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氢氛下萘异丙基化提高催化剂的活性

Enhancement of catalyst activity in isopropylation of naphthalene in hydrogen atmosphere

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【作者】 赵桂利田正华王沛贾宏敏李犇

【Author】 ZHAO Guili~1,TIAN Zhenghua~1,WANG Pei~2,JIA Hongmin~1,LI Ben~1 (~1School of Chemical Engineering, Anshan University of Science & Technology, Anshan 114044,Liaoning, China; ~2School of Chemical Engineering, Dalian University of Technology, Dalian 116012, Liaoning, China)

【机构】 鞍山科技大学化工学院大连理工大学化工学院鞍山科技大学化工学院 辽宁鞍山114044辽宁鞍山114044辽宁大连116012辽宁鞍山114044

【Abstract】 Isopropylation of naphthalene is a series reaction, which results in a variety of isomers having different alkylation levels.Among them, 2,6-diisopropylnaphthalene (2,6-DIPN) is a raw material for the production of advanced polyester materials such as PEN and liquid crystal polymers.In this study, the preparation of 2,6-DIPN through the isopropylation of industrial refined naphthalene with propylene was conducted in 0.5 L autoclave with steam dealuminated H-mordenite (SDHM) as the shape-selective catalyst instead of the conventional Friedel-Crafts catalysts and resulted in high selectivity and high yield of 2,6-DIPN.In order to slacken the deactivation of HM, the reaction was carried out in H2 atmosphere.The dehydrogenation of fused-ring polycyclics could be minimized and coke formation could be reduced.The preferred reaction conditions found were temperature of 275—300 ℃,hydrogen pressure of 0.4 MPa,reaction time of 7—8 h and 6%—7% of SDHM by mass,in which no side reactions were observed. From NH3-TPD profiles,it could be seen that the relative strength of strong acid sites of SDHM in hydrogen isopropylation was greater than that in nitrogen isopropylation after the same reaction period.Comparing with the results obtained in nitrogen atmosphere, the conversion of refined naphthalene and yield of 2,6-DIPN could be remarkably increased to an average value as high as 90 % and 35 % respectively.Hence the catalytic activity of SDHM could be maintained for a longer time in H2 atmosphere.

【基金】 鞍山市科技基金项目(032042)
  • 【文献出处】 化工学报 ,Journal of Chemical Industry and Engineering(China) , 编辑部邮箱 ,2005年09期
  • 【分类号】O643.36
  • 【被引频次】3
  • 【下载频次】62
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