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首页> 外文期刊>Journal of the European Ceramic Society >Fabrication and characterization of composite electrolyte for intermediate-temperature SOFC
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Fabrication and characterization of composite electrolyte for intermediate-temperature SOFC

机译:中温SOFC复合电解质的制备与表征

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摘要

In this study, a ceria-based composite electrolyte was investigated for intermediate-temperature solid oxide fuel cells (SOFCs) based on SDC-25 wt.% K_2CO_3. Sodium carbonate co-precipitation process by which SDC powder was adopted and sound cubic fluorite structure was formed after SDC powders were sintered at 750 °C for 3h. The crystallite size of the particle was 21 nm in diameter as calculated from data obtained through X-ray diffraction. The conductivity of the composite electrolyte proposed in this study was much higher than that of pure SDC at the comparable temperature of 550-700 °C. The transition of the ionic conductivity occurred at 650 °C. Based on this type of composite electrolyte, single cell with the electrolyte thickness of 0.3 mm were fabricated using dry pressing, with nickel oxide adopted as anode and SSC as cathode. The single cell was then tested at 550-700 °C on home-made equipment in this study, using hydrogen/air. The maximum power density and open circuit voltage (OCV) achieved 600 mW cm~(-2) and 1.05 V at 700 °C, respectively.
机译:在这项研究中,针对基于SDC-25 wt。%K_2CO_3的中温固体氧化物燃料电池(SOFC),研究了基于二氧化铈的复合电解质。在750℃下将SDC粉末烧结3h后,采用SDC粉末的碳酸钠共沉淀过程形成了立方立方萤石结构。根据通过X射线衍射获得的数据计算,该颗粒的微晶尺寸为直径21nm。在可比较的550-700°C温度下,本研究提出的复合电解质的电导率远高于纯SDC的电导率。离子电导率的转变发生在650°C。基于这种类型的复合电解质,采用干法压制法制备了电解质厚度为0.3 mm的单电池,其中氧化镍用作阳极,SSC作为阴极。然后在这项研究中,使用氢气/空气在550-700°C的家用设备上测试了单个电池。在700°C下,最大功率密度和开路电压(OCV)分别达到600 mW cm〜(-2)和1.05 V.

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