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ZSM-5沸石结晶度对乙苯叔丁基化对位选择性的影响(英文) 被引量:2

Effects of crystallinity of ZSM-5 zeolite on para-selective tert-butylation of ethylbenzene
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摘要 Highly crystalline ZSM-5 zeolites are important for para-selective alkylation of alkyl aromatics, because they carry few external acid sites for isomerization of p-dialkyl products. Such zeolites (Si/Al = 25, 50, and 75) were synthesized in a fluoride medium between pH 4 and 6. Their crystallinities, crystal sizes, and surface areas were higher than those of a commercial ZSM-5 zeolite. Their para selectivities in alkylation were tested for vapor-phase tert-butylation of ethylbenzene between 200 and 400 °C. As expected, all the catalysts showed more than 90% para selectivity. At 300 °C, ethylbenzene conversion decreased in the order ZSM-5(25, commercial) > ZSM-5(25) > ZSM-5(50) > ZSM-5(75). The catalysts had weak, medium, and strong acid sites, but all the acid sites of ZSM-5(75) were weaker than those of ZSM-5(25) and ZSM-5(50). The high activity of commercial ZSM-5 was caused by its strong acid sites being stronger than those of the synthesized zeolites. Although the activity of the commercial catalyst was higher than those of the present catalysts, the selectivity for 4-t-butylethylbenzene (4-t-BEB) was low. The optimum feed ratio (ethylbenzene:t-butyl alcohol) was 2:1 and the feed rate was 1.65 h?1 for high ethylbenzene conversion and 4-t-BEB selectivity. Time-on-stream studies showed slow catalyst deactivation. Highly crystalline ZSM-5 zeolites are therefore better than a commercial zeolite for para-selective alkylation of alkyl aromatics. They do not require much post-modification for high para selectivity. A fluoride medium is therefore better than an alkaline medium for obtaining highly crystalline para-selective ZSM-5 zeolites. Highly crystalline ZSM-5 zeolites are important for para-selective alkylation of alkyl aromatics, because they carry few external acid sites for isomerization of p-dialkyl products. Such zeolites (Si/Al = 25, 50, and 75) were synthesized in a fluoride medium between pH 4 and 6. Their crystallinities, crystal sizes, and surface areas were higher than those of a commercial ZSM-5 zeolite. Their para selectivities in alkylation were tested for vapor-phase tert-butylation of ethylbenzene between 200 and 400 °C. As expected, all the catalysts showed more than 90% para selectivity. At 300 °C, ethylbenzene conversion decreased in the order ZSM-5(25, commercial) > ZSM-5(25) > ZSM-5(50) > ZSM-5(75). The catalysts had weak, medium, and strong acid sites, but all the acid sites of ZSM-5(75) were weaker than those of ZSM-5(25) and ZSM-5(50). The high activity of commercial ZSM-5 was caused by its strong acid sites being stronger than those of the synthesized zeolites. Although the activity of the commercial catalyst was higher than those of the present catalysts, the selectivity for 4-t-butylethylbenzene (4-t-BEB) was low. The optimum feed ratio (ethylbenzene:t-butyl alcohol) was 2:1 and the feed rate was 1.65 h?1 for high ethylbenzene conversion and 4-t-BEB selectivity. Time-on-stream studies showed slow catalyst deactivation. Highly crystalline ZSM-5 zeolites are therefore better than a commercial zeolite for para-selective alkylation of alkyl aromatics. They do not require much post-modification for high para selectivity. A fluoride medium is therefore better than an alkaline medium for obtaining highly crystalline para-selective ZSM-5 zeolites.
出处 《催化学报》 SCIE CAS CSCD 北大核心 2013年第2期294-304,共11页
基金 supported by grants from Korea CCSR&D Centre,funded by the Ministry of Education,Science and Technology of the Korean Government
关键词 ZSM-5 FLUORIDE medium P-selectivity ETHYLBENZENE TERT-BUTYLATION ZEOLITE ZSM-5 Fluoride medium P-selectivity Ethylbenzene Tert-butylation Zeolite
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  • 1Ichioka R;Yamakawa S;Okino H;Kato H;Iwayama K;Konta H;Kitamura A.查看详情[P],US Patent 6 040 4902000. 被引量:1
  • 2Zuo X;Niu F;Snavely K;Subramaniam B Busch D H.查看详情[J],{H}Green Chemistry2010260. 被引量:1
  • 3Chavan S A;Srinivas D;Ratnasamy P.查看详情[J],{H}Journal of Catalysis2001409. 被引量:1
  • 4Chu C C.查看详情[P],US Patent 4 496 6621985. 被引量:1
  • 5Burress G T.查看详情[P],US Patent 4 565 8991986. 被引量:1
  • 6Kaeding W W;Yannich P J;Klosek J M;Young L B.查看详情[P],EP Patent 0 217 4921987. 被引量:1
  • 7Drobny J G. Handbook of Thermoplastic Elastomers.1st Ed[M].New York:William Andrew Inc,2007.175. 被引量:1
  • 8Danilina N;Payrer E L;van Bokhoven J A.查看详情[J],{H}Chemistry Communications20101509. 被引量:1
  • 9Wise J J.查看详情[P],US Patent 3 251 8971966. 被引量:1
  • 10Haag W O;Lago R M;Weisz P B.查看详情[J],{H}Faraday Discussions of Chemical Society1981317. 被引量:1

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