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作 者:鲍玉香 马宏飞 脱永笑 祁艳颖 冯翔 杨朝合[1] 陈德 BAO Yuxiang;MA Hongfei;TUO Yongxiao;QI Yanying;FENG Xiang;YANG Chaohe;CHEN De(College of Chemical Engineering,China University of Petroleum(East China),Qingdao 266580,Shandong,China;Department of Chemical Engineering,Norwegian University of Science and Technology,Trondheim 7491,Norway)
机构地区:[1]中国石油大学(华东)化学工程学院,山东青岛266580 [2]Department of Chemical Engineering,Norwegian University of Science and Technology,Trondheim 7491,Norway
出 处:《化工进展》2021年第4期2034-2047,共14页Chemical Industry and Engineering Progress
基 金:国家自然科学基金面上项目(21978325)。
摘 要:氯乙烯(VCM)是应用于高分子化工的重要单体,可以通过乙烯法及乙炔法制得。乙烯氧氯化生产VCM过程中二氯乙烷(EDC)的裂解生成VCM通常需要高温,能耗问题亟待改善。乙炔氢氯化法合成VCM常用氯化汞(HgCl_(2))催化剂,其毒性强、挥发性大,对环境和人类健康造成严重污染和危害。替代HgCl_(2)的贵金属催化剂虽然活性较高,但实现大规模商业化应用还需解决成本昂贵等问题。本文围绕贵金属催化剂、非贵金属催化剂和碳基非金属催化剂在VCM合成方面的最新研究进展,重点介绍了催化剂的活性位点、失活原因以及如何通过合理调控结构来设计催化剂。指出在未来的研究中,探索一种高效、无污染、低成本的催化剂来替代乙炔法HgCl_(2)催化剂以及开发全新乙烯法催化剂是催化剂设计的重点与难点。Vinyl chloride monomer(VCM)is an important monomer used in polymer chemical industry,which is obtained by ethylene method and acetylene method.VCM is produced by the pyrolysis of dichloroethane(EDC)in the process of ethylene oxychlorination,which usually requires high temperature,and the energy consumption problem needs to be solved urgently.Mercuric chloride catalyst(HgCl_(2))is commonly used in acetylene hydrochlorination to synthesize VCM,which has strong toxicity and volatility,causing serious pollution and harm to the environment and human beings.Although the noble metal catalyst substituted for HgCl_(2) has high activity,it still needs to solve the problem of high cost to realize large-scale commercial application.This paper focuses on the recent research progress of noble metal catalyst,non-noble metal catalyst and carbon-based metal free catalyst in VCM synthesis,and the active site,deactivation reason of the catalyst and how to design the catalyst through reasonable regulation structure were emphatically introduced.In the future research,explore an efficient,pollution-free and low-cost catalyst to replace mercuric chloride catalyst in acetylene hydrochlorination and to develop a new catalyst in ethylene oxychlorination would be the key issue.
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