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Optomechanical characterization of proton-exchange membrane fuel cells

机译:质子交换膜燃料电池的光机械表征

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Nafion~(~R) is widely used as the polymer electrolyte in proton exchange membrane (PEM) fuel cells. The properties that make the Nafion~(~R) membrane indispensable are the combination of good water uptake, ion-exchange capacity, proton conductivity, gas permeability, and excellent electrochemical stability. The amount of water sorbed in the Nafion~(~R) membrane is critical as the proton conductivity depends directly on the water content of the membrane which determines the fuel cell performance. The factors which affect the extent of the solvent uptake by Nafion~(~R) are temperature, ion-exchange capacity, pretreatment of membrane, and the physical state of absorbing water, whether it is in liquid or vapor phase. The water sorption in the membrane is explained in terms of thermodynamic equilibrium of water in the vapor and absorption phases. As the membrane imbibes more water, the membrane matrix expands and exerts a pressure on the pore liquid which affects its chemical potential and limits extent of swelling. The extent of matrix expansion of the membranes depends on the elastic modulus, E, of the membrane, which directly affects the sorption. Hence, it is important to understand the variation of E for Nafion~(~R) membrane with relative humidity (RH) and temperature. Optoelectronic holography (OEH) techniques are applied to perform quantitative, noninvasive, full field of view investigations to determine temperature and water activity dependence of E.The results obtained confirm that with the increase in temperature, E decreases and the membranes imbibes more water. Such results will allow optimization and realization of fuel cells with improved efficiency and performance.
机译:Nafion〜(〜R)广泛用作质子交换膜(PEM)燃料电池中的聚合物电解质。使Nafion〜(〜R)膜不可或缺的性质是良好的水吸收,离子交换能力,质子电导率,透气性和优异的电化学稳定性的组合。当质子电导率直接取决于确定燃料电池性能的膜的水含量取决于质子电导率,Nafion〜(〜〜〜〜〜r)膜中的水含量是关键的。无论是液体还是气相,影响Nafion〜(〜R)影响溶剂吸收程度的因素是温度,离子交换能力,膜的预处理,以及吸水的物理状态,无论是液体还是气相。就蒸汽和吸收相的热力学平衡而解释了膜中的水吸附。当膜吸收更多的水时,膜基质膨胀并对孔隙液体施加压力,这会影响其化学势并限制溶胀程度。膜的基质膨胀程度取决于直接影响吸附的膜的弹性模量,e。因此,重要的是要理解具有相对湿度(RH)和温度的Nafion〜(〜R)膜的e的变化。应用光电全息术(OEH)技术以进行定量,非侵入性的视野,以确定E的温度和水活性依赖性。获得的结果证实,随着温度的增加,E降低,膜吸收更多的水。这种结果将允许通过提高效率和性能来优化和实现燃料电池。

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