Chemical Industry and Engineering Progree

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Production technology of cycloolefin copolymers

XIE Jiaming,CAO Kun,ZHAO Quanju,YAO Zhen,Lü Fei   

  1. Institute of Chemical Engineering,Shanghai Petrochemical Co. Ltd.,Sinopec; State Key Laboratory of Chemical Engineering (Polymerization Division),Institute of Polymer Engineering,Department of Chemical Engineering,College of Materials Science and Chemical Engineering,Zhejiang University
  • Online:2006-08-25 Published:2006-08-25

环烯烃共聚物的生产工艺评述

谢家明,曹 堃,赵全聚,姚 臻,吕 飞   

  1. 上海石化股份有限公司化工研究所; 浙江大学材料与化工学院化工系聚合反应工程
    国家重点实验室

Abstract: Cycloolefin and α–olefin copolymers (COC) with excellent transparency,low dielectric loss,outstanding dimensional stability,high heat resistance and gas barrier property are produced by four companies (Ticona,Nippon Zeon Corp.,JSR Corp. and Mitsui Chemicals) through either ring-opening metathesis polymerization (ROMP) or copolymerization with metallocene catalysts (mCOC). These two routes are compared in respect of catalysts,monomers,production processes and product properties. The COC produced through ROMP route has a larger amount of C—C double bond in the macromolecular chains,therefore it has to go through a hydrogenation process to get rid of 98% of the residual double bond in order to produce high-performance materials. The hydrogenation process is not needed if COC is produced through mCOC route. Consequently,mCOC processes are considered economically favorable compared to ROMP processes.

摘要: 介绍了生产环烯烃共聚物(COC)所采用的两种工艺过程,即开环移位聚合过程(ROMP)和茂金属催化加成共聚合过程(mCOC)。通过对单体、催化剂、生产工艺流程、聚合物性能等各方面的综合对比,认为采用ROMP法所制得的产物必须进行后续加氢反应以去除开环所带来的不饱和双键,一般氢化程度大于98%才能得到高质量的COC。而mCOC法则仅需一步反应即可,且催化活性很高,被认为是生产COC树脂最为经济、有效的方法。

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