Experimental Set-Up for Measurement of Half-Cell- and Over-Potentials of Flow Batteries During Operation

IF 4.7 4区 材料科学 Q2 ELECTROCHEMISTRY Batteries & Supercaps Pub Date : 2024-10-08 DOI:10.1002/batt.202400394
Gabriel Gonzalez, Prof. Pekka Peljo
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Abstract

The study of flow batteries (FBs) requires the development of tools able to evaluate their performance during operation in a reliable and simple way. In this work, we present an experimental set-up that allows the on-line monitoring of the half-cells state of charge and apparent overpotentials on the positive and negative electrodes during battery operation. These measurements are feasible by using additional flow cells that include a reference electrode on each side. We used the experimental set-up to study the performance of the vanadium system as well as a previously reported stable organic couple. The studies consisted on short cycling operation at different current densities and polarization curves at different flow rates and states of charge. By confirming previous results obtained for vanadium-FBs and extending the analysis to further systems, we demonstrated that this approach provides a reliable deeper insight into the battery performance and the processes taking place during operation.

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液流电池工作时半电池电位和过电位测量的实验装置
液流电池(FBs)的研究需要开发能够以可靠和简单的方式评估其运行过程中的性能的工具。在这项工作中,我们提出了一种实验装置,可以在线监测电池运行过程中半电池的充电状态和正负极上的表观过电位。这些测量是可行的,通过使用额外的流动电池,包括每侧参考电极。我们使用实验装置来研究钒系统的性能以及先前报道的稳定有机偶联。研究包括在不同电流密度下的短循环操作和在不同流速和电荷状态下的极化曲线。通过确认先前获得的钒- fbs结果,并将分析扩展到其他系统,我们证明了这种方法可以更深入地了解电池性能和运行过程中发生的过程。
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来源期刊
CiteScore
8.60
自引率
5.30%
发文量
223
期刊介绍: Electrochemical energy storage devices play a transformative role in our societies. They have allowed the emergence of portable electronics devices, have triggered the resurgence of electric transportation and constitute key components in smart power grids. Batteries & Supercaps publishes international high-impact experimental and theoretical research on the fundamentals and applications of electrochemical energy storage. We support the scientific community to advance energy efficiency and sustainability.
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