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Shaping of a Dual Membrane SOFC and First Electrochemical Tests in a Dedicated 3-Chamber Set-Up

机译:在专用的3室设置中成形双膜SOFC和第一电化学测试

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The present paper offers a discussion about an innovative dual membrane fuel cell concept IDEAL-Cell operating between 600°C-700°C. It is based on the junction of SOFCs anodic part with PCFCs cathodic part through a mixed H~+ and O~(2-) conducting porous membrane. This concept was successfully proved and developed during the 4 years of a FET-Energy/FP7 project, through the collaboration between 10 European research and technological institutes. After two stages of development, respectively the proof of concept and the realization of an optimized lab-scale cell, the concept has evolved to a simplified design, called "monolithic", in which the mixed H~+ and O~(2-) conduction of BCY15 is exploited for the fabrication of all the cell components. With the reduction of chemical gradients and thermal expansion mismatches, the cell durability is potentially enhanced. Furthermore, the shaping, the microstructure and the catalytic properties of the central membrane (CM) have been improved by structuring the central membrane with a Ni foam or by including Pt nano-particles. This work presents a complete study of the permeability of the central component of this concept in view of a reversible SOFC/SOEC operation, and the preliminary results obtained on this new Ni-foam based architecture by using a 3-chambers set-up (Real Life Tester) to determine the electrochemical performances of the cell in real operating conditions.
机译:本文提供了一个关于创新的双膜燃料电池概念理想电池在600°C-700°C之间工作的讨论。它基于SOFCS阳极部件与PCFC阴极部件通过混合的H〜+和O〜(2-)进行多孔膜的连接。通过10欧洲研究和技术机构之间的合作,在FET-Energy / FP7项目的4年中成功地证明和开发了这一概念。经过两个发展阶段,分别证明概念和实现了优化的实验室规模小区,该概念已经发展到简化的设计,称为“单片”,其中混合的H〜+和O〜(2-) BCY15的传导被利用用于制造所有细胞组分。随着化学梯度和热膨胀不匹配的减少,电池耐用性可能会增强。此外,通过用Ni泡沫或包括Pt纳米颗粒构造中央膜或包括Pt纳米颗粒,改善了中央膜(cm)的成形,微观结构和催化性质。这项工作鉴于可逆的SOFC / SOEC操作,本概念的中心部件的渗透性完全研究了这种概念的渗透性,以及通过使用3室设置的新的Ni-泡沫结构上获得的初步结果(真实生命测试仪)确定在实际操作条件下电池的电化学性能。

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