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Production of liquid fuel intermediates from furfural via aldol condensation over potassium-promoted Sn-MFI catalyst

机译:在钾促进的Sn-MFI催化剂上通过醛醇缩合从糠醛生产液体燃料中间体

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摘要

Liquid fuel intermediates can be produced via aldol condensation reactions between furfural and acetone. It was found that potassium-promoted Lewis acid zeolite Sn-MFI performed superior catalytic performance for C-C bond coupling by aldol condensation reactions of furfural with acetone. The presence of K in Sn-MFI catalyst improves the catalytic activity of the catalyst likely due to increased basicity. The product distribution of aldol condensation was also changed remarkably with the addition of K. Besides 4-(2-furyl)-3-buten-2-one (FAc), 1, 5-di-2-furanyl-1, 4-pentadien-3-one (F-2 Ac) was also formed in the existence of K compared with pure Sn-MFI. It was also found that the K-promoted Sn-MFI catalyst is more resistant to water and exhibits enhanced selectivity to F2Ac.
机译:可以通过糠醛和丙酮之间的醛醇缩合反应生产液体燃料中间体。发现钾促进的路易斯酸沸石Sn-MFI通过糠醛与丙酮的醛醇缩合反应对C-C键偶联表现出优异的催化性能。 Sn-MFI催化剂中K的存在可能会提高碱度,从而提高催化剂的催化活性。添加K后,醛醇缩合的产物分布也发生了显着变化。除4-(2-呋喃基)-3-丁烯-2-一(FAc),1,5-二-2-呋喃基-1,4-与纯Sn-MFI相比,在钾的存在下也形成了戊二烯-3-酮(F-2 Ac)。还发现,K-促进的Sn-MFI催化剂对水具有更强的抵抗力,并且表现出对F 2 Ac的增强的选择性。

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