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首页> 外文期刊>Journal of Catalysis >Novel nano-scale Au/α-Fe_2O_3 catalyst for the preferential oxidation of CO in biofuel reformate gas
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Novel nano-scale Au/α-Fe_2O_3 catalyst for the preferential oxidation of CO in biofuel reformate gas

机译:新型纳米级Au /α-Fe_2O_3催化剂,用于生物燃料重整气中CO的优先氧化

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摘要

Au/α-Fe_2O_3 catalyst was synthesized using a modified co-precipitation method to generate an inverse catalyst model. The effects of introducing CO_2 and H_2O during preferential oxidation (PROX) of CO were investigated. The goal of this work was ≥99.8% CO conversion at 80°C. There was an increase in the conversion at all temperatures with the introduction of CO_2 and 100% of the CO was converted at the target temperature of 80°C for any amount of CO _2. Furthermore, there was an increase in conversion to 100% for water fractions ranging from 3% to 10%. Finally, for realistic conditions of (bio-)fuel reforming, 24% CO_2 and 10% water, 99.85% conversion was achieved. A long-term test of 200 h showed no significant deactivation of the catalyst at a temperature of 80°C in presence of 24% CO_2 and 3% water. The mechanism for PROX is not known definitively; however, current literature believes the gold particle size is the key. In contrast, we emphasize the tremendous role of the support particle size.
机译:采用改进的共沉淀法合成了Au /α-Fe_2O_3催化剂,建立了逆催化剂模型。研究了CO优先氧化(PROX)过程中引入CO_2和H_2O的影响。这项工作的目标是在80°C时CO转化率≥99.8%。在引入CO_2的情况下,所有温度下的转化率都有所增加,并且对于任何量的CO _2,在目标温度80°C下,100%的CO均已转化。此外,对于水分数从3%到10%的转化率提高到100%。最后,对于(生物)燃料重整的现实条件(24%的CO_2和10%的水),实现了99.85%的转化率。 200小时的长期测试表明,在存在24%CO_2和3%水的情况下,在80°C的温度下,催化剂没有明显失活。 PROX的机制尚不清楚。但是,目前的文献认为金的粒径是关键。相反,我们强调载体粒径的巨大作用。

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