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Oxidation of Styrene with Molecular Oxygen in Supercritical CO2
作者姓名:TaoJIANG  BuXingHAN  GuoYingZHAO  ZhongHaoLI  YanHongCHANG  HaiXiangGAO  JunChunLI
作者单位:CenterforMolecularSciences,InstituteofChemistry,ChineseAcademyofSciences,Beijing100080
摘    要:The oxidation of styrene with molecular oxygen catalyzed by PdCl2 CuCl2 has been investigated in supercritical CO2 with a batch reactor. The oxidative system of styrene contains four components at the beginning and seven components during the reaction. The critical temperature, critical pressure, and critical density at different conversions are determined by using a high-pressure view cell. The effect of phase behavior on the conversion and selectivity were studied. Experimental results showed that the critical parameters of the reaction mixture at fixed initial molar ratio changed with the conversion of reactant. The conversion of styrene reached maximum near the critical density of the reaction mixture. Product selectivity also varied with density of reaction mixture and could be tuned to some degree.

关 键 词:苯乙烯  氧化  超临界流体  二氧化碳

Oxidation of Styrene with Molecular Oxygen in Supercritical CO2
TaoJIANG BuXingHAN GuoYingZHAO ZhongHaoLI YanHongCHANG HaiXiangGAO JunChunLI.Oxidation of Styrene with Molecular Oxygen in Supercritical CO2[J].Chinese Chemical Letters,2004,15(3):296-299.
Authors:Tao JIANG  Bu Xing HAN  Guo Ying ZHAO  Zhong Hao LI  Yan Hong CHANG  Hai Xiang GAO  Jun Chun LI Center for Molecular Sciences
Institution:Tao JIANG,Bu Xing HAN*,Guo Ying ZHAO,Zhong Hao LI,Yan Hong CHANG,Hai Xiang GAO,Jun Chun LI Center for Molecular Sciences,Institute of Chemistry,Chinese Academy of Sciences,Beijing 100080
Abstract:The oxidation of styrene with molecular oxygen catalyzed by PdCl2+CuCl2 has been investigated in supercritical CO2 with a batch reactor. The oxidative system of styrene contains four components at the beginning and seven components during the reaction. The critical temperature, critical pressure, and critical density at different conversions are determined by using a high-pressure view cell. The effect of phase behavior on the conversion and selectivity were studied. Experimental results showed that the critical parameters of the reaction mixture at fixed initial molar ratio changed with the conversion of reactant. The conversion of styrene reached maximum near the critical density of the reaction mixture. Product selectivity also varied with density of reaction mixture and could be tuned to some degree.
Keywords:Styrene  supercritical fluids  carbon dioxide  wacker oxidation  molecular oxygen  
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