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Highly stable microtubular cells for portable solid oxide fuel cell applications

机译:用于便携式固体氧化物燃料电池应用的高度稳定的微管电池

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In this work, extruded support tubes based on Nickel Oxide-YSZ (yttria stabilized-zirconia) were manufactured by Powder Extrusion Moulding (PEM). An YSZ layer is then deposited by dip coating as the electrolyte and subsequently, standard La0.8Sr0.2MnO3-delta (LSM)/YSZ composites were deposited by dip coating as oxygen electrodes. Microstructure of the anode support was optimized in order to achieve the maximum fuel utilization and as a consequence, a high performance of the cells. Experiments as a function of the fuel composition showed power densities above 500 mWcm(-2) at 800 degrees C at 0.7V, with high fuel utilization (similar to 75%). Long-term durability studies were also performed for a period above 1000 hours. The experiment was conducted at 800 degrees C using pure humidified hydrogen at a fixed voltage of 0.8V. It was observed that the current density of the cell is significantly evolving during the initial period of about 100 hours, as a consequence of reconditioning of nickel particles at the anode support. Once the system is stabilized, no degradation was observed up to 1000 hours under operating conditions, obtaining current densities in the range of 400 mAcm(-2) at 0.8V and 800 degrees C. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,通过粉末挤压成型(PEM)制造了基于氧化镍-YSZ(氧化钇稳定的氧化锆)的挤压支撑管。然后通过浸涂沉积YSZ层作为电解质,然后通过浸涂沉积标准La0.8Sr0.2MnO3-δ(LSM)/ YSZ复合材料作为氧电极。优化阳极载体的微观结构,以实现最大的燃料利用率,从而实现电池的高性能。根据燃料成分进行的实验表明,在800摄氏度,0.7V的功率密度下,功率密度高于500 mWcm(-2),具有很高的燃料利用率(接近75%)。还进行了超过1000小时的长期耐久性研究。实验是在800摄氏度下使用纯湿氢以0.8V的固定电压进行的。观察到,由于在阳极载体上镍颗粒的再调节,电池的电流密度在约100小时的初始阶段显着发展。系统稳定后,在运行条件下长达1000小时没有观察到降解,在0.8V和800摄氏度下获得的电流密度在400 mAcm(-2)范围内。(C)2016 Elsevier Ltd.保留所有权利。

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