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In situ simultaneous measurements of temperature and water partial pressure in a PEM fuel cell under steady state and dynamic cycling

机译:在稳态和动态循环下现场同时测量PEM燃料电池中的温度和水分压

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摘要

In situ, line-of-sight measurements of water vapor partial pressure and temperature were performed in a gas channel on the cathode side of an operating PEM fuel cell. Tunable diode laser absorption spectroscopy was employed for these measurements for which water transitions sensitive to temperature and partial pressure were utilized. The previously demonstrated methodology for water partial pressure measurements was extended to include temperature by including additional features of the water spectra in the data analysis. The combined technique was demonstrated in a PEM fuel cell operating under both steady state and time-varying load conditions. For steady state operation, the water partial pressure increases with increasing current density on the cathode side due to production of water by electrochemical reaction. Temperature in the gas phase remains relatively constant since the fuel cell housing temperature is controlled externally. For unsteady operation of the fuel cell through a time varying current profile, it is found that the water partial pressure responds to the load changes rapidly and follows the current profile. The gas temperature varies in response to the dynamic loading and departures from steady state conditions become more apparent at higher fuel cell operating temperatures.
机译:在运行中的PEM燃料电池阴极侧的气体通道中,对水蒸气分压和温度进行了视线测量。这些测量采用可调二极管激光吸收光谱法,其中利用了对温度和分压敏感的水跃迁。通过在数据分析中包括水谱的其他功能,将先前证明的水分压测量方法扩展到包括温度。结合的技术在PEM燃料电池中得到了证明,该燃料电池在稳态和时变负载条件下均可运行。对于稳态操作,由于通过电化学反应产生水,水分压随着阴极侧电流密度的增加而增加。由于燃料电池壳体的温度是从外部控制的,因此气相温度保持相对恒定。对于通过时变电流分布图使燃料电池不稳定运行,发现水分压对负载变化的响应迅速并遵循电流分布图。气体温度响应于动态负载而变化,并且在较高的燃料电池工作温度下,偏离稳态状态变得更加明显。

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