. Therefore, to better predict the overall parasitic power losses and devise strategies for the improvement of overall battery efficiency, the transport properties need to be properly understood. In this work, four commercially available carbon felt electrodes have been investigated for their transport properties. It has been shown that the non-activated electrode is hydrophobic in nature, while after activation, the electrodes become hydrophilic. The single-phase diffusion and permeability were found to decrease linearly with an increase in electrode thickness. The imbibition characteristics were similar for the four electrodes, although the change in wettability had a strong impact on the pressure required for the electrolyte to invade into the electrode.
机译:碳毡电极通常用作钒氧化还原液流电池中的多孔电极,用于大规模储能。这些电极的传输特性是重要的参数,因为取决于液流电池的配置,传输电阻会形成很大的寄生功率损耗。因此,为了更好地预测整体寄生功率损耗并设计出改善整体电池效率的策略,需要正确理解传输特性。在这项工作中,已经研究了四种市售的碳毡电极的传输性能。已经表明,未活化的电极本质上是疏水的,而在活化之后,电极变成亲水的。发现单相扩散和渗透率随电极厚度的增加而线性降低。尽管润湿性的变化对电解质侵​​入电极所需的压力有很大的影响,但四个电极的吸收特性相似。

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