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Effect of Temperature on the Deactivation of a Pd-Fe/α-Al2O3 Catalyst for CO Coupling to Diethyl Oxalate
作者姓名:JingangFang  ZhenghuaLi  GenhuiXu  BaoweiWang  TieliXiang
作者单位:KeyLabofGreenChemicalTechnology,SchoolofChemicalEngineering,TianjinUniversity,Tianjin300072,China
基金项目:Supported by National“Ninth-Five” Scientific Research Project(Grant number:96-539-01)
摘    要:Destructive tests of the catalyst was carried out to study the effect of temperature on the catalytic activity of CO coupling to diethyl oxalate (DEO) over a Pd-Fe/Al2O3 catalyst. It was found that a temperature jump could cause the deactivation of the Pd-Fe/α-Al2O3 catalyst. The catalyst deactivated at different temperatures has different characteristics. After deactivation the crystal structure of α-Al2O3 did not change, but the Pd particle size was enlarged. Most of the Pd^0 were oxidized to Pd^2 . and Fe^2 was oxidized to Fe^3 on the surface of the deactivated catalyst. The catalyst could be regenerated, but its original activity could not be recovered completely.

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Effect of Temperature on the Deactivation of a Pd-Fe/Al2O3 Catalyst for CO Coupling to Diethyl Oxalate
JingangFang ZhenghuaLi GenhuiXu BaoweiWang TieliXiang.Effect of Temperature on the Deactivation of a Pd-Fe/Al2O3 Catalyst for CO Coupling to Diethyl Oxalate[J].Journal of Natural Gas Chemistry,2003,12(4):243-246.
Authors:Jingang Fang  Zhenghua Li  Genhui Xu  Baowei Wang  Tieli Xiang
Institution:Key Lab of Green Chemical Technology, School of Chemical Engineering, Tianjin University, Tianjin 300072, China
Abstract:Destructive tests of the catalyst was carried out to study the effect of temperature on the catalytic activity of CO coupling to diethyl oxalate (DEO) over a Pd-Fe/Al2O3 catalyst. It was found that a temperature jump could cause the deactivation of the Pd-Fe/a-Al2O3 catalyst. The catalyst deactivated at different temperatures has different characteristics. After deactivation the crystal structure of a-Al2O3 did not change, but the Pd particle size was enlarged. Most of the Pd0 were oxidized to Pd2+, and Fe2+ was oxidized to Fe3+ on the surface of the deactivated catalyst. The catalyst could be regenerated, but its original activity could not be recovered completely.
Keywords:accelerating deactivation test  diethyl oxalate  palladium  carbon monoxide
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