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Characterization of metallic interconnects extracted from Solid Oxide Fuel Cell stacks operated up to 20,000 h in real life conditions: The fuel side

机译:从固体氧化物燃料电池堆中提取的金属互连的表征在现实生活条件下运行高达20,000小时:燃料侧

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The performance of an SOFC stack is related to the evolution over time of the materials during operation. Metallic interconnects (MICs) are exposed to high temperature (ca. 850 degrees C) and dual atmosphere (fuel and air streams), and hence react to form an oxide scale on top. This paper focuses on the fuel side of the MIC and investigates the nature of the oxides formed in SOFC stacks field operated by the SUNFIRE GmbH Company for up to 20,000 h in the frame of the EU-H2020 ADASTRA project. This opportunity supports the understanding on how the metal (i.e., CROFER (R) 22APU) reacts once exposed to the fuel stream by performing investigations on the surface and on the cross-section of the samples by SEM-EDS and micro-Raman spectroscopy. The results show the presence of a layered thermally grown oxide (TGO) rich in Cr at the interface with the metal. On top of the scale, a predominant presence of MnxOy is found supporting the hypothesis of a further reaction of the TGO with selective Cr depletion. The manganese oxides may represent a severe issue due to their very low conductivity. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:SOFC堆栈的性能与在操作期间材料的时间随时间的演变有关。金属互连(MICS)暴露于高温(约850℃)和双气氛(燃料和空气流),因此反应在顶部形成氧化物尺度。本文重点介绍了MIC的燃料侧,并研究了Sunfire GmbH公司在Eu-H2020 Adastra项目框架中最多20,000小时的SOFC堆栈领域中形成的氧化物的性质。该机会支持对金属(即Crofer22APU)如何通过在SEM-EDS和微拉曼光谱对样品的横截面上进行调查,对金属(即Crofer22APU)对燃料流进行的反应。结果表明,在与金属的界面处存在富含Cr的层状热生长氧化物(TGO)。在规模之上,发现突然存在的主要存在突然存在,支持TGO与选择性Cr耗尽的进一步反应的假设。锰氧化物由于其电导率非常低,可能代表严重问题。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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