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Investigation of crossover processes in a unitized bidirectional vanadium/air redox flow battery

机译:双向双向钒/空气氧化还原液流电池的交叉过程研究

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In this paper the losses in coulombic efficiency are investigated for a vanadium/air redox flow battery (VARFB) comprising a two-layered positive electrode. Ultraviolet/visible (UV/Vis) spectroscopy is used to monitor the concentrations c(V2+) and c(V3+) during operation. The most likely cause for the largest part of the coulombic losses is the permeation of oxygen from the positive to the negative electrode followed by an oxidation of V2+ to V3+. The total vanadium crossover is followed by inductively coupled plasma mass spectroscopy (ICP-MS) analysis of the positive electrolyte after one VARFB cycle. During one cycle 6% of the vanadium species initially present in the negative electrolyte are transferred to the positive electrolyte, which can account at most for 20% of the coulombic losses. The diffusion coefficients of V2+ and V3+ through Nafion (R) 117 are determined as D-V2+,D- N117 = 9.05 center dot 10(-6) cm(2) min(-1) and D-V3+,D- (N117) = 4.35 center dot 10(-6) cm(2) min(-1) and are used to calculate vanadium crossover due to diffusion which allows differentiation between vanadium crossover due to diffusion and migration/electroosmotic convection. In order to optimize coulombic efficiency of VARFB, membranes need to be designed with reduced oxygen permeation and vanadium crossover. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本文中,研究了具有两层正极的钒/空气氧化还原液流电池(VARFB)的库伦效率损失。紫外/可见(UV / Vis)光谱用于监测操作期间的浓度c(V2 +)和c(V3 +)。库仑损耗最大部分的最可能原因是氧气从正电极渗透到负电极,然后被V2 +氧化为V3 +。在一个VARFB循环后,对总钒的交换进行正电解质的电感耦合等离子体质谱(ICP-MS)分析。在一个循环中,最初存在于负极电解液中的6%钒会转移到正极电解液中,这最多可占库仑损耗的20%。 V2 +和V3 +通过Nafion(R)117的扩散系数确定为D-V2 +,D- N117 = 9.05中心点10(-6)cm(2)min(-1)和D-V3 +,D-(N117 )= 4.35中心点10(-6)cm(2)min(-1),用于计算由于扩散引起的钒交叉,这允许区分由于扩散引起的钒交叉和迁移/电渗对流。为了优化VARFB的库伦效率,需要设计具有降低的氧渗透和钒穿越的膜。 (C)2015 Elsevier B.V.保留所有权利。

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