首页> 外文期刊>Journal of the European Ceramic Society >Oxygen permeation in symmetric and asymmetric La0.2Sr0.8Fe0.8Ta0.2O3-delta membranes
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Oxygen permeation in symmetric and asymmetric La0.2Sr0.8Fe0.8Ta0.2O3-delta membranes

机译:对称和不对称La0.2Sr0.8Fe0.8Ta0.2O3-delta膜中的氧渗透

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摘要

L0.2Sr0.8Fe0.8Ta0.2O3-delta (LSFT) is a mixed ionic electronic conductor (MIEC) at elevated temperatures and as such a candidate material for applications both in syn-gas synthesis and as electrodes in solid oxide fuel cells (SOFC). This study addresses the variation in oxygen permeation rates for LSFT symmetric- and asymmetric-membranes at temperatures between 800 and 1000 degrees C with and without surface modification. The surface was structured in two different scales, macro (porous LSFT-layer) and micro (acid etching). The asymmetric membranes showed a significant variation in permeation rate with surface treatment with increasing rate in the sequence from non-treated to macro-structured and finally micro structured, corresponding to oxygen permeation being controlled by surface exchange and gas diffusion. It was found that the permeation rate was sensitive to the gas sweep rate when H-2-mixtures was introduced on the permeate side, which was rationalized by the effect of H2O-diffusion across a gas film layer. (C) 2016 Elsevier Ltd. All rights reserved.
机译:L0.2Sr0.8Fe0.8Ta0.2O3-delta(LSFT)是在高温下的混合离子电子导体(MIEC),因此既是合成气合成应用的候选材料,又是固体氧化物燃料电池(SOFC)的电极)。这项研究解决了在有表面改性和没有表面改性的情况下,LSFT对称膜和不对称膜在800到1000摄氏度之间的氧气渗透速率的变化。表面以两种不同的比例进行结构化,即宏观(多孔LSFT层)和微观(酸蚀)。不对称膜显示出随着表面处理渗透率的显着变化,速率从未处理到宏观结构再到微观结构依次增加,这与通过表面交换和气体扩散控制氧气渗透有关。发现当在渗透侧引入H-2-混合物时,渗透速率对气体吹扫速率敏感,这通过H 2 O在整个气膜层上的扩散作用而合理化。 (C)2016 Elsevier Ltd.保留所有权利。

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