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Facile Preparation of 2Z,4E-Dienamides by the Olefination of Electron-deficient Alkenes with Allyl Acetate
Published on: June 21, 2017
Palladium-catalyzed selective oxidation of ethane to acetate acid
Ting Li1, Baotong Huang1, Weijie Li1
1Key Laboratory of Advanced Energy Materials Chemistry of Ministry of Education, College of Chemistry, Nankai University, Tianjin 300071, China.
Abstract:
The selective oxidation of ethane to acetate acid represents a promising route for ethane conversion, which is currently challenged by the high C-H bonding energy in ethane molecules and the incidental side reactions under employed conditions. We demonstrate herein that a simple PdCl2 catalyst can efficiently catalyze the selective oxidation of ethane to acetate acid in the reaction system of C2H6-O2-CO-H2O. The impacts of reaction parameters on ethane oxidation are systematically investigated. Kinetic and spectroscopic analyses reveal the reaction pathway starting from a water-gas-shift reaction, followed by in-situ hydroxyl radical and H2O2 formation for efficient ethane oxidation. In the refined reaction system with the addition of sulfuric acid, high ethane conversion of 15.7% and high acetate acid selectivity of 92.1% can be achieved at the same time, offering a state-of-the-art acetate acid space-time-yield of 372.7 molCH3COOH molPd -1 h-1 with great potential for practical applications. Finally, the reaction pathway and mechanism of ethane oxidation are interpreted by theoretical calculations to shed light on the rational design of reaction systems for natural gas upgrading.
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