首页> 外文期刊>Journal of power sources >Multi scale and physics models for intermediate and low temperatures H+-solid oxide fuel cells with H+/e(-)/O2- mixed conducting properties: Part A, generalized percolation theory for LSCF-SDC-BZCY 3-component cathodes
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Multi scale and physics models for intermediate and low temperatures H+-solid oxide fuel cells with H+/e(-)/O2- mixed conducting properties: Part A, generalized percolation theory for LSCF-SDC-BZCY 3-component cathodes

机译:具有H + / e(-)/ O2-混合导电性能的中低温H +-固体氧化物燃料电池的多尺度和物理模型:A部分,LSCF-SDC-BZCY 3组分阴极的广义渗流理论

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摘要

H+ based solid oxide fuel cell (SOFC) composite cathodes are generally agreed to be of quite different relationships among the microstructure parameters, electrode properties and detailed working processes from the conventional O2--SOFC composite cathodes. In this paper, the percolation theory is significantly generalized and developed to suit most of the typical H+-SOFC composite cathodes with e(-)/H+, e(-)/O2- or e-/H+/O2- mixed conducting characteristics; not just limited to the BCZY, SDC and LSCF materials. It provides an easy way to investigate the effect of microstructure parameters on the H+-SOFC electrode characteristics in quantity. The studied electrode properties include: i) the potential coexisting sites of O-2, e(-), and O2- transport paths for the oxygen reduction; ii) the potential coexisting sites of O2-, H+ and H2O transport paths for the vapor formation; iii) the effective e(-), O2-, and H+ conducting and gas diffusing capabilities of the composite cathodes, and so on. It will be helpful for the H+-SOFC composite cathode manufacture to achieve the expected properties. Furthermore, it is also an important step for the developing of the multiphysics-model in manuscript part B to study the effect of the microstructure parameters on the H+-SOFC working details. (C) 2015 Elsevier B.V. All rights reserved.
机译:通常认为基于H +的固体氧化物燃料电池(SOFC)复合阴极与常规的O2--SOFC复合阴极在微观结构参数,电极特性和详细的工作过程之间具有完全不同的关系。在本文中,渗流理论得到了广泛的推广和发展,以适合大多数具有e(-)/ H +,e(-)/ O2-或e- / H + / O2-混合导电特性的典型H + -SOFC复合阴极。不仅限于BCZY,SDC和LSCF材料。它提供了一种简便的方法来研究微观结构参数对H + -SOFC电极特性的影响。所研究的电极性能包括:i)O-2,e(-)和O2-传输路径中潜在的氧还原共存位点; ii)O 2,H +和H 2 O传输路径可能共存的位置可能会形成蒸气; iii)复合阴极的有效e(-),O2-和H +导电和气体扩散能力,等等​​。 H + -SOFC复合阴极的制造达到预期的性能将是有帮助的。此外,研究微观结构参数对H + -SOFC工作细节的影响,也是开发手稿B部分中的多物理场模型的重要一步。 (C)2015 Elsevier B.V.保留所有权利。

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