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Physicochemical and catalytic properties of mesoporous aluminosilicates modified with aluminum isopropoxide

机译:异丙醇铝改性的介孔铝硅酸盐的理化和催化性能

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The effect of alumination on the textural, acidic, and catalytic properties of mesoporous aluminosilicates with an ordered mesopore system has been studied. It has been found that the aluminizing process is accompanied by the incorporation of Al in the aluminosilicate material of the mesopore walls. It has been shown that, in the phenol methylation process, the composition of products over the original (Si/Al = 12.5) and aluminated aluminosilicates (Si/Al = 2.2 and 0.8) is the same, which is indicative of the identical nature of the active sites. Unlike the original mesoporous aluminosilicate, the aluminated materials have exhibited the same level of activity for 4 h. It has been supposed that the stable activity of the aluminated catalysts is caused by the generation of additional acid sites owing to the interaction of the aluminum-enriched material of the mesopore walls with water resulting from the reaction between phenol and methanol.
机译:研究了铝化对有序中孔体系介孔铝硅酸盐的质构,酸性和催化性能的影响。业已发现,在渗铝过程中伴随着Al掺入到中孔壁的铝硅酸盐材料中。已经表明,在苯酚甲基化过程中,原始(Si / Al = 12.5)和铝硅酸盐铝酸盐(Si / Al = 2.2和0.8)上产物的组成是相同的,这表明活动站点。与最初的中孔铝硅酸盐不同,铝化材料在4小时内显示出相同的活性水平。可以认为,由于中孔壁的富铝材料与苯酚和甲醇之间的反应所引起的水的相互作用,铝催化剂的稳定活性是由额外的酸位的产生引起的。

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