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Conceptual design of a novel ammonia-fuelled portable solid oxide fuel cell system

机译:新型氨燃料便携式固体氧化物燃料电池系统的概念设计

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摘要

A novel portable electric power generation system, fuelled by ammonia, is introduced and its performance is evaluated. In this system, a solid oxide fuel cell (SOFC) stack that consists of anode-supported planar cells with Ni-YSZ anode, YSZ electrolyte and YSZ-LSM cathode is used to generate electric power. The small size, simplicity, and high electrical efficiency are the main advantages of this environmentally friendly system. The results predicted through computer simulation of this system confirm that the first-law efficiency of 41.1 % with the system operating voltage of 25.6 V is attainable for a 100 W portable system, operated at the cell voltage of 0.73 V and fuel utilization ratio of 80%. In these operating conditions, an ammonia cylinder with a capacity of 0.81 is sufficient to sustain full-load operation of the portable system for 9 h and 34 min. The effect of the cell operating voltage at different fuel utilization ratios on the number of cells required in the SOFC stack, the first- and second-law efficiencies, the system operating voltage, the excess air, the heat transfer from the SOFC stack, and the duration of operation of the portable system with a cylinder of ammonia fuel, are also studied through a detailed sensitivity analysis. Overall, the ammonia-fuelled SOFC system introduced in this paper exhibits an appropriate performance for portable power generation applications.
机译:介绍了一种以氨为燃料的新型便携式发电系统,并对其性能进行了评估。在此系统中,使用固体氧化物燃料电池(SOFC)堆栈来发电,该堆栈由具有Ni-YSZ阳极,YSZ电解质和YSZ-LSM阴极的阳极支撑平面电池组成。小型,简单和高电效率是此环保系统的主要优点。通过该系统的计算机仿真预测的结果证实,对于100 W便携式系统,其工作电压为0.73 V,燃料利用率为80,在25.6 V的系统工作电压下,初律效率为41.1%。 %。在这些运行条件下,容量为0.81的氨气瓶足以将便携式系统的满负荷运行维持9小时34分钟。不同燃料利用率下的电池工作电压对SOFC堆中所需的电池数量,第一律和第二律效率,系统工作电压,过量空气,SOFC堆的热传递以及还通过详细的灵敏度分析研究了带有一瓶氨燃料的便携式系统的运行时间。总体而言,本文介绍的以氨为燃料的SOFC系统具有适合便携式发电应用的性能。

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