首页> 外文会议>9th International conference on fuel cell science, engineering, and technology 2011 >SYNTHESIS OF MIXED OXIDE-ION AND CARBONATE-ION CONDUCTORS SUPPORTED BY A PREFABRICATED POROUS SOLID OXIDE MATRIX
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SYNTHESIS OF MIXED OXIDE-ION AND CARBONATE-ION CONDUCTORS SUPPORTED BY A PREFABRICATED POROUS SOLID OXIDE MATRIX

机译:预制的多孔固体氧化物基质支持的混合氧化物离子和碳酸盐离子导体的合成

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摘要

A novel two-step approach is used to fabricate a two-phase mixed oxide-ion and carbonate-ion conductor (MOCC) that has been recently developed for intermediate temperature solid oxide fuel cells (IT-SOFCs) and CO_2 separation membranes. In this study, a samarium doped ceria (SDC) is selected as an example to demonstrate the prefabrication of porous matrix by the "sacrificial template" methodology with NiO as the template material. NiO has been reduced into elemental Ni in the composite, and then removed by dissolving into a nitric acid. It was demonstrated by XRD, EDS and weight changes. The microstructure of the SDC matrix characterized with an SEM imaging reveals a uniform distribution of homogeneous micro-pores across the solid-oxide matrix. The strong porous solid-oxide matrix is prefabricated at high temperature, into which a molten carbonate phase is subsequently infiltrated. A Li-Na-carbonate-impregnated MOCC supported by a 41.8% porous SDC matrix shows an effective ionic conductivity of 0.43 S/cm at 650 ℃.
机译:一种新颖的两步法用于制造两相混合的氧化物离子和碳酸根离子导体(MOCC),该导体最近已开发用于中温固体氧化物燃料电池(IT-SOFC)和CO_2分离膜。在这项研究中,选择a掺杂的二氧化铈(SDC)作为示例,以演示通过以NiO为模板材料的“牺牲模板”方法预制多孔基质的方法。 NiO在复合物中被还原成元素Ni,然后通过溶解在硝酸中去除。 XRD,EDS和重量变化证明了这一点。以SEM成像为特征的SDC基质的微观结构揭示了均匀的微孔在固体氧化物基质上的均匀分布。在高温下预制坚固的多孔固体氧化物基体,随后将熔融的碳酸盐相渗入其中。 41.8%多孔SDC基质负载的碳酸锂锂浸渍的MOCC在650℃时具有0.43 S / cm的有效离子电导率。

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