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Theoretical and Experimental Study on Reaction Coupling: Dehydrogenation of Ethylbenzene in the Presence of Carbon Dioxide
作者姓名:Shuwei  Chen  Zhangfeng  Qin  Ailing  Sun  Jianguo  Wang
作者单位:Shuwei Chen,Zhangfeng Qin,Ailing Sun,Jianguo Wang State Key Laboratory of Coal Conversion,Institute of Coal Chemistry,Chinese Academy of Sciences,Shanxi 030001,China
基金项目:Acknowledgements The authors are grateful for the financial support of The Sate Key Fundamental Research Project and the Natural Science Foundation of China.
摘    要:Dehydrogenation of ethylbenzene (EB) to styrene (ST) in the presence of CO2, in which EB dehydrogenation is coupled with the reverse water-gas shift (RWGS), was investigated extensively through both theoretical analysis and experimental characterization. The reaction coupling proved to be superior to the single dehydrogenation in several respects. Thermodynamic analysis suggests that equilibrium conversion of EB can be improved greatly by reaction coupling due to the simultaneous elimination of the hydrogen produced from dehydrogenation. Catalytic tests proved that iron and vanadium supported on activated carbon or Al2O3 with certain promoters are potential catalysts for this coupling process. The catalysts of iron and vanadium are different in the reaction mechanism, although ST yield is always associated with CO2 conversion over various catalysts. The two-step pathway plays an important role in the coupling process over Fe/Al2O3, while the one-step pathway dominates the reaction over V/Al2O3. Coke deposition and deep reduction of active components are the major causes of catalyst deactivation. CO2 can alleviate the catalyst deactivation effectively through preserving the active species at high valence in the coupling process, though it can not suppress the coke deposition.

收稿时间:2005-11-21
修稿时间:2005-12-08

Theoretical and Experimental Study on Reaction Coupling:Dehydrogenation of Ethylbenzene in the Presence of Carbon Dioxide
Shuwei Chen Zhangfeng Qin Ailing Sun Jianguo Wang.Theoretical and Experimental Study on Reaction Coupling:Dehydrogenation of Ethylbenzene in the Presence of Carbon Dioxide[J].Journal of Natural Gas Chemistry,2006,15(1):11-20.
Authors:Shuwei Chen  Zhangfeng Qin  Ailing Sun  Jianguo Wang
Institution:State Key Laboratory of Coal Conversion, Institute of Coal Chemistry, Chinese Academy of Sciences
Abstract:Dehydrogenation of ethylbenzene (EB) to styrene (ST) in the presence of CO2, in which EB dehydrogenation is coupled with the reverse water-gas shift (RWGS), was investigated extensively through both theoretical analysis and experimental characterization. The reaction coupling proved to be superior to the single dehydrogenation in several respects. Thermodynamic analysis suggests that equilibrium conversion of EB can be improved greatly by reaction coupling due to the simultaneous elimination of the hydrogen produced from dehydrogenation. Catalytic tests proved that iron and vanadium supported on activated carbon or Al2O3 with certain promoters are potential catalysts for this coupling process. The catalysts of iron and vanadium are different in the reaction mechanism, although ST yield is always associated with CO2 conversion over various catalysts. The two-step pathway plays an important role in the coupling process over Fe/Al2O3, while the one-step pathway dominates the reaction over V/Al2O3. Coke deposition and deep reduction of active components are the major causes of catalyst deactivation. CO2 can alleviate the catalyst deactivation effectively through preserving the active species at high valence in the coupling process, though it can not suppress the coke deposition.
Keywords:reaction coupling  ethylbenzene dehydrogenation  styrene  carbon dioxide  water-gas shift  reaction mechanism  catalyst deactivation
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