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A novel single-step fabrication anode/electrolyte/cathode triple-layer hollow fiber micro-tubular SOFG

机译:一种新颖的单步制备阳极/电解质/阴极三层中空纤维微管SOFG

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摘要

Micro-tubular solid oxide fuel cells (MT-SOFCs) have attracted much attention due to; higher volumetric output density, greater tolerance to cycling, quicker start-up capability and better mobility. Fabrication process of MT-SOFCs is one of the critical factor that ensures the success of a cell. There are three main components (i.e. anode, electrolyte and cathode) in the development of MT-SOFCs which are generally fabricated through separated and multiple laborious steps. This study aims to produce a novel anode/electrolyte/cathode (NiO-CGO/CGO/LSCF-CGO) triple-layer hollow fiber (TLHF) in a single-step using phase inversion based co-extrusion combined with co-sintering technique. The challenge lies within the diverse sintering behaviors among the anode, electrolyte and cathode layers at some point of the cell fabrication. In this study, the TLHF was found being able to survive the co-sintering at 1450 degrees C resulting a defect free precursor producing 0.48 Wcm(-2) maximum power densities at 525 degrees C, which is comparable with the cell fabricated using conventional multiple-step process. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:由于以下原因,微管固体氧化物燃料电池(MT-SOFC)备受关注。更高的体积输出密度,更大的循环耐受性,更快的启动能力和更好的机动性。 MT-SOFC的制造过程是确保电池成功的关键因素之一。 MT-SOFC的开发主要包括三个主要部分(即阳极,电解质和阴极),这些步骤通常是通过分立且繁琐的步骤来制造的。本研究旨在通过基于相转化的共挤出结合共烧结技术一步一步生产新型阳极/电解质/阴极(NiO-CGO / CGO / LSCF-CGO)三层中空纤维(TLHF)。挑战在于电池制造过程中阳极,电解质和阴极层之间不同的烧结行为。在这项研究中,发现TLHF能够在1450摄氏度的共烧结下幸存,从而产生无缺陷的前驱体,在525摄氏度下产生0.48 Wcm(-2)的最大功率密度,这与使用常规倍频制造的电池相当步骤过程。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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