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Operation of micro tubular solid oxide fuel cells integrated with propane reformers

机译:集成有丙烷重整器的微型管状固体氧化物燃料电池的运行

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This paper presents the operating results of micro tubular solid oxide fuel cells (MT-SOFCs) integrated with propane catalytic partial oxidation (CPOX) reformers. The cells combined with the propane CPOX reformers successfully survived 1000 continuous thermal cycles totaling 1922 h of operation with only a 0.47 mW power loss per cycle, as well as surviving 100 extreme thermal cycles with a maximum ramp rate of 1000 degrees C.min(-1) without any power loss. This excellent thermal shock resistance is due to both the well matched coefficient of thermal expansion (CTE) among all of the cells' layers as well as the homogenous anode structure present in all of the cells. Additionally, the cells operated on propane for more than 1500 continuous hours with an average degradation rate of 0.067 mW h(-1) (0.58%/1000 h). This degradation was attributed to the sintering of the nickel in the anode, degradation of the current collection and the reformer. The fact that the cells showed no sign of delamination, cracking or coking after these tests also proves the successful integration of cell and CPOX reformer. Overall, the 3D printed MT-SOFCs with integrated CPOX reformers exhibited a breakthrough in terms of cell thermal cycling and long-term stability which will significantly advance the development of portable SOFCs systems. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文介绍了与丙烷催化部分氧化(CPOX)重整器集成的微型管状固体氧化物燃料电池(MT-SOFC)的运行结果。与丙烷CPOX重整器组合的电池成功地存活了1000个连续热循环,总共运行了1922小时,每个循环仅损失0.47 mW功率,还存活了100个极端热循环,最大升温速率为1000摄氏度.min(- 1)无任何功率损耗。优异的抗热震性是由于所有电池层之间的热膨胀系数(CTE)匹配良好,以及所有电池中均质的阳极结构所致。此外,这些电池在丙烷上连续运行1500多个小时,平均降解率为0.067 mW h(-1)(0.58%/ 1000 h)。这种劣化归因于阳极中镍的烧结,集电器和重整器的劣化。在这些测试之后,电池没有分层,破裂或结焦的迹象,也证明了电池和CPOX重整器的成功整合。总体而言,带有集成CPOX重整器的3D打印MT-SOFC在电池热循环和长期稳定性方面表现出突破,这将大大推动便携式SOFC系统的发展。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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