2001Energy & FuelsRequires access

A New Low-Temperature Synthesis Route of Methanol: Catalytic Effect of the Alcoholic Solvent

Jianqing Zeng, Kaoru Fujimoto, Noritatsu Tsubaki

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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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What this paper is about

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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Available 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.

Key concepts: Methanol, Syngas, Catalysis, Alcohol, Solvent, Chemistry, Methanol reformer, Ethanol

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