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Fischer-Tropsch conversion of biomass-derived synthesis gas to liquid fuels

机译:Fischer-Tropsch将生物质衍生的合成气转化为液体燃料

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摘要

Recent and ongoing research on Fischer-Tropsch catalysts for biomass conversion typically focus on the effects of impurities common in bio-derived synthesis gas, and also on the effect of different synthesis gas compositions expected from biomass gasifiers. Cobalt and iron catalysts share the sensitivity towards some, but not all of the impurities. The most profound difference is the strong negative effect of alkali, alkaline earth and nitrogen containing compounds on cobalt catalysts while these impurities have a negligible or no effect on iron catalysts. CO2 appears to mainly act as a diluent in cobalt-based processes while iron catalysts respond differently to this component depending on catalyst design. In particular, iron catalysts containing Al2O3 as a structural promoter display a high stability, C5+ selectivity and activity in CO2 rich synthesis gas.
机译:关于用于生物质转化的费-托催化剂的最新和正在进行的研究通常集中于生物衍生的合成气中常见杂质的影响,以及生物质气化炉预期的不同合成气组成的影响。钴和铁催化剂对某些但并非全部杂质具有敏感性。最深刻的区别是碱金属,碱土金属和氮化合物对钴催化剂的强烈负面影响,而这些杂质对铁催化剂的影响则微乎其微。在钴基工艺中,CO2似乎主要充当稀释剂,而铁催化剂根据催化剂设计而对此组分的反应不同。特别地,含有Al 2 O 3作为结构促进剂的铁催化剂在富含CO 2的合成气中显示出高稳定性,C 5+选择性和活性。

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