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Lifetime Prediction Approach Applied to the Aquivion Short Side Chain Perfluorosulfonic Acid Ionomer Membrane for Intermediate Temperature Proton Exchange Membrane Fuel Cell Application

机译:寿命预测方法在中温质子交换膜燃料电池应用的短侧链全氟磺酸离聚物膜的应用中

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Degradation and durability studies of the short side chain perfluorosulfonic acid ionomer membrane, Aquivion, of Solvay Specialty Polymers, are described in a fuel cell operation beyond 100℃. Specific electrochemical accelerated stress tests under a dynamic electric load cycling profile were developed to submit the membrane to hydration-dehydration cycles, while the effect of operation temperature was also investigated to reproduce typical power demands and/or thermal gradient periods likely to be encountered during seasonal variation of a micro-combined heat and power system. Aquivion is a high performance membrane which is shown in this study to sustain operation until 110℃, higher than was possible with Nafion under similar conditions. Post-test observations studies by electron microscopy and ex situ tensile measurements bring to light modifications of membrane thickness and mechanical properties that rationalize an upper operating temperature of 120℃. Membrane thermal annealing is shown to increase lifetime with the ageing procedures used. A predictive lifetime model is proposed by correlating the estimated lifetime values and the experimental data via a lifetime coefficient.
机译:Solvay Specialty Polymers的短侧链全氟磺酸离聚物膜Aquivion的降解和耐久性研究已在超过100℃的燃料电池操作中进行了描述。开发了在动态电负载循环曲线下的特定电化学加速应力测试,以使膜经历水合-脱水循环,同时还研究了操作温度的影响,以再现季节性期间可能遇到的典型功率需求和/或热梯度周期微型热电联产系统的变体。 Aquivion是一种高性能的膜,在这项研究中显示其可以维持运行至110℃,比在类似条件下使用Nafion的膜要高。通过电子显微镜和异位拉伸测量进行的测试后观察研究揭示了膜厚度和机械性能的变化,从而使最高工作温度为120℃。膜热退火显示出随着所使用的老化程序而增加了寿命。通过将估计的寿命值和寿命系数相关联的实验数据,提出了寿命预测模型。

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