A New Low-Temperature Synthesis Route of Methanol: Catalytic Effect of the Alcoholic Solvent
Jianqing Zeng, Kaoru Fujimoto, Noritatsu Tsubaki
Abstract
Jianqing Zeng, Kaoru Fujimoto, Noritatsu Tsubaki
Abstract
The effects of different alcohols as reaction solvent on the synthesis of methanol from CO/CO 2 /H 2 on solid Cu/ZnO catalyst were investigated. In the presence of some alcohol, especially 2-alcohol, as reaction medium, the reaction of methanol synthesis proceeded with high activity at temperatures as low as 423−443 K, much lower than the temperature in the present industrial methanol production process. This method is very promising to become a new technology for low-temperature synthesis of methanol where complete purification of syngas is not necessary.
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The effects of different alcohols as reaction solvent on the synthesis of methanol from CO/CO 2 /H 2 on solid Cu/ZnO catalyst were investigated. In the presence of some alcohol, especially 2-alcohol, as reaction medium, the reaction of methanol synthesis proceeded with high activity at temperatures as low as 423−443 K, much lower than the temperature in the present industrial methanol production process. This method is very promising to become a new technology for low-temperature synthesis of methanol where complete purification of syngas is not necessary.
Key concepts: Methanol, Syngas, Catalysis, Alcohol, Solvent, Chemistry, Methanol reformer, Ethanol