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首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Sulfur Poisoning of Ni Anode as a Function of Operating Conditions in Solid Oxide Fuel Cells
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Sulfur Poisoning of Ni Anode as a Function of Operating Conditions in Solid Oxide Fuel Cells

机译:Ni阳极的硫中毒作为固体氧化物燃料电池中的操作条件的函数

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In the present study, we investigated the sulfur poisoning of the Ni anode in solid oxide fuel cells (SOFCs) as a function of operating conditions. Anode supported cells were fabricated, and sulfur poising tests were conducted as a function of current density, H2S concentration and humidity in the anode gas. The voltage drop was significant under the higher current density (similar to 714 mA/cm(2)) condition, while it was much reduced under the lower current density (similar to 389 mA/cm(2)) condition, at 100 ppm of H2S. A secondary voltage drop, which occurred only at the high current density, was attributed to Ni oxidation in the anode. Thus, operation at high current density with high H2S concentration may lead to permanent deterioration in the anode. The effect of water content (10%) on the sulfur poisoning was also investigated through a constant current test (similar to 500 mA/cm(2)) at 10 ppm of H2S. The cell operating with 10% wet anode gas showed a much smaller initial voltage drop, in comparison with a dry anode gas. The present study indicates that operating conditions, such as gas humidity and current density, should be carefully taken into account, especially when fuel cells are operated with H2S containing fuel.
机译:在本研究中,作为操作条件的函数,我们研究了在固体氧化物燃料电池(SOFC)中的Ni阳极的硫中毒。制造阳极支撑的细胞,并将硫磺的光泽试验作为电流密度,H 2 S浓度和湿度在阳极气体中进行。电压下降在较高的电流密度下(类似于714 mA / cm(2))条件,而在较低电流密度下大大降低(类似于389 mA / cm(2))条件,在100ppm时H2S。仅在高电流密度下发生的二次电压降归因于阳极中的Ni氧化。因此,具有高H 2 S浓度的高电流密度的操作可能导致阳极中的永久性劣化。还通过恒定的电流试验(类似于500mA / cm(2)),在10ppm的H 2 S中研究水含量(10%)对硫中毒的影响。与10%湿阳极气体一起操作的电池显示出较小的初始电压降,与干燥的阳极气体相比。本研究表明,应仔细考虑诸如气体湿度和电流密度的操作条件,特别是当燃料电池与含有燃料的H2S进行操作时。

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