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anode-supported
    A review of the preparation methods of anode-supported SOFC anodes
    阳极支撑型SOFC阳极的制备方法
    Performance of Anode-Supported Single-Chamber Solid Oxide Fuel Cells
    阳极支撑型单气室固体氧化物燃料电池的性能
    From theviewpoint of cost reduction and long-term stability, many researchers have paidtheir attentions to fabrication of anode-supported SOFCs operating at reducedtemperature (600~800℃).
    制备阳极支撑型固体氧化物燃料电池,降低电池工作温度(600~800℃),从而降低成本延长电池寿命已成为目前研究的热点。
    State of the art anode-supported solid oxide fuel cell (SOFC) with thin YSZ electrolyte leads the development of intermediate temperature SOFCs.
    阳极支撑型固体氧化物燃料电池(SOFCs)是中温(800℃以下)SOFCs的主要类型之一,而阴极极化电阻是限制电池中温性能的关键因素。 因此,改善阴极/电解质界面结构,开发高性能复合阴极是目前中温SOFCs的研究热点。
    An anode-supported single-chamber solid oxide fuel cell(SC-SOFC) with dense yttria-stabilized zirconia film as the electrolyte was fabricated by the slurry spin coating technique.
    使用浆料旋涂法制备了致密氧化钇稳定的氧化锆电解质薄膜,进而组装成阳极支撑型单气室固体氧化物燃料电池.
    Therefore,the anode-supported SC-SOFC with optimized electrode materials is very promising.
    通过优化电极材料,阳极支撑型单气室固体氧化物燃料电池将具有更优异的输出性能和更广阔的应用前景.
    Planar anode-supported solid oxide fuel cell (SOFC) is an important aspect in SOFC research field. Preparation of anode substrate membranes, as the mechanical supports of SOFC PEN sandwich structure, is the most pivotal technique.
    平板式阳极支撑型固体氧化物燃料电池 (SOFC)是现在SOFC研究领域的一个重要方向,作为 SOFC三明治结构力学支架的阳极基底膜的制备是实现该设计思路的最为关键的技术。
    Solid oxide fuel cell (SOFC) is expected to be a candidate of the next generation power source for its high efficiency when combined with a bottoming power cycle utilizing its high-temperature waste heat. As a major component of anode-supported planar SOFC's polarization loss, anode concentration over-potential ηcon,a is mainly determined by structure parameters of anode and can be adjusted in preparing and operating process.
    阳极浓差极化过电势ηcon,a是阳极支撑型SOFC能量损失的主要因素之一,研究浓差极化过电势的影响因素,对提高SOFC的性能具有重要意义。
 

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