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首页> 外文期刊>Fuel cells >Evolution of Permanent Deformations (or Memory) in Nafion 117 Membranes with Changes in Temperature, Relative Humidity and Time, and Its Importance in the Development of Medium Temperature PEMFCs
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Evolution of Permanent Deformations (or Memory) in Nafion 117 Membranes with Changes in Temperature, Relative Humidity and Time, and Its Importance in the Development of Medium Temperature PEMFCs

机译:随着温度,相对湿度和时间的变化,Nafion 117膜的永久变形(或记忆)的演变及其在中温PEMFC的开发中的重要性

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An important problem for medium temperature polymer electrolyte fuel cells (MT PEMFCs) operating in the temperature range 90-140℃is the short time-life of proton conducting membranes. To shed some light on the empirical annealing treatments used for increasing the membrane durability, a systematic research on the effects of thermal treatments of Nafion 117 membranes was undertaken with the hope that the information obtained could be useful for a better understanding of the real limits for MT PEMFCs. Kinetic experiments showed that, for each couple of T-RH values, the water taken up from the membrane reaches a constant value only after long times of equilibration (≥200 h). Taking into account that the enlargements provoked by the wateruptake remain as permanent deformations when the samples are cooled, it was found that the evolution of the deformations provoked by changes in temperature and RH can be conveniently estimated at 20℃ by determining the water taken up after equilibration in liquid water. By relating the counter-elastic index of the matrix (n_(c(m))) to the extent of these deformations, a set of equations were obtained which allowed us to predict their evolution with changes of temperature and relative humidity. A good agreement with experimental values was found. The importance of this discovery for the development of MT PEMFCs is discussed.
机译:在90-140℃的温度范围内工作的中温聚合物电解质燃料电池(MT PEMFC)的一个重要问题是质子传导膜的寿命短。为了阐明用于提高膜耐用性的经验退火处理方法,对Nafion 117膜的热处理效果进行了系统研究,希望所获得的信息有助于更好地了解膜的实际极限。 MT PEMFC。动力学实验表明,对于每对T-RH值,从膜中吸收的水只有经过长时间的平衡(≥200 h)才达到恒定值。考虑到样品冷却后,吸水引起的膨胀仍然是永久变形,因此通过确定温度和相对湿度可以确定在20℃时的吸水量,从而可以方便地估算出温度和相对湿度变化引起的变形的演变。在液态水中平衡。通过将矩阵的反弹性指数(n_(c(m)))与这些变形的程度相关联,获得了一组方程,使我们能够预测它们随温度和相对湿度的变化而变化。发现与实验值良好的一致性。讨论了这一发现对MT PEMFC开发的重要性。

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