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Analysis of possibilities for carbon removal from porous anode of solid oxide fuel cells after different failure modes

机译:分析不同失效模式后固体氧化物燃料电池多孔阳极除碳的可能性

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This study focuses on the investigation of possibilities for carbon removal from the fuel electrode of anode supported solid oxide fuel cells (ASC-SOFCs) after different degradation modes. To design the conditions which generally lead the cell in the range of carbon depositions the performed thermodynamic calculations show that the SOFC operating temperature range seems to be appropriate for formation of elemental carbon in various types. Concerning this the loaded large planar single SOFCs are fed with synthetic diesel reformate thus simulating realistic operating conditions and enabling the formation and deposition of carbon on the anode side. A mixture of hydrogen/water vaporitrogen is used to remove the detected carbon depositions in a cell-protecting manner. For the purpose of this investigation several failure modes are induced after which determination the already defined regeneration strategy is applied. The cathode degradation is first induced and secondly the fuel supply is interrupted to induce re-oxidation of nickel (Ni) on the anode side. The undertaken investigations determine that carbon can be fully removed from the anode surface after nickel oxidation, while cathode degradation disables the complete cell regeneration. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究的重点是研究在不同降解模式下从阳极支撑的固体氧化物燃料电池(ASC-SOFC)的燃料电极中除碳的可能性。为了设计通常导致电池处于碳沉积范围内的条件,进行的热力学计算表明,SOFC工作温度范围似乎适合于形成各种类型的元素碳。为此,向负载的大型平面单个SOFC供给合成柴油重整油,从而模拟实际的操作条件,并能够在阳极侧形成碳并沉积。使用氢/水蒸气/氮的混合物以保护细胞的方式去除检测到的碳沉积。为了该研究的目的,引入了几种故障模式,然后确定已经定义的再生策略。首先引起阴极退化,其次中断燃料供应以引起阳极侧镍(Ni)的再氧化。进行的研究确定,镍氧化后,碳可以从阳极表面完全除去,而阴极降解则使电池无法完全再生。 (C)2015 Elsevier B.V.保留所有权利。

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