首页> 外文期刊>International Journal of Electrochemical Science >Study on the Under-Rib Convection for Improving in situ Reactants Supply and Water Discharge, hysteresis effect and Current Density Distributions for Polymer Electrolyte Fuel Cells
【24h】

Study on the Under-Rib Convection for Improving in situ Reactants Supply and Water Discharge, hysteresis effect and Current Density Distributions for Polymer Electrolyte Fuel Cells

机译:肋下对流改善聚合物电解质燃料电池原位反应物的补给和出水,滞后效应和电流密度分布的研究

获取原文
           

摘要

New flow-field design with the under-rib convection (URC) aims to enhance polymer electrolyte fuelcell (PEFC) performance. This paper presents the experimental and numerical results for single cellswith a new flow-field that stimulates URC with additional sub-channels and by-passes to a conventionalflow-field with 5-passes and 4-turns on an active area of 25 cm2. To characterize the role of under-ribconvection for PEFC’s polarization performance, the performance related parameters of in situ reactantsand liquid water flows, hysteresis effects and current density distributions of a new serpentine flow-fieldwith sub-channels and by-passes (SFFSB) were compared experimentally and numerically with those ofconventional SFFs without SB (CASFF). Hysteresis curves of the new SFFSB design featured aconsiderably smaller area than those of the CASFF design, because hysteresis curves measure variationof polarization by electric load. The hysteresis effects of PEFCs were investigated between the SFFwithout and with sub-channels and by-passes (SBs) designs. In the single cell of a CASSF, the areas ofhysteresis loops over five cycles were evaluated statistically, obtaining a polarization curve of 0.03836± 0.001431 (mean ± s.e.m.) and a power density curve of 0.02889 ± 0.002181. In the single cell of thenew SFFSB, the area of hysteresis loops over five cycles was measured variation of polarization byelectric load, obtaining a polarization curve of 0.03581 ± 0.0006720 and a power density curve of0.02307 ± 0.0005538. In the experimental measurement of PEFC polarization curve, the average currentdensity of the new SFFSB, 1.557 A/cm2, was increased by 18.85% compared to that of the CASFF,1.310 A/cm2 at a cell’s voltage of 0.35 V; the maximum power densities of the SFFSB and CASFF were0.615 and 0.497 W/cm2 at a cell’s voltage of 0.47 V, respectively, demonstrating an improvement of23.74% in the new SFFSB. The current density distribution verified the PEFC’s performance improvedby URC with the new SFFSB. The new SFFSB was determined to realize more balanced reactantsconcentration distribution from inlet to outlet and to activate the electrochemical reaction by increasingmass transport rates of reactants from flow channel to inner catalyst layer and by facilitating liquid waterremoval from URC regions. URC will play a significant role in improving PEFC’s performance,furthermore, increasing the fuel cell lifetime.
机译:具有肋下对流(URC)的新流场设计旨在增强聚合物电解质燃料电池(PEFC)的性能。本文介绍了具有新流场的单细胞的实验和数值结果,该流场刺激了带有附加子通道和旁路的URC,并在25 cm2的活动区域上经过了5次和4次转弯的常规流场。为了表征欠肋对流对PEFC极化性能的作用,比较了具有子通道和旁路(SFFSB)的新蛇形流场的原位反应物和液态水的性能相关参数,磁滞效应和电流密度分布。在实验和数值上与不带SB的常规SFF(CASFF)进行比较。新型SFFSB设计的磁滞曲线的面积比CASFF设计的磁滞曲线小得多,这是因为磁滞曲线可测量电负载引起的极化变化。在没有子通道和旁路设计的情况下,研究了SFC之间PEFC的滞后效应。在CASSF的单个单元中,对五个周期的磁滞回线面积进行统计评估,获得的极化曲线为0.03836±0.001431(平均±s.e.m.),功率密度曲线为0.02889±0.002181。在新的SFFSB的单个单元中,通过电负载测量了五个周期内的磁滞回线面积,得出极化曲线为0.03581±0.0006720,功率密度曲线为0.02307±0.0005538。在PEFC极化曲线的实验测量中,在0.35 V电池电压下,新型SFFSB的平均电流密度为1.557 A / cm2,比CASFF的平均电流密度为1.310 A / cm2,增加了18.85%;在电池电压为0.47 V时,SFFSB和CASFF的最大功率密度分别为0.615和0.497 W / cm2,表明新SFFSB的最大功率密度提高了23.74%。当前的密度分布证明,URC使用新的SFFSB改善了PEFC的性能。确定新的SFFSB可以实现从入口到出口的更平衡的反应物浓度分布,并通过提高反应物从流道到内部催化剂层的质量传输速率并促进从URC区域去除液体水来激活电化学反应。 URC将在提高PEFC的性能方面发挥重要作用,此外,还将延长燃料电池的使用寿命。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号