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通过引入二次储水相提高用于氧离子传导固体氧化物燃料电池的镍基阳极的硫耐受性。

Enhanced sulfur tolerance of nickel-based anodes for oxygen-ion conducting solid oxide fuel cells by incorporating a secondary water storing phase.

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemistry and Chemical Engineering, Nanjing Tech University , No. 5 Xin Mofan Road, Nanjing 210009, China.

出版信息

Environ Sci Technol. 2014 Oct 21;48(20):12427-34. doi: 10.1021/es503603w. Epub 2014 Oct 1.

Abstract

In this work, a Ni+BaZr(0.4)Ce(0.4)Y(0.2)O(3-δ) (Ni+BZCY) anode with high water storage capability is used to increase the sulfur tolerance of nickel electrocatalysts for solid oxide fuel cells (SOFCs) with an oxygen-ion conducting Sm(0.2)Ce(0.8)O(1.9) (SDC) electrolyte. Attractive power outputs are still obtained for the cell with a Ni+BZCY anode that operates on hydrogen fuels containing 100-1000 ppm of H2S, while for a similar cell with a Ni+SDC anode, it displays a much reduced performance by introducing only 100 ppm of H2S into hydrogen. Operating on a hydrogen fuel containing 100 ppm of H2S at 600 °C and a fixed current density of 200 mA cm(-2), a stable power output of 148 mW cm(-2) is well maintained for a cell with a Ni+BZCY anode within a test period of 700 min, while it was decreased from an initial value of 137 mW cm(-2) to only 81 mW cm(-2) for a similar cell with a Ni+SDC anode after a test period of only 150 min. After the stability test, a loss of the Ni percolating network and reaction between nickel and sulfur appeared over the Ni+SDC anode, but it is not observed for the Ni+BZCY anode. This result highly promises the use of water-storing BZCY as an anode component to improve sulfur tolerance for SOFCs with an oxygen-ion conducting SDC electrolyte.

摘要

在这项工作中,使用具有高储水能力的 Ni+BaZr(0.4)Ce(0.4)Y(0.2)O(3-δ)(Ni+BZCY)阳极来提高镍电催化剂对于固体氧化物燃料电池(SOFC)的硫耐受性,其中电解质为氧离子导体 Sm(0.2)Ce(0.8)O(1.9)(SDC)。对于在含有 100-1000 ppm H2S 的氢气燃料下运行的具有 Ni+BZCY 阳极的电池,仍然获得了有吸引力的功率输出,而对于具有 Ni+SDC 阳极的类似电池,仅引入 100 ppm H2S 就会导致性能大大降低。在 600°C 和固定电流密度为 200 mA cm(-2)的含 100 ppm H2S 的氢气燃料下运行时,具有 Ni+BZCY 阳极的电池在 700 min 的测试期间内可稳定维持 148 mW cm(-2)的功率输出,而具有 Ni+SDC 阳极的类似电池在仅 150 min 的测试期间内,其功率输出从初始值 137 mW cm(-2)下降至仅 81 mW cm(-2)。在稳定性测试之后,在 Ni+SDC 阳极上出现了镍渗透网络的损失和镍与硫之间的反应,但在 Ni+BZCY 阳极上未观察到这种情况。这一结果高度有望将储水 BZCY 用作阳极组件,以提高具有氧离子导体 SDC 电解质的 SOFC 的硫耐受性。

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