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首页> 外文期刊>Energy Conversion & Management >Size and exergy assessment of solid oxide fuel cell-based H_2-fed power generation system with alternative electrolytes: A comparative study
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Size and exergy assessment of solid oxide fuel cell-based H_2-fed power generation system with alternative electrolytes: A comparative study

机译:用替代电解质的基于固体氧化物燃料电池的H_2馈电发电系统的尺寸和辐射评估:比较研究

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摘要

This work aims to analyse and compare the thermodynamic performance and size of two types of solid oxide fuel cell (SOFC)-based plants. The former is the conventional H-2-fed plant based on SOFC with an oxygen-ion conducting electrolyte (SOFC-O), and the latter is based on SOFC using a proton-conducting electrolyte (SOFC-H). Thermodynamic analysis reveals that in the SOFC-H system, due to H2O formation at the cathode side, not only the anode concentration losses decreases, but also the partial pressure difference between H2 and H2O increases which leads to an increase in Nernst voltage compared to the SOFC-O system. Due to this, SOFC-H and SOFC-O based plants exhibit different performance in terms of the cell voltage, power, efficiency, stack outlet temperature and size of heat exchangers used for preheating the fuel and air. The results indicate, for current densities less than around 3,000 A/m(2), the energy and exergy efficiencies of SOFC-H-based system are more than those of the SOFC-O-based plant. This results in reduced area of heat exchangers per unit power used in the SOFC-H-based plant as compared with the SOFC-O-based plant. In addition, the sensitivity analysis demonstrates that using thin cells in the SOFC stack is favourable for the SOFC-H-based plant.
机译:这项工作旨在分析和比较两种类型固体氧化物燃料电池(SOFC)的植物的热力学性能和大小。前者是基于SOFC的常规H-2喂养植物,其具有氧离子导电电解质(SOFC-O),并且后者使用质子传导电解质(SOFC-H)基于SOFC。热力学分析表明,在SOFC-H系统中,由于在阴极侧的H2O形成,不仅阳极浓度损失降低,而且H2和H2O之间的部分压力差异增加,这导致内部电压的增加与内部电压相比增加SOFC-O系统。由此,在电池电压,功率,效率,堆叠出口温度和用于预热燃料和空气的热交换器的尺寸方面,SOFC-H和SOFC-O的植物表现出不同的性能。结果表明,对于小于约3,000A / m(2)的电流密度,基于SOFC-H的系统的能量和漏极性效率大于基于SOFC-O的植物的能量和漏效。与基于SOFC-O基植物相比,这导致每单位功率的热交换器的换热器减少。此外,敏感性分析表明,使用SOFC堆叠中的薄细胞是有利的基于SOFC-H的植物。

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