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A novel cell design of vanadium redox flow batteries for enhancing energy and power performance

机译:钒氧化还原液流电池的新型电池设计,可提高能量和功率性能

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The Vanadium Redox Flow Battery (VRFB) is one of the most promising electrochemical energy storage systems considered to be suitable for a wide range of renewable energy applications. In this work, a novel cell structure is designed for VRFB, which includes embedded serpentine flow channels in a non-porous and non-brittle case. This new design eliminates end plates and gaskets to improve safety, extend life, and promote ease of assembly with fewer components than traditional VRFB cells. In particular, a key challenge of conventional graphite flow field plates in which solution penetration can occur due to an easily broken and porous structure is solved by using rigid impermeable polyvinyl chloride (PVC) sheets with flow channels embedded in the sheets. Various tests, such as cycling and polarization measurements of a wide range of current and flow rates, and Electrochemical Impedance Spectroscopy (EIS) for internal resistance analysis, are performed to compare new and traditional designs. The results show that the new design keeps cycling performance stable, with better stability and energy efficiency, than conventional VRFB cells do. High power performance is also observed for the same external cell size. In addition, an abrupt potential drop caused by high contact resistance between the current collector and a porous electrode is solved by introducing a layer of the patterned graphite sheet to improve contact and electronic conductivity and, also, to function as a flow channel. Finally, an economic analysis shows that the new design not only improves battery performance, but also lowers assembly costs and facilitates assembly.
机译:钒氧化还原液流电池(VRFB)是最有前途的电化学储能系统之一,被认为适用于各种可再生能源应用。在这项工作中,为VRFB设计了一种新颖的细胞结构,该结构在无孔且无脆性的情况下包括嵌入的蛇形流动通道。与传统的VRFB电池相比,这种新设计省去了端板和垫圈,从而提高了安全性,延长了使用寿命并提高了组装简便性。特别地,通过使用刚性的不可渗透的聚氯乙烯(PVC)片并在其内部嵌入流道,解决了传统的石墨流场板的主要挑战,在该片中,由于容易破裂和多孔的结构而可能导致溶液渗透。为了比较新的和传统的设计,进行了各种测试,例如各种电流和流速的循环和极化测量,以及用于内部电阻分析的电化学阻抗谱(EIS)。结果表明,与传统VRFB电池相比,新设计可保持循环性能稳定,具有更好的稳定性和能效。对于相同的外部电池尺寸,也观察到高功率性能。另外,通过引入图案化的石墨片的层以改善接触和电子导电性并且还用作流动通道,解决了由集电器与多孔电极之间的高接触电阻引起的突然的电势下降。最后,经济分析表明,新设计不仅可以提高电池性能,而且可以降低组装成本并简化组装过程。

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