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Improvement in the Performance of an Fe/Fe~(II) Electrode in an All-Iron Redox Flow Battery by the addition of Zn~(II) ions

机译:通过添加Zn〜(II)离子,在全铁氧化还原流量电池中的Fe/Fe〜(II)电极的性能改善

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Redox flow batteries are the most promising large-scale energy storage technologies for solving intermittency issues of renewable energy sources such as wind, solar, etc. They have favorable features over other battery technologies like high energy efficiency, intrinsic safety, independent scaling, and a long lifetime. Among various RFBs, all-Iron redox flow batteries are an attractive choice because iron is the second most abundant metal in earth's crust, is cheap and ecofriendly. However, low charging efficiency, parasitic hydrogen evolution reaction (HER) at the negative Fe/Fe~(II) electrode, self-discharge by electrolyte cross-over, and poor cycle-life (due to ferric hydroxide precipitation) are the major technical challenges to be overcome for the successful commercialization of all-iron redox flow batteries. Herein, we report an all-iron redox flow battery containing Fe/Fe~(II) and Fe~(II)I/Fe~(II) redox couples separated by a self-made anion exchange membrane. We also examined the impact of adding Zn~(II) ions on the electrochemical performance of the Fe/Fe~(II) redox couple. The coulombic efficiency, voltage efficiency and energy efficiency of the cell with 0.03 m ZnCl2 was found to be greater (90%, 70.96% and 63.86%) than those of the cell without ZnCl2 (80%, 62.06% and 49.64%). The results reveal that the addition of small amounts of Zn~(II) ions to the Fe/Fe~(II) electrode suppresses the hydrogen evolution reaction and increase the cell performance.
机译:氧化还原流量电池是最有希望的大规模储能技术,用于解决可再生能源的间歇性问题,例如风,太阳能等。它们具有优于其他电池技术的功能,例如高能源效率,内在安全性,独立缩放和A一生。在各种RFB中,全铁氧化还原流量电池是一个有吸引力的选择,因为铁是地壳中第二大金属,便宜且环保。然而,低充电效率,寄生氢的演化反应(HE)在负Fe/fe〜(ii)电极,电解质交叉的自我放电和循环寿命较差(由于氢氧化铁降水引起的)是主要技术全铁氧化还原流量电池成功商业化要克服的挑战。在此,我们报告了一个包含Fe/Fe〜(II)和Fe〜(II)I/Fe〜(ii)的全铁氧化还原电池电池,该氧化还原夫妇由自制成阴离子交换膜分开。我们还研究了添加Zn〜(II)离子对Fe/Fe〜(II)氧化还原夫妇的电化学性能的影响。发现具有0.03 m ZnCl2细胞的库仑效率,电压效率和能源效率比没有ZNCL2的细胞(80%,62.06%和49.64%)大(90%,70.96%和63.86%)。结果表明,在Fe/Fe〜(II)中添加少量的Zn〜(II)离子会抑制氢的演化反应并增加细胞性能。

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