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Synthesis of Diethyl Oxalate by a Coupling-Regeneration Reaction of Carbon Monoxide
引用本文:Fandong Meng,Genhui Xu,Baowei Wang,Xinbin Ma1. School of Chemical Engineering and Technology,Tianjin University,Tianjin 300072,China 2. Luoyang Petrochemical Engineering Corporation,Luoyang 471003,China[Manuscript received March 13,2002, revised Apr. Synthesis of Diethyl Oxalate by a Coupling-Regeneration Reaction of Carbon Monoxide[J]. 天然气化学杂志, 2002, 0(Z1)
作者姓名:Fandong Meng  Genhui Xu  Baowei Wang  Xinbin Ma1. School of Chemical Engineering and Technology  Tianjin University  Tianjin 300072  China 2. Luoyang Petrochemical Engineering Corporation  Luoyang 471003  China[Manuscript received March 13  2002   revised Apr
摘    要:This article describes a process for the synthesis of diethyl oxalate by a coupling reaction of carbon monoxide, catalyzed by palladium in the presence of ethyl nitrite. The kinetics and mechanism of the coupling and regeneration reaction are also discussed. This paper presents the results of a scale-up test of the catalyst and the process based on an a priori computer simulation.


Synthesis of Diethyl Oxalate by a Coupling-Regeneration Reaction of Carbon Monoxide
Fandong Meng,Genhui Xu,Baowei Wang,Xinbin Ma. School of Chemical Engineering and Technology,Tianjin University,Tianjin ,China . Luoyang Petrochemical Engineering Corporation,Luoyang ,China[Manuscript received March ,, revised Apr. Synthesis of Diethyl Oxalate by a Coupling-Regeneration Reaction of Carbon Monoxide[J]. Journal of Natural Gas Chemistry, 2002, 0(Z1)
Authors:Fandong Meng  Genhui Xu  Baowei Wang  Xinbin Ma. School of Chemical Engineering  Technology  Tianjin University  Tianjin   China . Luoyang Petrochemical Engineering Corporation  Luoyang   China[Manuscript received March      revised Apr
Abstract:This article describes a process for the synthesis of diethyl oxalate by a coupling reaction of carbon monoxide, catalyzed by palladium in the presence of ethyl nitrite. The kinetics and mechanism of the coupling and regeneration reaction are also discussed. This paper presents the results of a scale-up test of the catalyst and the process based on an a priori computer simulation.
Keywords:CO coupling   diethyl oxalate   kinetics and mechanism   simulation   scale-up test
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