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首页> 外文期刊>Catalysis Communications >Dual catalysis mechanism of alcohol solvent and Cu catalyst for a new methanol synthesis method
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Dual catalysis mechanism of alcohol solvent and Cu catalyst for a new methanol synthesis method

机译:一种新的甲醇合成方法:醇溶剂和铜催化剂的双重催化机理

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摘要

In situ diffuse reflectance infrared Fourier-transform spectroscopy was used to clarify the reaction mechanism of a new methanol synthesis method on a Cu/ZnO catalyst at low temperature such as 423 K from syngas containing CO_2 and H_2O using a 2-propanol promoter.The formate species was formed by exposing Cu/ZnO catalyst to syngas,and it easily reacted with 2-propanol to form a 2-propyl formate species at low temperature.2-Propyl formate was then quickly reduced to form methanol and 2-propanol.The Cu/ZnO catalyst was active for all these steps while catalytically cycled 2-propanol realized a low-temperature route.
机译:使用原位漫反射红外傅里叶变换光谱法阐明了一种新的甲醇合成方法,该方法是使用2-丙醇助催化剂在低温下以423 K等温度从含CO_2和H_2O的合成气中在423 K等低温条件下合成Cu / ZnO催化剂的新方法。通过将Cu / ZnO催化剂暴露于合成气中形成有机物种,它在低温下易于与2-丙醇反应生成2-丙基甲酸酯,然后快速还原2-甲酸丙酯形成甲醇和2-丙醇。 / ZnO催化剂对所有这些步骤均具有活性,而催化循环的2-丙醇则实现了低温路线。

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