首页> 外文期刊>International journal of hydrogen energy >Integrating biomass gasification with solid oxide fuel cells: Effect of real product gas tars, fluctuations and particulates on Ni-GDC anode
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Integrating biomass gasification with solid oxide fuel cells: Effect of real product gas tars, fluctuations and particulates on Ni-GDC anode

机译:将生物质气化与固体氧化物燃料电池整合:实际产品气焦油,焦油波动和微粒对Ni-GDC阳极的影响

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The aim of this work was to experimentally assess the feasibility of feeding real biomass product gas to solid oxide fuel cells (SOFC) for efficient and clean power production. The impact of tars on Ni-GDC anode was the main focus of the experiments. Planar SOFC membranes were operated at two gasification sites: (a) autothermal fixed-bed downdraft gasifier and (b) allothermal bubbling fluidized bed gasifier. In all cases the gas was hot-cleaned from particulates, HCl and H_2S. SOFC membranes were tested up to one day on different product gas tar loads (0-3000mgN m~(-3)) with stable performance. SEM/EDS examination of the SOFCs revealed intact anodes; no carbon deposition or other impurities were detected. During testing on high fuel utilization conditions and high steam content, the SOFC lost performance due to anode nickel oxidation. In another extreme case where producer gas particulates reached the SOFC, SEM examination identified secondary tubular shaped carbon structures formed inside the functional layer of the anode.
机译:这项工作的目的是通过实验评估将真实的生物质产品气供入固体氧化物燃料电池(SOFC)进行高效清洁发电的可行性。焦油对Ni-GDC阳极的影响是实验的主要重点。平面SOFC膜在两个气化位置运行:(a)自热固定床下降气流气化炉和(b)异热鼓泡流化床气化炉。在所有情况下,气体均从颗粒,HCl和H_2S进行热清洗。 SOFC膜在不同的产品焦油负荷(0-3000mgN m〜(-3))上测试了一天,性能稳定。 SEM / EDS对SOFC的检查显示出完整的阳极。没有检测到碳沉积或其他杂质。在高燃料利用率和高蒸汽含量的测试过程中,SOFC由于阳极镍的氧化而损失了性能。在另一个极端情况下,即生产气体颗粒到达SOFC时,SEM检查确定了在阳极功能层内部形成的次级管状碳结构。

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