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Estimation of membrane hydration status for standby proton exchange membrane fuel cell systems by impedance measurement: First results on variable temperature stack characterization

机译:阻抗测量估计待机质子交换膜燃料电池系统膜水合状态的估计:首先是可变温度堆叠表征的结果

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Fuel cells are getting growing interest in both backup systems and electric vehicles. Although these systems are characterized by periods of standby, they must be able to start at any instant in the shortest possible time. However, the membranes of which proton exchange membrane fuel cells are made, tend to gradually dry out when the fuel cell is not operating, increasing the time required to start up the system. A precise estimation of the hydration status of the membrane during standby is thus important for the design of a fuel cell system capable of a fast and safe start up. In previous works, the measurement of the complex impedance of a fuel cell stack during standby is used as an index of its membrane hydration status. In this article, the complex impedance of a fuel cell stack has been measured and characterized as a function of relative humidity and temperature. A non-conventional electrochemical impedance spectroscopy (EIS) technique has been used, allowing the performance of a fuel cell diagnostic when the fuel cell stack does not contain any hydrogen, which would otherwise not be possible. The results appeared to confirm that measuring the impedance of an entire fuel cell stack could be a viable way for estimating the hydration status and the temperature of its membrane before the system is started up. A summarizing table with the complete characterization of the fuel cell stack is included in this article.
机译:燃料电池对备用系统和电动车辆的兴趣越来越感兴趣。虽然这些系统的特征在于待机期,但它们必须能够在最短的时间内从任何瞬间开始。然而,当燃料电池未操作时,使质子交换膜燃料电池的膜趋于逐渐干燥,从而增加启动系统所需的时间。因此,待机期间膜的水合状态的精确估计对于能够快速安全启动的燃料电池系统的设计是重要的。在以前的作用中,待机期间燃料电池堆的复杂阻抗的测量用作其膜水合状态的指标。在本文中,已经测量了燃料电池堆的复杂阻抗,并表征为相对湿度和温度的函数。已经使用了一种非传统的电化学阻抗光谱(EIS)技术,允许当燃料电池堆不包含任何氢时燃料电池诊断的性能,否则否则是不可能的。结果似乎确认,测量整个燃料电池堆的阻抗可能是估计在系统启动之前的水合状态和其膜的温度的可行方法。本文包括具有燃料电池堆的完整表征的总结表。

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