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Synthesis of light hydrocarbons over Fe/AC catalysts 被引量:1

Synthesis of light hydrocarbons over Fe/AC catalysts
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摘要 A series of Fe/AC catalysts for catalytic hydrogenation of CO to light hydrocarbons(LHCs) were prepared by decomposing Fe(CO)5 in an autoclave.The catalysts activities were tested in a high-pressure micro reactor.The results show that both CO conversion and LHCs selectivity were significantly affected by the amount of Fe loaded onto the catalysts.The optimum Fe content was determined to be 10% by weight of the catalyst.Over the corresponding catalyst(i.e.,10% Fe/C catalyst),the conversion of CO and the selectivity of LHCs were 94.8% and 59.2%,respectively,at 360 °C.Based on various catalyst characterization techniques,such as XRD,BET and SEM,the catalysts surface areas and pore volume decreased and the smaller particles agglomerated at the edges and corners in the outer region of the support with the increasing Fe content.The agglomerated particles increased greatly when the iron content of the catalyst was higher than 10%.The decrease of catalyst activity can be due to the agglomerated particles. A series of Fe/AC catalysts for catalytic hydrogenation of CO to light hydrocarbons (LHCs) were prepared by decomposing Fe(CO)5 in an autoclave. The catalysts activities were tested in a high-pressure micro reactor. The results show that both CO conversion and LHCs selectivity were significantly affected by the amount of Fe loaded onto the catalysts. The optimum Fe content was determined to be 10% by weight of the catalyst. Over the corresponding catalyst (i.e., 10% Fe/C catalyst), the conversion of CO and the selectivity of LHCs were 94.8% and 59.2%, respectively, at 360 ~C. Based on various catalyst characteriza- tion techniques, such as XRD, BET and SEM, the catalysts surface areas and pore volume decreased and the smaller particles agglomerated at the edges and corners in the outer region of the support with the increasing Fe content. The agglomerated particles increased greatly when the iron content of the cat- alyst was higher than 10%. The decrease of catalyst activity can be due to the agglomerated particles.
出处 《International Journal of Mining Science and Technology》 2012年第2期209-212,共4页 矿业科学技术学报(英文版)
基金 supported by the National Natural Science Foundation of China (No. 50921002) the National Basic Research Program of China (No. 2005CB221204-G) the Program of the Universities in Jiangsu Province for Development of High-Tech Industries (No. JHB05-33)
关键词 CO hydrogenationFe/AC catalystsLight hydrocarbonsParticles agglomerated Fe(CO)5 催化剂 轻烃 AC 合成 X射线衍射 铁含量 催化加氢
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