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AB-97分子筛催化剂上苯与乙烯烷基化反应 Ⅲ.失活动力学及失活特征
引用本文:陆铭,朱子彬,陈庆龄,谢在库,杨为民.AB-97分子筛催化剂上苯与乙烯烷基化反应 Ⅲ.失活动力学及失活特征[J].石油化工,2002,31(5):329-333.
作者姓名:陆铭  朱子彬  陈庆龄  谢在库  杨为民
作者单位:1. 华东理工大学,化工工艺研究所,上海,200237
2. 上海石油化工研究院,上海,201208
基金项目:中国石化集团科技研究开发资助项目 (4 970 3 8)
摘    要:用催速失活的方法研究了AB -97分子筛催化剂的失活动力学。实验表明 ,催化剂的失活过程具有逆选择性失活特征。由失活动力学对催化剂稳定性的模拟计算可知 ,乙烯空速对催化剂稳定性的影响分为两个阶段 :在低空速阶段 ,随空速的减小 ,稳定期显著增加 ;在高空速阶段 ,使用寿命几乎不随空速而改变

关 键 词:AB-97分子筛催化剂  催速失活  失活动力学
文章编号:1000-8144(2002)05-0329-05
修稿时间:2001年8月2日

Study on Ethylbenzene Synthesis over AB-97 Zeolite Ⅲ.Deactivation Kinetics
LU Ming ,ZHU Zi-bin ,CHEN Qing-ling ,XIE Zai-ku ,YANG Wei-min.Study on Ethylbenzene Synthesis over AB-97 Zeolite Ⅲ.Deactivation Kinetics[J].Petrochemical Technology,2002,31(5):329-333.
Authors:LU Ming  ZHU Zi-bin  CHEN Qing-ling  XIE Zai-ku  YANG Wei-min
Affiliation:LU Ming 1,ZHU Zi-bin 1,CHEN Qing-ling 2,XIE Zai-ku 2,YANG Wei-min 2
Abstract:Deactivation kinetics of AB-97 alkylation zeolite was studied in a plug flow reactor by means of accelerated deactivation.A deactivation kinetics model was obtained by parameter estimation and was revised by comparison with macro-kinetics.Statistical calculations proved that the kinetic model was proper.The partial pressure index of ethylene was rather large indicating that ethylene was the key factor affecting the deactivation process.The catalyst deactivation trend showed that the deactivation was of the type of counter-selectivity having the characteristic of being able to maintain a considerably long period of stable activity.This deactivation kinetics was used to simulate the catalyst activation stability of 6-layer alkylation reactor.The simulation result showed that the effect of ethylene space velocity on catalyst stability could be divided into two stages.At the stage of low space velocity,the stability of the catalyst increased sharply with decrease in space velocity;and at the stage of high space velocity,catalyst life almost remained constant with respect to changes in space velocity.
Keywords:AB-97 zeolite  accelerated deactivation  deactivation kinetics
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