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Enhanced reaction kinetics of an aqueous Zn-Fe hybrid flow battery by optimizing the supporting electrolytes

机译:通过优化支持电解质增强了Zn-Fe混合液流电池的反应动力学

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Redox flow batteries attract ever growing interest over the past decades in stationary energy storage. Iron and zinc species have been widely studied as active species for redox flow batteries. In this paper, the redox behavior of iron species has been tested in aqueous ionic liquid solutions. 1-butyl-3-methylimidazolium chloride (BMImCl) is found to be most effective to regulate the redox activity of iron species. While in the anolyte, the standard rate constant of zinc plating/stripping can be promoted by one order up to 1.44 x 10(-4) cm s(-1), when aqueous NH4Cl is used as supporting electrolyte. Kinetic analysis is further conducted on the iron and zinc species in the corresponding supporting electrolytes. By using an anion exchange membrane, an aqueous Zn-Fe hybrid flow battery showed a high energy efficiency of 80% at 20 mA cm(-2), making it an alternative for flow battery application.
机译:在过去的几十年中,氧化还原液流电池吸引了越来越多的对固定能量存储的兴趣。铁和锌物质已被广泛研究为氧化还原液流电池的活性物质。在本文中,已经在离子液体水溶液中测试了铁物种的氧化还原行为。发现1-丁基-3-甲基咪唑鎓氯化物(BMImCl)最有效地调节铁的氧化还原活性。在阳极电解液中,当使用NH4Cl水溶液作为支持电解质时,镀锌/剥离的标准速率常数可以提高一个数量级,最高可达1.44 x 10(-4)cm s(-1)。对相应的支持电解质中的铁和锌物质进行动力学分析。通过使用阴离子交换膜,水性Zn-Fe混合液流电池在20 mA cm(-2)时显示出80%的高能量效率,使其成为液流电池应用的替代选择。

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