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Application of Exsolved Structures as a Route to More Robust Anodes for Improved Biogas Utilisation in SOFCs

机译:分解结构的应用作为增加SOFC沼气利用的更坚固阳极的途径

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Biogas is a potentially readily available fuel which could be especially useful when combined with the efficient energy conversion in SOFCs. This could be especially important in rural or remote locations where grid electricity is not available. Biogas contains mixture of methane CO_2 with inherently high levels of H_2S, therefore to improve performance in biogas more robust anodes are required that are more tolerant to both carbon and sulphur. In this paper the use of catalyst nanoparticles exsolved onto porous as a possible method of producing more resistant structures is discussed. All of the options showed good performance in reformed biogas mixtures with the exsolved structures showing improved resistance to carbon deposition. The performance of all dropped when exposed to sulphur, however many were also observed to recover once this was removed and so give encouragement for the development of robust anodes that can withstand sulphur breakthrough without catastrophic stack failure.
机译:沼气是一种潜在的容易获得的燃料,当与SOFC中的有效能量转换结合使用时,将特别有用。这在没有电网可用的农村或偏远地区尤其重要。沼气包含甲烷CO_2和固有高含量的H_2S的混合物,因此,要提高沼气的性能,需要更坚固的阳极,这些阳极要更耐碳和硫。在本文中,讨论了使用溶解在多孔材料上的催化剂纳米颗粒作为生产更具抵抗力的结构的可能方法。所有选项均在重整沼气混合物中表现出良好的性能,其中溶解的结构显示出对碳沉积的增强抵抗力。当暴露于硫时,所有材料的性能都会下降,但是,一旦除去硫,所有材料的性能都会恢复,因此鼓励开发出可以承受硫突破而不会发生灾难性堆垛失效的坚固阳极。

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