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碳化对超细Fe-Mn催化剂CO加氢反应行为的影响

Effect of carburization on the catalytic performance of ultrafine Fe-Mn catalyst

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【作者】 张建利张侃房克功李德宝李文怀孙予罕

【Author】 ZHANG Jian-li1,2,3,ZHANG Kan1,FANG Ke-gong1,LI De-bao1,LI Wen-huai1,SUN Yu-han1(1.State Key Laboratory of Coal Conversion,Institute of Coal Chemistry,Chinese Academy of Sciences,Taiyuan 030001,China; 2.Graduate University of Chinese Academy of Sciences,Beijing 100049,China; 3.Key Laboratory of Energy Resources & Chemical Engineering,Ningxia University,Yinchuan 750021,China)

【机构】 中国科学院山西煤炭化学研究所煤转化国家重点实验室中国科学院研究生院宁夏大学能源化工重点实验室

【摘要】 以超细Fe-Mn催化剂为前驱体,对其进行了CH4/H2气氛下的高温碳化及反应行为研究。结果表明,高温碳化后,催化剂比表面积明显降低,主要物相结构为FeO-MnO尖晶石和α-Fe相,并有大量碳化铁微晶生成。在CO加氢反应中,碳化过程明显提高了烯烃选择性,降低了CH4选择性,促进了链增长。结果认为,碳化过程改变了催化剂表面化学性质,增强了表面碱性,抑制了二次加氢反应,提高了烯烃选择性。

【Abstract】 The effect of high temperature carburization on the catalytic performances over an ultrafine Fe-Mn catalyst was investigated.The surface area of the catalyst distinctly decreased after carburization.The carburization process favored the formation of FeO-MnO spinel phase and α-Fe,and small iron carbide crystallite was also formed.The catalyst after carburization exhibited high light olefin selectivity and low methane selectivity during CO hydrogenation,also,the chain propagation ability was promoted.The characterization of the catalyst indicated that the surface properties of the catalyst after carburization were improved.The carburization process enhanced the basicity of the catalyst and suppressed the secondary reactions of hydrogenation,and resulted in high selectivity to light olefins.

  • 【文献出处】 燃料化学学报 ,Journal of Fuel Chemistry and Technology , 编辑部邮箱 ,2011年03期
  • 【分类号】TQ511.1
  • 【被引频次】5
  • 【下载频次】161
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