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Characterization and polarization DRT analysis of direct ethanol solid oxide fuel cells using low fuel partial pressures

机译:低燃料部分压力直接乙醇固体氧化物燃料电池的表征及偏振DRT分析

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摘要

Commercial Ni-YSZ anodes of solid oxide fuel cells (SOFCs) are susceptible to carbon deposits using hydrocarbons as fuel. Herein, we explore a simple approach of low fuel partial pressure to investigate the relevant limiting factors for ethanol-fueled SOFCs, providing the evaluation of the electrochemical performance and the carbon tolerance. As the partial pressure of ethanol fuel increases from 30% to 60%, the best cell performance gradually increases from 710.2 mW cm(-2) to 856.8 mW cm(-2) at 800 degrees C, which still lower than those of hydrogen-fueled SOFCs (1061.4 mW cm(-2) at 800 degrees C), and the corresponding improvement in concentration polarization can be clearly observed especially in high current discharge area. The corresponding impedance spectra and electrode polarization processes of ethanol-fueled SOFCs are further studied by the equivalent circuit fitting and the distribution function of relaxation time (DRT) analysis, finding that the key improvement of the speed control steps comes from the concentration polarization process with the increase of the fuel partial pressure. Small amount of carbon deposition is observed on the Ni-YSZ anode substrate by SEM-EDS images after short-term discharging testing, and the safety utilization boundaries of ethanol-fueled SOFCs with a certain steam concentration can be predicted by the thermodynamic equilibria calculation. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:用于使用烃作为燃料的商业氧化物燃料电池(SOFC)的商业Ni-YSZ阳极易于使用碳氢化合物的碳沉积物。在此,我们探讨了低燃料部分压力的简单方法,以研究乙醇燃料的SOFC的相关限制因素,提供了对电化学性能和碳耐受的评价。随着乙醇燃料的分压从30%增加到60%,最佳的细胞性能在800℃下从710.2mw cm(-2)至856.8 mw cm(-2)逐渐增加,这仍然低于氢气 - 在800摄氏度下燃料的SOFC(1061.4mm(-2)),并且可以清楚地观察到浓度极化的相应改善,特别是在高电流放电区域中。通过等效电路拟合和弛豫时间(DRT)分析的等效电路拟合和分布函数进一步研究了相应的阻抗光谱和电极偏振方法,发现速度控制步骤的关键改进来自浓度偏振过程燃油部分压力的增加。在短期排放测试之后,通过SEM-EDS图像在Ni-YSZ阳极底物上观察到少量碳沉积,并且可以通过热力学平衡计算来预测具有某种蒸汽浓度的乙醇燃料SOFC的安全利用边界。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2020年第28期|14480-14490|共11页
  • 作者单位

    China Univ Min & Technol Sch Mat Sci & Phys Xuzhou 221116 Jiangsu Peoples R China;

    China Univ Min & Technol Sch Mat Sci & Phys Xuzhou 221116 Jiangsu Peoples R China;

    China Univ Min & Technol Sch Mat Sci & Phys Xuzhou 221116 Jiangsu Peoples R China;

    China Univ Min & Technol Sch Mat Sci & Phys Xuzhou 221116 Jiangsu Peoples R China;

    China Univ Min & Technol Sch Mat Sci & Phys Xuzhou 221116 Jiangsu Peoples R China|China Univ Min & Technol Jiangsu Prov Engn Lab High Efficient Energy Stora Xuzhou 221116 Jiangsu Peoples R China;

    China Univ Min & Technol Sch Mat Sci & Phys Xuzhou 221116 Jiangsu Peoples R China|China Univ Min & Technol Jiangsu Prov Engn Lab High Efficient Energy Stora Xuzhou 221116 Jiangsu Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ethanol-fueled SOFCs; Ni-YSZ anode; Carbon deposition; Concentration polarization; Electrode polarization process;

    机译:乙醇燃料的SOFC;Ni-YSZ阳极;碳沉积;浓度极化;电极极化过程;

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