合成气
催化作用
碱金属
化学
无机化学
有机化学
作者
Yang Zhi,Mingsheng Luo,Qinglong Liu,Rehab O. Abdel Rahman
标识
DOI:10.1002/cctc.202402143
摘要
Abstract The development of catalysts for the direct one‐step conversion of syngas to higher alcohols is still a challenge. In this study, different alkali metal‐modified MCoMo/Al 2 O 3 (M = Li, Na, K, and Cs) catalysts were prepared by impregnation and temperature‐programmed carbonization process. Characterization by XRD, H 2 ‐TPR, and XPS revealed that the introduction of alkali metals increases the crystallinity of Mo 2 C, decreases the reducibility of the catalyst, as well as increases the surface high‐valent Mo content. The catalysts were evaluated for activity at 300 °C, 3.0 MPa, 18,000 mL·g Mo −1 ·h −1 , H 2 /CO = 2. The evaluation results found that with the increase in the electron‐giving capacity of alkali metals, the CO conversion rate gradually decreased from 98.8% to 46.3%. While the alcohol selectivity showed the opposite trend, increasing from 14.4% to 54.9%. Notably, the addition of K and Cs significantly increased the alcohol selectivity in the catalyst product, from 8.3% to 50.5% and 54.9%, respectively. Moreover, the ratio of higher alcohols in the alcohol product increased significantly from 10.5% to nearly 80%. Finally, in situ DRIFT characterization of the catalysts with different alkali metal modifications was carried out to investigate the changes in the reaction process intermediates and to summarize the possible reaction routes.
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