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Quantification of in situ temperature measurements on a PBI-based high temperature PEMFC unit cell

机译:在基于pBI的高温pEmFC单元电池上定量原位温度测量

摘要

The temperature is a very important operating parameter for all types of fuel cells. In the present work distributed in situ temperature measurements are presented on a polybenzimidazole based high temperature PEM fuel cell (HT-PEM). A total of 16 T-type thermocouples were embedded on both the anode and cathode flow plates. The purpose of this study is to investigate the feasibility of the proposed temperature characterization method and to identify the temperature distribution on an operating HT-PEM in various modes of operation, including a 700 h sensors durability test. The embedded sensors showed minimal influence on cell performance, this difference seen in performance is believed to be caused by different bipolar plate materials. The measurement method is suitable for obtaining detailed data for validation of computational models, moreover the results indicate that the method can be used as a degradation tool, as it is possible to locate areas exposed to degradation, both in plane and between the anode and cathode.
机译:对于所有类型的燃料电池,温度都是非常重要的工作参数。在本工作中,对基于聚苯并咪唑的高温PEM燃料电池(HT-PEM)进行了分布式温度测量。阳极和阴极流板上都嵌入了总共16个T型热电偶。这项研究的目的是研究所提出的温度表征方法的可行性,并确定在各种操作模式下正在运行的HT-PEM上的温度分布,包括700小时的传感器耐久性测试。嵌入式传感器对电池性能的影响很小,这种性能差异被认为是由不同的双极板材料引起的。该测量方法适合于获取用于验证计算模型的详细数据,此外,结果表明该方法可用作降解工具,因为可以在平面内以及在阳极和阴极之间定位暴露于降解的区域。 。

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