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Comparison of self-humidification effect on polymer electrolyte membrane fuel cell with anodic and cathodic exhaust gas recirculation

机译:阳极和阴极废气再循环对聚合物电解质膜燃料电池的自加湿效果比较

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Self-humidification with anode/cathode recirculation was found to be an alternative in the place of external humidifier according to the previous studies in the last decade, however, there is still a lack of quantitative experimental and theoretical comparison between them. In this study, the dynamic PEM fuel cell system model with anodic and cathodic exhaust gas recirculation is proposed and related model calibration and verification are carried out by measured output voltage, gaseous pressure and mole concentration during the dynamic process. The model simulation shows quite good agreement with the experimental result and source of error is discussed. Based on developed model, it is simulated that the humidification effect is much better for cathode recirculation compared with anode recirculation, resulting in performance improvement, especially under the condition of low inlet RH. However, this improved humidification effect is weakened, considering the structure limit of recirculation pump and gas channel in this case. Besides, the power consumption of cathode recirculation pump is found to be much higher than that of anode recirculation. As a result, the anode recirculation is found to be a better solution considering the energy efficiency and mechanical structure limit. In contrast, cathode recirculation conducts better humidification effect, which is more suitable for the short-time low-inlet-humidity working conditions. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在过去的十年中,根据先前的研究,发现采用阳极/阴极再循环进行自增湿可以替代外部增湿器,但是,它们之间仍然缺乏定量的实验和理论比较。在这项研究中,提出了带有阳极和阴极废气再循环的动态PEM燃料电池系统模型,并通过在动态过程中测量输出电压,气体压力和摩尔浓度来进行相关的模型校准和验证。模型仿真与实验结果吻合良好,讨论了误差来源。基于已开发的模型,模拟结果表明,与阳极再循环相比,阴极再循环的加湿效果要好得多,从而可以改善性能,尤其是在低进口RH条件下。然而,考虑到在这种情况下再循环泵和气体通道的结构限制,这种改善的加湿效果被削弱。此外,发现阴极再循环泵的功耗比阳极再循环的功耗高得多。结果,考虑到能量效率和机械结构极限,发现阳极再循环是更好的解决方案。相比之下,阴极再循环具有更好的加湿效果,更适合于短时间的低进气湿度工作条件。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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