Design, Fabrication and Electrochemical performance of Soluble Lead Redox-Flow Battery for Energy Storage

S. Kosta, R. Sneha, K. Rana
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Abstract

Flow batteries are being considered as a potential candidate for large scale energy storage system, however, main issue with them is their higher cost due to the electrode materials and membrane used in them. In this regards, current work is focused on the development of cost effective flow batteries. In order to reduce the cost of flow batteries, low cost graphitic carbon was used for both positive and negative electrodes to fabricate the soluble lead redox flow batteries (100 cm2) without using any separator. Lead methane sulfonate (1M) and methane sulfonic acid (1M) were used as electrolytes, which plays an important role in reduction and oxidation process of redox flow batteries. The charge/discharge behavior has been studied at constant current of 500 mA, which showed an average efficiency of 79% with an initial discharge capacity of 200 mAh. The cell capacity decreases during the 14–15th cycles and becomes 110 mAh, this loss in capacity has been studied after cut down analysis of cell.
储能用可溶铅氧化还原液流电池的设计、制造及电化学性能研究
液流电池被认为是大规模储能系统的潜在候选者,但其主要问题是其电极材料和膜的成本较高。在这方面,目前的工作重点是开发具有成本效益的液流电池。为了降低液流电池的成本,在不使用任何分离器的情况下,采用低成本的石墨碳作为正负极来制备可溶铅氧化还原液流电池(100 cm2)。以甲烷磺酸铅(1M)和甲烷磺酸(1M)为电解质,在氧化还原液流电池的还原氧化过程中起着重要作用。研究了在500 mA恒流条件下的充放电行为,其平均效率为79%,初始放电容量为200 mAh。在14 - 15次循环中,电池容量下降至110 mAh,对电池进行了缩减分析,研究了这种容量损失。
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