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丝光沸石分子筛催化甲苯与叔丁醇气相合成对叔丁基甲苯
引用本文:王超凡,樊丽辉,申延明,刘东斌,徐世博.丝光沸石分子筛催化甲苯与叔丁醇气相合成对叔丁基甲苯[J].化学反应工程与工艺,2012,28(1):50-56.
作者姓名:王超凡  樊丽辉  申延明  刘东斌  徐世博
作者单位:沈阳化工大学化学工程学院,辽宁沈阳,110142
摘    要:丝光沸石作为催化剂,采用气相催化甲苯和叔丁醇合成对叔丁基甲苯,考察了反应条件和碱改性丝光沸石对催化活性的影响。采用XRD、NH3-TPD、FT-IR、比表面积测定等方法对催化剂进行了表征。实验结果表明:适宜的反应条件为反应温度180℃,进料体积空速4 mL/(g h),原料甲苯与叔丁醇物质的量比2:1,在此条件下,甲苯转化率达到29%,对叔丁基甲苯选择性达到最大值74%。碱改性后消除了催化剂的强酸中心,而增加了弱酸中心,但孔径变大,比表面积变小。催化活性有所提高,甲苯转化率和对叔丁基甲苯选择性分别提高了4%和7%。

关 键 词:丝光沸石  叔丁醇  甲苯  碱处理  气固相催化反应

Gas-Phase Synthesis of Para-tert-Butyltoluene from Toluene and tert-Butyl Alcohol over H-Mordenite Catalyst
Wang Chaofan , Fan Lihui , Shen Yanming , Liu Dongbin , Xu Shibo.Gas-Phase Synthesis of Para-tert-Butyltoluene from Toluene and tert-Butyl Alcohol over H-Mordenite Catalyst[J].Chemical Reaction Engineering and Technology,2012,28(1):50-56.
Authors:Wang Chaofan  Fan Lihui  Shen Yanming  Liu Dongbin  Xu Shibo
Affiliation:(College of Chemical Engineering,Shenyang University of Chemical Technology,Shenyang 110142,China)
Abstract:Para-tert-Butyltoluene(PTBT) was synthesized from toluene and tert-butyl alcohol over H-mordenite catalyst by gas-phase catalysis.The effects of reaction conditions and modification of catalyst by alkali on the catalytic performance were investigated.The catalysts were characterized by XRD,NH3-TPD,FT-IR and N2 adsorption techniques.It was shown that the suitable reaction condition was as followings: reaction temperature was 180 oC,liquid volumetric space velocity was 4 mL/(g?h) and ratio of toluene to tert-butyl alcohol was 2.Under the above reaction condition,the toluene conversion approached 29%,and the selectivity of PTBT reached the maximum of 74%.After modification on the catalyst by alkali,the strong acidic sites disappeared and weak acidic sites increased.The pore size increased and the specific surface area decreased.As a result,the catalytic performance was improved 4% of toluene conversion and 7% of PTBT selectivity,respectively.
Keywords:H-mordenite  tert-butyl alcohol  toluene  alkali modification  gas-solid phase catalysis reaction
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