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Effects of Assistant Solvents and Mixing Intensity on the Bromination Process of Butyl Rubber 被引量:1

辅助溶剂与混合强度对丁基橡胶溴化过程的影响(英文)
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摘要 A slow bromination process of butyl rubber (IIR) suffers from low efficiency and low selectivity (S) of target-product. To obtain suitable approach to intensify the process, effects of assistant solvents and mixing inten-sity on the bromination process were systemically studied in this paper. The reaction process was found constantly accelerated with the increasing dosage and polarity of assistant solvent. Hexane with 30%(by volume) dichloro-methane was found as the suitable solvent component, where the stable conversion of 1,4-isoprene transferring to target product (xA1s) of 80.2%and the corresponding S of 91.2%were obtained in 5 min. The accelerated reaction process was demonstrated being remarkably affected by mixing intensity until the optimal stirring rate of 1100 r·min-1 in a stirred tank reactor. With better mixing condition, a further intensification of the process was achieved in a ro-tating packed bed (RPB) reactor, where xA1s of 82.6% and S of 91.9% were obtained in 2 min. The usage of the suitable solvent component and RPB has potential application in the industrial bromination process intensification. A slow bromination process of butyl rubber(IIR) suffers from low efficiency and low selectivity(S) of target-product. To obtain suitable approach to intensify the process, effects of assistant solvents and mixing inten-sity on the bromination process were systemically studied in this paper. The reaction process was found constantly accelerated with the increasing dosage and polarity of assistant solvent. Hexane with 30%(by volume) dichloro-methane was found as the suitable solvent component, where the stable conversion of 1,4-isoprene transferring to target product(xA1s) of 80.2% and the corresponding S of 91.2% were obtained in 5 min. The accelerated reaction process was demonstrated being remarkably affected by mixing intensity until the optimal stirring rate of 1100 r·min?1 in a stirred tank reactor. With better mixing condition, a further intensification of the process was achieved in a ro-tating packed bed(RPB) reactor, where xA1s of 82.6% and S of 91.9% were obtained in 2 min. The usage of the suitable solvent component and RPB has potential application in the industrial bromination process intensification.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第4期398-404,共7页 中国化学工程学报(英文版)
基金 Supported by the National Natural Science Foundation of China(21176014,20990221,21121064) the Science-Technology Project for Supervisors of Excellent Doctor Degree Thesis of Beijing(20111001001)
关键词 bromination of butyl rubber process intensitication assistant solvent mixing intensity 混合强度 溴化反应 丁基橡胶 溶剂 工艺效果 反应过程 过程强化 二氯甲烷
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