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Fabrication of the Anode Supported Solid Oxide Fuel Cells by Tape-Casting Process and Infiltration Method

机译:通过胶水工艺和渗透法制备阳极支撑的固体氧化物燃料电池

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The hydrogen is promising energy carrier due to its high energy density, convenient transportation, eternal sources in the earth and cleanness. Solid oxide fuel cells (SOFCs) have not been commercialized yet even though it has been studied for decades. The issues about solid oxide fuel cells are manufacturing process and electrochemical performance. Tape-casting process has an advantage of cost reduction for mass production, it is reported that infiltration improves electrochemical performance of SOFCs by enhancing the three phase boundary (TPB) and porosity. To fabricate the electrode with porous scaffold structure for infiltration, pore formers were added in the tape-casting slurry. In this study, four types of mixtures of several pore formers such as carbon black, graphite, poly methyl methacrylate and glassy carbon were estimated. Micro structure of each type is investigated through scanning electron microscope (SEM). The thickness of the unit cell manufactured by tape-casting is in the range of 200 - 250 urn. The fabricated unit cell with carbon black and glassy carbon shows the open circuit voltage 1.07 V at 800°C. As a result of the study, mixed ratio of pore formers was researched for Solid Oxide Fuel Cells manufacturing process applied by tape-casting and infiltration method.
机译:由于其高能量密度,交通便利,地球中的永恒来源,氢是有前途的能量载体。即使已经过几十年已经研究过,又未商业化了固体氧化物燃料电池(SOFC)。关于固体氧化物燃料电池的问题是制造工艺和电化学性能。铸造工艺具有批量生产成本降低的优势,据报道,通过增强三相边界(TPB)和孔隙率来渗透改善了SOFC的电化学性能。为了用多孔支架结构制造电极以进行渗透,在胶带铸造浆料中加入孔成型剂。在该研究中,估计了四种类型的几种孔隙成型剂如炭黑,石墨,聚甲基丙烯酸甲酯和玻璃碳的混合物。通过扫描电子显微镜(SEM)研究每种类型的微结构。通过带铸造制造的单元电池的厚度在200 - 250瓮的范围内。具有炭黑和玻璃碳的制造的单元电池显示出800℃的开路电压1.07V。作为研究的结果,研究了通过胶水和渗透法施加的固体氧化物燃料电池制造方法的孔成型剂的混合比。

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