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首页> 外文期刊>Electrochimica Acta >Effect of flow-field structure on discharging and charging behavior of hydrogen/bromine redox flow batteries
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Effect of flow-field structure on discharging and charging behavior of hydrogen/bromine redox flow batteries

机译:流场结构对氢气/溴氧化还原流量放电和充电行为的影响

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摘要

Designing and optimizing the flow-field structure for the liquid phase Br-2/HBr electrolyte solution of H-2/Br-2 redox flow batteries (RFBs) is important for improving cell performance. In this study, two electrolyte flow modes, i.e. the flow-by and flow-through modes, are simulated by using a threedimensional H-2/Br-2 RFB model. The model is first applied to real-scale H-2/Br-2 cell geometries and then validated against the experimental polarization curves acquired using the two different flow modes. The model predictions cdmpare well with the experimental data and further highlight the advantages of using the flow-through mode relative to the flow-by mode. Detailed multi-dimensional contours of the electrolyte flow velocity and key species distributions reveal that more uniform diffusion and stronger convective transport are achieved by using the flow-through mode, which alleviates the ohmic loss associated with charge transport in the Br-2 electrode. (C) 2017 Elsevier Ltd. All rights reserved.
机译:设计和H-2 / BR-2优化流场结构用于液相BR-2 / HBr的电解质溶液的氧化还原液流电池(区域渔业机构)是用于提高电池性能重要。在这项研究中,2种电解质流模式,即流动通过和流通模式下,通过使用三维H-2 / BR-2 RFB模型模拟。该模型被首先应用到真实规模的H-2 / BR-2细胞的几何形状,然后针对使用两个不同的流动模式中获取的实验极化曲线验证。模型预测与实验数据和进一步突出使用流过相对模式到流动通过模式的优点cdmpare良好。电解液的流速和关键物种分布的详细描述多维轮廓显示,更均匀的扩散和更强的对流输送,通过使用流过模式,这减轻了与在BR-2电极的电荷传输相关联的电阻损耗来实现。 (c)2017 Elsevier Ltd.保留所有权利。

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