首页> 外文期刊>Journal of Chemical Engineering of Japan >Catalytic Steam Reforming of Biomass Tar Model Compound Using Nickel and Cobalt Catalysts Supported on Palm Kernel Shell Char
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Catalytic Steam Reforming of Biomass Tar Model Compound Using Nickel and Cobalt Catalysts Supported on Palm Kernel Shell Char

机译:棕榈仁壳炭负载镍和钴催化剂催化生物质焦油模型化合物的蒸汽重整

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摘要

This study aims to explore the use of biomass-derived char-supported catalyst as a cost effective catalyst for the reforming of biomass-derived tar compounds. Char-supported nickel and cobalt catalysts were prepared using palm kernel shell (PKS) as the char precursor. The performance of the catalysts in catalysing the steam reforming of biomass tar was evaluated at temperatures between 700 and 950 degrees C using toluene as the model compound of tar. Results of this study indicate that the PKS-derived char-supported catalysts have higher catalytic activity than the PKS char for the steam reforming of toluene. The catalytic activity of char and char-supported catalysts decreased beyond 850 degrees C due likely to the loss of alkali and alkaline earth metal (AAEM) species, the sintering of metal particles and the deposition of carbon. Comparison of fresh and spent catalysts provides some information regarding the changes of catalyst properties during the steam reforming of toluene.
机译:这项研究旨在探索使用生物质衍生的焦炭负载型催化剂作为一种经济高效的催化剂,以重整生物质衍生的焦油化合物。使用棕榈仁壳(PKS)作为炭前体制备了炭载镍和钴催化剂。使用甲苯作为焦油的模型化合物,在700到950摄氏度之间的温度下评估了催化剂在催化生物质焦油的蒸汽重整中的性能。这项研究的结果表明,在甲苯的蒸汽重整中,PKS衍生的焦炭负载的催化剂比PKS焦炭具有更高的催化活性。炭和炭载催化剂的催化活性下降到超过850摄氏度,这可能是由于碱金属和碱土金属(AAEM)的损失,金属颗粒的烧结和碳的沉积所致。新鲜催化剂和废催化剂的比较提供了一些有关甲苯蒸汽重整过程中催化剂性能变化的信息。

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