Optimization of a new catalyst composition for trimerization of ethylene

  • سال انتشار: 1403
  • محل انتشار: فصلنامه پلی اولفین ها، دوره: 11، شماره: 4
  • کد COI اختصاصی: JR_POJ-11-4_002
  • زبان مقاله: انگلیسی
  • تعداد مشاهده: 35
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نویسندگان

Mohammad Javad Sharifi

Department of Chemical Engineering, Faculty of Engineering, Arak University, Arak ۳۸۱۵۶-۸-۸۳۴۹, Iran

Alireza Fazlali

Department of Chemical Engineering, Faculty of Engineering, Arak University, Arak ۳۸۱۵۶-۸-۸۳۴۹, Iran

Seyed Hamed Mahdaviani

R&D Center, Shazand Petrochemical Company (ARPC), Arak ۵۷۵, Iran

Davood soudbar

R&D Center, Shazand Petrochemical Company (ARPC), Arak ۵۷۵, Iran

چکیده

The performance of the catalyst system [chromium(III)/pyrrole/co-catalyst/halide] on the trimerization of ethylene has been studied using the combined experimental and response surface method (RSM). The chromium(III) tris(۲-ethylhexanoate) was synthesized and characterized by FTIR, ۱HNMR and ۱۳CNMR, to study chemical properties and identify molecular structures. The effect of four variables Al/Cr molar ratio, halide/Cr molar ratio, reaction temperature and catalyst dosage have been considered on catalyst activity, ۱-hexene selectivity and polymer content. The central composite design (CCD) model with three main parameters in three response levels for each factor was applied to analyze the effects of the parameters. The comparative studies showed that carbon-tetra-chloride (CCl۴) and tri-n-octyl-aluminum (TNOA) were the best candidates for this catalyst system, demonstrating high selectivity of ۱-hexene formation, higher catalytic activity and lower polymer content. Based on the RSM results, the best trimerization condition for ethylene at ۲۵ bar and ۹۱.۲°C was obtained at the catalytic system [Cr(۲-EH)۳/۲,۵-DMP/CCl۴/TNOA] molar ratio of ۱:۶:۱۰.۸:۲۰۱.۵, which showed the activity of ۱۰۵۳۲۸ (g ۱-C۶/(g Cr.hr)), ۹۹.۲۱% selectivity for ۱-hexene and no polymer was formed. The predicted process parameters were also verified by actual experiments at the optimized conditions.

کلیدواژه ها

Ethylene trimerization, ۱-Hexene, co-catalyst, halide, Response surface methodology

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