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Numerical modelling and comparative analysis of direct ammonia fuelled protonic and oxygen- ion conducting tubular solid oxide fuel cell

机译:直接氨燃料质子和氧离子传导管状固体氧化物燃料电池的数值建模与对比分析

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The main emphasis of this work is developing a 3D numerical model and investigating the performance characteristic of a direct ammonia fuelled protonic-conducting tubular solid oxide fuel cell (NH3-T-SOFC-H) in comparison with the corresponding hydrogen-fuelled one and direct ammonia feed oxygen-ion conducting tubular solid oxide fuel cell (NH3-T-SOFC-O) under the same operating parameters and geometrical shape. The findings revealed that NH3-T-SOFC-H has outstanding performance over T-SOFC-O counterparts at intermediate temperature (973 K) when operated under similar working conditions and geometrical designs. On the other hand the NH3-T-SOFC-O is promising for higher operating temperatures. The outcomes of the study are also confirmed that the power performance of NH3-AS-T-SOFC-O is better than the other supports of both electrolytes when the anode electrode is constructed at the outside portion of the tubular cell. Yet, the other remarkable result found in this study is that NH3- CS- T-SOFC-O has outstanding performance compared to all supports of both electrolytes when the fuel electrode is built in the inner portion of the tube. In addition, the finding indicates that the power performance of ammonia-fuelled tubular cells is strongly influenced by the anode position, operating temperatures, and pressures in both electrolytes yet the effect of cell temperature is more influential in the protonic-conducting cell. It is also observed that the performance of ES-T-SOFC is lower than AS- and CS-T-SOFC in both electrolytes and anode positions. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:该工作的主要重点是开发3D数值模型,并研究与相应的氢气燃料一体化相比的直接氨燃料质子传导管状固体氧化物燃料电池(NH3-T-SOFC-H)的性能特性氨在相同的操作参数和几何形状下喂氧离子导电管状固体氧化物燃料电池(NH3-T-SOFC-O)。结果表明,在类似的工作条件和几何设计下操作时,NH3-T-SOFC-H在中间温度(973K)上的T-SOFC-O对应物具有出色的性能。另一方面,NH3-T-SOFC-O是对更高的操作温度有望。还证实了该研究的结果,即当在管状电池的外部构造时,NH3-AS-T-SOFC-O的功率性能优于两种电解质的其他支持。然而,本研究中发现的其他显着效果是与在管的内部内部内部的燃料电极内置时,NH 3-CS-T-SOFC-O与两种电解质的所有支持相比具有出色的性能。此外,该发现表明氨燃料管状电池的功率性能受到阳极位置,操作温度和两种电解质中的压力的​​强烈影响,但在质子导电细胞中,细胞温度的效果更有影响。还观察到,ES-T-SOFC的性能低于电解质和阳极位置的CS-T-SOFC。 (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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