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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Effect of hydrogen sulfide on the direct internal reforming of methane in solid oxide fuel cells
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Effect of hydrogen sulfide on the direct internal reforming of methane in solid oxide fuel cells

机译:硫化氢对固体氧化物燃料电池中甲烷直接内部重整的影响

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摘要

Electrochemical full cell evaluation of a Versa Power Systems TSC-2 solid oxide fuel cell was conducted in 1 ppmv hydrogen sulfide (H2S) at 750 °C with 25%, 35% and 50% levels of direct internal reforming (DIR) of methane. It is shown that the addition of H2S significantly degrades both the cell voltage as well as the DIR activity of the cell, as evidenced by gas chromatographic analysis of the cell exhaust gas. With the removal of H2S, the cell voltage recovers, but not to pre-H2S exposure levels. The onset of degradation of electrochemical activity commences before the onset of DIR activity degradation, indicating that H2S penetrates to the Ni-containing anode functional layer before saturation coverage of Ni with sulfur in the support layer. Secondary ion mass spectrometric post-analysis indicated that, while adsorbed sulfur remains on the surface of Ni after recovery for ~200 h in H2S-free gas, there remains sufficient active Ni surface area in the anode substrate to continue to catalyze the DIR reactions.
机译:Versa Power Systems TSC-2固体氧化物燃料电池的电化学全电池评估是在1 ppmv硫化氢(H2S)中,在750°C,25%,35%和50%的甲烷直接内部重整(DIR)水平下进行的。结果表明,硫化氢的添加显着降低了电池电压以及电池的DIR活性,这通过电池废气的气相色谱分析得以证明。随着H2S的去除,电池电压恢复,但未恢复到H2S之前的暴露水平。电化学活性的降低开始于DIR活性的降低开始,这表明H2S在支撑层中的硫被镍饱和覆盖之前先渗透到含Ni的阳极功能层。二次离子质谱后分析表明,尽管在不含H2S的气体中回收〜200 h后,吸附的硫保留在Ni表面上,但阳极基质中仍具有足够的活性Ni表面积以继续催化DIR反应。

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