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Interfacial resistances of Ni-BCY mixed-conducting membranes for hydrogen separation

机译:Ni-BCY混合导电膜氢分离的界面电阻

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Accurate determination of interfacial polarization resistance is essential to characterization of solid-state electrochemical systems based on thin-film electrolytes or membranes. In this study, three methods have been used to determine the interfacial resistance of a composite membrane consisting of 40 vol.% Ni and 60 vol.% BaYxCe1-xO3. The interfacial resistances determined from the dependence of hydrogen permeation rate on membrane thickness were similar to those obtained from a combination of gas permeation with impedance spectroscopy (IS), implying that both approaches are applicable to the composite membrane. Results also indicate that the interfacial resistances are much greater than the bulk resistances under the conditions studied. Further improvement of the hydrogen permeation rate thus depends on reducing the interfacial polarization resistance. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 10]
机译:准确确定界面极化电阻对于表征基于薄膜电解质或膜的固态电化学系统至关重要。在这项研究中,已使用三种方法确定由40%(体积)的Ni和60%(体积)的BaYxCe1-xO3组成的复合膜的界面电阻。由氢渗透速率对膜厚度的依赖性所确定的界面电阻类似于由气体渗透与阻抗谱(IS)的组合所获得的界面电阻,这表明这两种方法都适用于复合膜。结果还表明,在所研究的条件下,界面电阻远大于体电阻。因此,氢渗透速率的进一步提高取决于降低界面极化电阻。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:10]

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