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Enhancing Sulfur Tolerance of Ni-Based Cermet Anodes of Solid Oxide Fuel Cells by Ytterbium-Doped Barium Cerate Infiltration

机译:掺Bar钡硅酸盐浸润提高固体氧化物燃料电池镍基金属陶瓷阳极的耐硫性

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摘要

Conventional anode materials for solid oxide fuel cells (SOFCs) are Ni-based cermets, which are highly susceptible to deactivation by contaminants in hydrocarbon fuels. Hydrogen sulfide is one of the commonly existed contaminants in readily available natural gas and gasification product gases of pyrolysis of biomasses. Development of sulfur tolerant anode materials is thus one of the critical challenges for commercial viability and practical application of SOFC technologies. Here we report a viable approach to enhance substantially the sulfur poisoning resistance of a Ni-gadolinia-doped ceria (Ni-GDC) anode through impregnation of proton conducting perovskite BaCe0.9Yb0.1O3-delta (BCYb). The impregnation of BCYb nanoparticles improves the electrochemical performance of the Ni-GDC anode in both H-2 and H2S containing fuels. Moreover, more importantly, the enhanced stability is observed in 500 ppm of H2S/H-2. The SEM and XPS analysis indicate that the infiltrated BCYb fine particles inhibit the adsorption of sulfur and facilitate sulfur removal from active sites, thus preventing the detrimental interaction between sulfur and Ni-GDC and the formation of cerium sulfide. The preliminary results of the cell with the BCYb+Ni-GDC anode in methane fuel containing 5000 ppm of H2S show the promising potential of the BCYb infiltration approach in the development of highly active and stable Ni-GDC-based anodes fed with hydrocarbon fuels containing a high concentration of sulfur compounds.
机译:用于固体氧化物燃料电池(SOFC)的常规阳极材料是镍基金属陶瓷,其极易受到烃类燃料中污染物的破坏而失活。硫化氢是生物质热解过程中容易获得的天然气和气化产物气中普遍存在的污染物之一。因此,耐硫阳极材料的开发是商业可行性和SOFC技术实际应用的关键挑战之一。在这里,我们报告了一种可行的方法,可通过浸渍质子传导钙钛矿BaCe0.9Yb0.1O3-δ(BCYb)来实质上增强掺-的二氧化铈(Ni-GDC)阳极的抗硫中毒性。 BCYb纳米颗粒的浸渍改善了含H-2和H2S的燃料中Ni-GDC阳极的电化学性能。此外,更重要的是,在500 ppm的H2S / H-2中观察到增强的稳定性。 SEM和XPS分析表明,渗透的BCYb微粒抑制了硫的吸附并促进了硫从活性部位的去除,从而防止了硫与Ni-GDC之间的有害相互作用以及硫化铈的形成。 BCYb + Ni-GDC阳极在含5000ppm H2S的甲烷燃料中的电池的初步结果表明,BCYb渗透方法在开发高活性和稳定的,使用含碳氢燃料的Ni-GDC基阳极中具有广阔的发展前景。高浓度的硫化合物。

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