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Catalytic effects in oxygen permeation through mixed-conductive LSCF perovskite membranes

机译:混合导电LSCF钙钛矿膜对氧气渗透的催化作用

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The porous catalytic layer of perovskites was coated on either surface or both surfaces of the dense membranes of LSCF perovskites with nearly 1-mm thickness, and the catalytic effects on the oxygen permeation flux under the air/He gradient were investigated. The observed catalytic effects were discussed mainly on the basis of the oxygen sorption-desorption capacity (OSDC) of membrane and catalyst materials. The coating on the anode side improved the oxygen flux in any combinations of the membrane and catalyst materials having different OSDC, and an increase in the anode surface area, where oxygen association reaction takes place, is primarily responsible for the enhancement by the anode coating. The effect of the cathode coating, on the other hand, depended significantly on the relative difference in OSDC of the membrane and catalyst materials: for example, the oxygen permeation flux was enhanced and reduced by coating with perovskites having larger and smaller OSDC, respectively. It has turned out that the cathode materials should have large OSDC. The behavior of membranes modified on both sides could be understood in terms of a simple sum of the cathodic and anodic effects. (C) 2002 Published by Elsevier Science B.V. [References: 20]
机译:将钙钛矿的多孔催化层涂覆在厚度约为1mm的LSCF钙钛矿的致密膜的一面或两面上,并研究了在空气/ He梯度下对氧渗透通量的催化作用。观察到的催化作用主要是基于膜和催化剂材料的氧吸附-脱附能力(OSDC)来讨论的。在具有不同OSDC的膜和催化剂材料的任何组合中,阳极侧的涂层改善了氧通量,并且发生氧缔合反应的阳极表面积的增加主要是由阳极涂层引起的。另一方面,阴极涂层的效果很大程度上取决于膜和催化剂材料的OSDC的相对差异:例如,通过分别涂覆具有较大和较小OSDC的钙钛矿可以提高和减少氧气的渗透通量。事实证明,阴极材料应具有较大的OSDC。可以通过简单地将阴极和阳极效应相加来理解在两侧改性的膜的行为。 (C)2002由Elsevier Science B.V.出版[参考文献:20]

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