首页> 外文期刊>International journal of hydrogen energy >Characterization of a circular 80 mm anode supported solid oxide fuel cell (AS-SOFC) with anode support produced using high-pressure injection molding (HPIM)
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Characterization of a circular 80 mm anode supported solid oxide fuel cell (AS-SOFC) with anode support produced using high-pressure injection molding (HPIM)

机译:使用高压注射成型(HPIM)生产的带有阳极支撑的80 mm圆形阳极支撑固体氧化物燃料电池(AS-SOFC)的特性

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The current study was oriented at analyzing the performance of an anode-supported solid oxide fuel cell produced using high-pressure injection molding. The cell with a total thickness of 550 gm was produced in the Ceramic Department (CEREL) of the Institute of Power Engineering in Poland and experimentally analyzed in the Energy Department (DENERG) of Politecnico di Torino in Italy. The high-pressure injection molding technique was applied to produce a 500 gm thick anode support NiO/8YSZ 66/34 wt% with porosity of 25 vol%. The screen printing method was used to print a 3 gm thick NiO anode contact layer, 7 mu m thick NiO/8YSZ 50/50 wt% anode functional layer, 4 mu m thick 8YSZ dense electrolyte, 1.5 mu m thick Gd0,1Ce0,9O2 barrier layer and a 30 mu m thick La(0,6)Sr(0,4)Ee(0,8)CO(0,2)O(3-delta) cathode with porosity 25 vol%.The experimental characterization was done at two temperature levels: 750 and 800 degrees C under fixed anodic and cathodic flow and compositions. The preliminary studies on the application of high-pressure injection molding are discussed together with the advantages of the technology. The performance of two generations of anode-supported cells is compared with data of reference cells with supports obtained using tape casting. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:当前的研究旨在分析使用高压注射成型生产的阳极支撑的固体氧化物燃料电池的性能。总厚度为550 gm的电池是由波兰动力工程研究所的陶瓷系(CEREL)生产的,并由意大利的Politecnico di Torino的能源部(DENERG)进行了实验分析。应用高压注射成型技术生产出500 gm厚的阳极载体NiO / 8YSZ 66/34 wt%,孔隙率为25 vol%。丝网印刷方法用于印刷3 gm厚的NiO阳极接触层,7μm的NiO / 8YSZ 50/50 wt%阳极功能层,4μm的8YSZ致密电解质,1.5μm的Gd0,1Ce0,9O2阻挡层和30μm厚的La(0,6)Sr(0,4)Ee(0,8)CO(0,2)O(3-δ)阴极,孔隙率为25 vol%。完成了实验表征在两个固定的阳极和阴极流量和成分下,温度分别为:750和800摄氏度。讨论了有关高压注射成型应用的初步研究以及该技术的优点。将两代阳极支撑电池的性能与使用带式浇铸获得支撑的参考电池的数据进行比较。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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