Wu Yushan, Guo Shuai, Wang Jida, Xu Junchen, Ding Mingyue
School of Power and Mechanical Engineering, Wuhan University, Wuhan, 430072, China.
State Grid Zhejiang Electric Power Co., LTD. Research Institute, Hangzhou, Zhejiang, 310014, China.
ChemSusChem. 2025 Jan 14;18(2):e202401279. doi: 10.1002/cssc.202401279. Epub 2024 Oct 16.
Aromatic components of C-C are playing indispensable roles in multi-functional properties of jet fuel. Here, we reported the controllable alkylation of benzene with mixed olefins of ethylene and propylene toward C-C aromatic hydrocarbons for jet fuels over the bifunctional Ga/ZSM-5 catalyst. The resultant 2Ga/ZSM-5 exhibited a superior selectivity of 86.4 % (yield of 55.5 %) to C-C range aromatics, at benzene conversion of 40.3 %, ethylene and propylene conversion of 99.5 % and 99.2 %, respectively. The incorporation of Ga species could effectively weaken the strong acid sites of ZSM-5 and endow 2Ga/ZSM-5 catalyst with appropriate acidity, therefore facilitating the benzene alkylation process and suppressing the undesired hydrogen transfer or aromatization side reactions as well, thus improving the yield of desired C-Caromatics for jet fuels. This work provided insight into the development of promising bifunctional catalyst for the oriented transformation of biomass-derived chemicals to aviation fuels.
碳碳芳烃的芳香族成分在喷气燃料的多功能特性中发挥着不可或缺的作用。在此,我们报道了在双功能Ga/ZSM-5催化剂上,苯与乙烯和丙烯的混合烯烃可控烷基化制备用于喷气燃料的碳碳芳烃。所得的2Ga/ZSM-5在苯转化率为40.3%、乙烯和丙烯转化率分别为99.5%和99.2%的情况下,对碳碳范围芳烃表现出86.4%的优异选择性(产率为55.5%)。Ga物种的引入可以有效削弱ZSM-5的强酸位点,并赋予2Ga/ZSM-5催化剂适当的酸度,从而促进苯烷基化过程,同时抑制不期望的氢转移或芳构化副反应,进而提高用于喷气燃料的所需碳碳芳烃的产率。这项工作为开发用于将生物质衍生化学品定向转化为航空燃料的有前景的双功能催化剂提供了思路。