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首页> 外文期刊>International journal of hydrogen energy >Fabrication of Ni-YSZ anode supported tubular SOFC through iso-pressing and co-firing route
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Fabrication of Ni-YSZ anode supported tubular SOFC through iso-pressing and co-firing route

机译:等压共烧法制备Ni-YSZ阳极支撑管状SOFC

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摘要

In the present work, a co-pressing and co-firing process has been developed to fabricate thin YSZ electrolyte film over tubular NiO-YSZ anode support for solid oxide fuel cell (SOFC) application. The one-end-closed tubular anode support was fabricated by cold isostatic pressing (CIP) and electrolyte coating was made by dip coating a terpineol based YSZ slurry over the anode support. The anode support along with coated electrolyte layer was co-pressed in CIP and co-fired at 1350 ℃ to get impervious electrolyte layer. LSM-YSZ composite cathode layer and LSM cathode current collector layer was formed by dip coating terpineol based slurries followed by sintering at 1150 ℃. Symmetric cells in planar configuration were fabricated and tested by electrochemical impedance spectroscopy (EIS) in order to determine area-specific resistance (ASR) for electrode polarization. An ASR value of 0.79 Ω cm~2 was obtained for Ni-YSZ|YSZ interface at 900 ℃ in humidified H_2. The ASR value was 0.55 Ω cm~2 for LSM-YSZ|YSZ interface at 900 ℃ in air. Tubular single cell having ~ 1 cm~2 cathode current collecting area was generated and the cell was found to give a maximum of 62 mW cm~(-2) power density when tested at 900 ℃. The interfacial microstructures and electrochemical test results illustrate the feasibility of fabrication of tubular anode supported SOFC by co-pressing and co-firing.
机译:在目前的工作中,已经开发出一种共压和共烧工艺,以在用于固体氧化物燃料电池(SOFC)的管状NiO-YSZ阳极载体上制造YSZ电解质薄膜。通过冷等静压(CIP)制造一端封闭的管状阳极支撑体,并通过在阳极支撑体上浸涂基于松油醇的YSZ浆料来制备电解质涂层。将阳极支撑体与涂覆的电解质层一起在CIP中共压并在1350℃下共烧以获得不渗透的电解质层。 LSM-YSZ复合阴极层和LSM阴极集电体层是通过浸涂萜品醇类浆料然后在1150℃下烧结而形成的。为了确定电极极化的面积比电阻(ASR),制造了平面配置的对称电池并通过电化学阻抗谱(EIS)进行了测试。 Ni-YSZ | YSZ界面在900℃湿H_2下的ASR值为0.79Ωcm〜2。 LSM-YSZ | YSZ界面在空气中900℃时ASR值为0.55Ωcm〜2。产生了具有〜1 cm〜2阴极集流面积的管状单电池,并且在900℃下测试时发现该电池的最大功率密度为62 mW cm〜(-2)。界面微观结构和电化学测试结果说明了通过共压和共烧制造管状阳极支撑SOFC的可行性。

著录项

  • 来源
    《International journal of hydrogen energy 》 |2012年第4期| p.3874-3882| 共9页
  • 作者单位

    Energy Conversion Materials Section, Materials Group, Bhabha Atomic Research Centre, Vashi Complex, Naui Mumbai, Mumbai 400705,India;

    Energy Conversion Materials Section, Materials Group, Bhabha Atomic Research Centre, Vashi Complex, Naui Mumbai, Mumbai 400705,India;

    Energy Conversion Materials Section, Materials Group, Bhabha Atomic Research Centre, Vashi Complex, Naui Mumbai, Mumbai 400705,India;

    Energy Conversion Materials Section, Materials Group, Bhabha Atomic Research Centre, Vashi Complex, Naui Mumbai, Mumbai 400705,India;

  • 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

    SOFC; tubular SOFC; symmetrical cell; cold isostatic pressing; co-firing;

    机译:SOFC;管状SOFC;对称电池;冷等静压;共烧;

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