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Hydrogen Permeation Properties in (Ce,Sr)PO4

机译:(Ce,Sr)PO4中的氢渗透特性

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Ceramic membranes of a proton-electron hole mixed conductor, (Ce0.97Sr0.03PO4-delta), were prepared for hydrogen permeation measurements. Hydrogen was found to be considerably permeated with the ambipolar diffusion kinetics through the ceramic membranes. In addition, use of surface catalysts, such as pure platinum, palladium-Ce0.97Sr0.03PO4-delta, and platinum-Ce0.97Sr0.03PO4-delta composites, enhanced the hydrogen permeation flux, suggesting that the contribution of the surface reaction to the hydrogen permeation process is remarkable. The hydrogen permeation flux of (Ce,Sr)PO4 was found to be comparable to or slightly lower than that of perovskite-type mixed conductors of proton and electron holes reported in the preceding works. This paper reports on the hydrogen permeability of ceramic membranes, in which any alkaline earth metals are not included as main components. High chemical stability in atmospheres containing carbon dioxide and water vapor is expected for the class of this material contrary to some perovskite-type mixed proton and electron hole conductors.
机译:制备质子-电子空穴混合导体(Ce0.97Sr0.03PO4-delta)的陶瓷膜用于氢渗透测量。发现氢大量渗透通过陶瓷膜的双极扩散动力学。此外,使用表面催化剂,例如纯铂,钯-Ce0.97Sr0.03PO4-δ复合物和铂-Ce0.97Sr0.03PO4-δ复合物,可提高氢渗透通量,表明表面反应对氢的渗透过程非常出色。发现(Ce,Sr)PO4的氢渗透通量与先前研究中报道的质子和电子空穴的钙钛矿型混合导体的氢渗透通量相当或略低。本文报道了陶瓷膜的氢渗透性,其中不包括任何碱土金属作为主要成分。与某些钙钛矿型混合质子和电子空穴导体相反,这种材料类别在含有二氧化碳和水蒸气的气氛中具有很高的化学稳定性。

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