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首页> 外文期刊>Journal of power sources >LaScO_3-based electrolyte for protonic ceramic fuel cells: Influence of sintering additives on the transport properties and electrochemical performance
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LaScO_3-based electrolyte for protonic ceramic fuel cells: Influence of sintering additives on the transport properties and electrochemical performance

机译:基于Lasco_3的质子陶瓷燃料电池的电解质:烧结添加剂对运输性能和电化学性能的影响

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摘要

In this work, the effect of the content of CuO, ZnO, Al2O3, NiO, Fe2O3, Co3O4 and MoO3 additives on the sinterability, microstructure, and electrical properties of La0.9Sr0.1ScO3-alpha, proton-conducting oxide in a form of tubes produced by slip casting is studied. It is shown that the relative density of La0.9Sr0.1ScO3-alpha, tubes without sintering aids is similar to 86%. The introduction of 1.0 wt % ZnO, Al2O3, NiO or 0.5 divided by 1.0 wt % Co3O4 leads to a relative density of ceramics higher than 95%. Among dense ceramic tubes, LSS +0.5 wt % Co3O4 has the highest electrical conductivity. The introduction of 1 wt % Fe2O3 additive does not affect the sinterability of the LSS, and 1 wt % CuO and MoO3 inhibits LSS sintering. Single protonic ceramic fuel cells based on LSS +0.5 wt % Co3O4 and LSS +1.0 wt % NiO supporting electrolyte tubes with a thickness of 300 mu m are studied. The maximum power density of about 30 mW/cm(2) at 800 degrees C was obtained for a cell based on LSS +0.5 wt % Co3O4 using wet hydrogen as fuel and air as an oxidizing gas.
机译:在这项工作中,CuO,ZnO,Al 2 O 3,NiO,Fe 2 O 3,CO 3 O 4和MOO3添加剂对La0.9SR0.1SCO3-α的烧结性,微观结构和电性能的影响,以一种形式的氧化物研究了滑铸厂生产的管。结果表明,LA0.9SR0.1SCO3-α的相对密度,没有烧结助剂的管类似于86%。引入1.0wt%ZnO,Al 2 O 3,NiO或0.5除以1.0wt%CO3O4导致陶瓷的相对密度高于95%。在致密的陶瓷管中,LSS + 0.5wt%CO3O4具有最高的电导率。引入1wt%Fe2O3添加剂不会影响LSS的烧结性,1wt%CuO和Moo3抑制LSS烧结。研究了基于LSS + 0.5wt%CO3O4和LSS + 1.0wt%NIO的单态陶瓷燃料电池,厚度为300μm的电解质管。使用湿氢作为燃料和空气作为氧化气体,基于LSS + 0.5wt%CO3O4获得800℃的最大功率密度在800℃下,为电池获得电池。

著录项

  • 来源
    《Journal of power sources 》 |2020年第1期| 228255.1-228255.9| 共9页
  • 作者单位

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia|Ural Fed Univ Mira St 19 Ekaterinburg 620002 Russia;

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia|Ural Fed Univ Mira St 19 Ekaterinburg 620002 Russia;

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia|Ural Fed Univ Mira St 19 Ekaterinburg 620002 Russia;

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia|Ural Fed Univ Mira St 19 Ekaterinburg 620002 Russia;

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia|Ural Fed Univ Mira St 19 Ekaterinburg 620002 Russia;

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia|Ural Fed Univ Mira St 19 Ekaterinburg 620002 Russia;

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia;

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia;

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia|Ural Fed Univ Mira St 19 Ekaterinburg 620002 Russia;

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia|Ural Fed Univ Mira St 19 Ekaterinburg 620002 Russia;

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia;

    Inst High Temp Electrochem UB RAS Acad Skaya St 20 Ekaterinburg 620137 Russia;

  • 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

    PCFC; LaScO3; Sintering additives; Ceramic; Tubular protonic ceramic fuel cell; Proton-conducting electrolyte;

    机译:PCFC;Lasco3;烧结添加剂;陶瓷;管状质子陶瓷燃料电池;质子导电电解质;

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