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首页> 外文期刊>Angewandte Chemie >One-Step Reforming of CO2 and CH4 into High-Value Liquid Chemicals and Fuels at Room Temperature by Plasma-Driven Catalysis
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One-Step Reforming of CO2 and CH4 into High-Value Liquid Chemicals and Fuels at Room Temperature by Plasma-Driven Catalysis

机译:通过等离子体驱动的催化在室温下将CO2和CH4的一步重整为高价值液体化学品和燃料

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摘要

The conversion of CO2 with CH4 into liquid fuels and chemicals in a single-step catalytic process that bypasses the production of syngas remains a challenge. In this study, liquid fuels and chemicals (e.g., acetic acid, methanol, ethanol, and formaldehyde) were synthesized in a one-step process from CO2 and CH4 at room temperature (30 degrees C) and atmospheric pressure for the first time by using a novel plasma reactor with a water electrode. The total selectivity to oxygenates was approximately 50-60%, with acetic acid being the major component at 40.2% selectivity, the highest value reported for acetic acid thus far. Interestingly, the direct plasma synthesis of acetic acid from CH4 and CO2 is an ideal reaction with 100% atom economy, but it is almost impossible by thermal catalysis owing to the significant thermodynamic barrier. The combination of plasma and catalyst in this process shows great potential for manipulating the distribution of liquid chemical products in a given process.
机译:将CO 2与CH4转化为液体燃料和化学物质,在单步催化过程中绕过合成气的生产仍然是一个挑战。在该研究中,通过使用一种具有水电极的新型等离子体反应器。含氧化合物的总选择性约为50-60%,具有乙酸,选择性为40.2%的主要成分,迄今为止乙酸报道的最高值。有趣的是,来自CH4和CO 2的乙酸的直接血浆合成是与100%原子经济的理想反应,但由于显着的热力学屏障,热催化几乎是不可能的。在该方法中的血浆和催化剂的组合表明,在给定的过程中操纵液体化学产品分布的巨大潜力。

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