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Novel fabrication technique of hollow fibre support for micro-tubular solid oxide fuel cells

机译:用于微管固体氧化物燃料电池的中空纤维载体的新制造技术

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摘要

In this work, a cerium-gadolinium oxide (CGO)ickel (Ni)-CGO hollow fibre (HF) for micro-tubular solid oxide fuel cells (SOFCs), which consists of a fully gas-tight outer electrolyte layer supported on a porous inner composite anode layer, has been developed via a novel single-step co-extrusion/co-sintering technique, followed by an easy reduction process. After depositing a multi-layers cathode layer and applying current collectors on both anode and cathode, a micro-tubular SOFC is developed with the maximum power densities of 440-1000 W m~(-2) at 450-580 C. Efforts have been made in enhancing the performance of the cell by reducing the co-sintering temperature and improving the cathode layer and current collection from inner (anode) wall. The improved cell produces maximum power densities of 3400-6800 W m~(-2) at 550-600 C, almost fivefold higher than the previous cell. Further improvement has been carried out by reducing thickness of the electrolyte layer. Uniform and defect-free outer electrolyte layer as thin as 10 μm can be achieved when the extrusion rate of the outer layer is controlled. The highest power output of 11,100Wm~(-2) is obtained for the cell of 10 μm electrolyte layer at 600 C. This result further highlights the potential of co-extrusion technique in producing high quality dual-layer HF support for micro-tubular SOFC.
机译:在这项工作中,用于微管固体氧化物燃料电池(SOFC)的铈​​-oxide氧化物(CGO)/镍(Ni)-CGO中空纤维(HF)由支撑在电池上的完全气密的外部电解质层组成多孔内部复合阳极层是通过新颖的单步共挤出/共烧结技术开发的,然后进行简单的还原工艺。在沉积多层阴极层并在阳极和阴极上均施加电流收集器之后,开发出了微管式SOFC,其在450-580 C时的最大功率密度为440-1000 W m〜(-2)。通过降低共烧结温度并改善阴极层和从内(阳极)壁收集电流来提高电池性能。改进的电池在550-600 C时可产生3400-6800 W m〜(-2)的最大功率密度,几乎比以前的电池高五倍。通过减小电解质层的厚度已经进行了进一步的改进。当控制外层的挤出速率时,可以实现薄至10μm的均匀且无缺陷的外电解质层。对于10μm电解质层在600°C的电池,其最高输出功率为11,100Wm〜(-2)。这一结果进一步凸显了共挤出技术在生产用于微管的高质量双层HF载体中的潜力。 SOFC。

著录项

  • 来源
    《Journal of power sources》 |2011年第11期|p.5035-5044|共10页
  • 作者单位

    Department of Chemical Engineering and Chemical Technology. Imperial College London, London SW72AZ, United Kingdom,Advanced Membrane Technology Research Centre (AMTEC),Faculty of Petroleum and Renewable Energy Engineering, Universiti Teknologi;

    Department of Chemical Engineering and Chemical Technology. Imperial College London, London SW72AZ, United Kingdom;

    Department of Chemical Engineering and Chemical Technology. Imperial College London, London SW72AZ, United Kingdom;

    Department of Chemical Engineering and Chemical Technology. Imperial College London, London SW72AZ, United Kingdom;

    Department of Chemical Engineering and Chemical Technology. Imperial College London, London SW72AZ, United Kingdom;

  • 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

    Co-extrusion; Co-sintering; Dual-layer hollow fibre; Micro-tubular SOFC;

    机译:共挤出;共烧结;双层中空纤维;微管SOFC;
  • 入库时间 2022-08-18 00:24:30

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