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首页> 外文期刊>Journal of power sources >Understanding the role of the anode on the polarization losses in high-temperature polymer electrolyte membrane fuel cells using the distribution of relaxation times analysis
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Understanding the role of the anode on the polarization losses in high-temperature polymer electrolyte membrane fuel cells using the distribution of relaxation times analysis

机译:了解阳极在高温聚合物电解质膜燃料电池中偏振损耗的作用,使用弛豫时间分布分布

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摘要

To investigate the role of the anode on the polarization losses of a High-Temperature Polymer Electrolyte Membrane Fuel Cell (HT-PEMFC), we analyzed impedance data using the Distribution of Relaxation Times (DRT) method. Thereby, we varied the operating conditions of the anode (humidification, nitrogen dilution, and carbon monoxide (CO) impurities) to study its impact on Nyquist plot and DRT spectrum. Humidification of the hydrogen was found to dilute phosphoric acid, which is visible in the DRT. Nitrogen dilution of the anode gas slightly increases the Mass Transport (MT) resistance. Furthermore, CO was added to anode gas fed and it impacts the impedance throughout the whole frequency range, specifically the medium and low-frequency range, typically assigned to ORR kinetics and oxygen MT. For a more detailed analysis of the impedance data, a reference electrode was employed to separate the overpotential caused by each electrode. The DRT spectrum of the anode exhibits only one peak at 1 kHz. In the presence of CO, a second peak arises corresponding to side-reactions occurring as the anodic half-cell potential increases. It was found that the cathode is affected by CO on the anode merely by the lowered cell potential and not by CO directly.
机译:为了研究阳极对高温聚合物电解质膜燃料电池(HT-PEMFC)的偏振损耗的作用,我们使用弛豫时间(DRT)方法的分布分析阻抗数据。因此,我们改变了阳极(加湿,氮稀释和一氧化碳(CO)杂质的操作条件,以研究其对奈奎斯特图和DRT光谱的影响。发现氢的加湿稀释稀磷酸,其在DRT中可见。阳极气体的氮气稀释略微增加了质量转运(MT)抗性。此外,将CO添加到送料中的阳极气体中,并且它会影响整个频率范围内的阻抗,特别是介质和低频范围,通常分配给ORR动力学和氧气MT。对于对阻抗数据的更详细的分析,采用参考电极来分离由每个电极引起的过电位。阳极的DRT光谱在1kHz下仅表现出一个峰。在CO的存在下,当阳极半电池电位增加时,第二峰值对应于发生的副反应。发现阴极受到仅通过降低的电池电位而不是直接通过CO对阳极的影响。

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