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New fabrication techniques for micro-tubular hollow finer solid oxide fuel cells

机译:微管状中空细晶固体氧化物燃料电池的新制造技术

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摘要

A novel combination of phase inversion and electrophoretic deposition was used in the fabrication of anode supported micro tubular (hollow fiber) solid oxide fuel cells (MT-HF-SOFCs). The phase inversion process was used to produce ca. 240 μm thick, highly porous 60 wt. % NiO-40 wt. % yttria-stabilised zirconia (YSZ) hollow fiber anode precursors. The electrophoretic deposition process was then used to apply ca. 40 μm thick, particulate YSZ electrolyte layers onto the unsintered NiO-YSZ HFs from an ethanol suspension at an applied electric field of ca. 0.22 kV cm-1. The YSZ-coated NiO-YSZ HFs were sintered at 1500 oC for twelve hours. Dispersions of YSZ-LSM particles were then painted on top of the electrolyte layer, as ‘graded’ YSZ-LSM porous cathode precursors that were sintered at 1200 oC for three hours. The fabrication process was completed by winding silver wire current collectors spirally round the cathodes and through the lumen of the fibers to enable current collection from the anodes. Single MT-HF-SOFCs delivered peak power densities of 0.20, 0.18 and 0.14 W cm-2 at 800, 750 and 700 oC, respectively, with flow rates of 15 cm3 min-1 H2 (97% H2-3% H2O) and 30 cm3 min-1 of air.
机译:在阳极支撑的微管(空心纤维)固体氧化物燃料电池(MT-HF-SOFC)的制造中使用了相转化和电泳沉积的新型组合。相转化过程用于产生约。 240μm厚,高度多孔60 wt。 NiO-40重量% %的氧化钇稳定的氧化锆(YSZ)中空纤维阳极前体。然后使用电泳沉积工艺施加约。在约40毫安的电场下,从乙醇悬浮液中将40微米厚的颗粒状YSZ电解质层沉积到未烧结的NiO-YSZ HF上。 0.22 kV cm-1。将涂有YSZ的NiO-YSZ HF在1500 oC烧结十二小时。然后将YSZ-LSM颗粒的分散液涂在电解质层的顶部,作为“渐变的” YSZ-LSM多孔阴极前体,在1200 oC的温度下烧结三小时。通过将银线集电器螺旋缠绕在阴极周围并穿过纤维内腔以完成从阳极的电流收集,从而完成了制造过程。单个MT-HF-SOFC在800、750和700 oC时分别提供0.20、0.18和0.14 W cm-2的峰值功率密度,流速分别为15 cm3 min-1 H2(97%H2-3%H2O)和30 cm3 min-1的空气。

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