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Acidity and catalytic activity of the mesoporous aluminosilicate molecular sieve MCM-41

机译:介孔硅铝酸盐分子筛MCM-41的酸度和催化活性

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摘要

The acidity and catalytic properties of aluminosilicate mesoporous molecular sieves with the MCM-41 structure and bulk Si/Al ratios in the 10-60 range have been investigated. The incorporation of 4-coordinate aluminium into the structure of MCM-41 generates both Bronsted and Lewis acid sites in amounts increasing with the degree of incorporation. However, the Bronsted/Lewis acid population ratio is independent of the content of aluminium. The number and strength of acid sites generated are comparable to those of a pillared acid-activated clay and lower than in zeolite H-Y with Si/Al = 3.65. Aluminosilicate MCM-41 is a moderate catalyst for the conversion of cumene which proceeds predominantly via catalytic cracking to propene and benzene. The sample of MCM-41 with the highest content of framework aluminium (Si/Al = 10) has the largest number of Bronsted acid sites and exhibits highest catalytic activity.
机译:研究了具有MCM-41结构和Si / Al体积比为10-60的硅铝酸盐介孔分子筛的酸度和催化性能。将4-配位铝结合到MCM-41的结构中产生布朗斯台德和路易斯酸位点,其数量随着结合程度的增加而增加。但是,布朗斯台德/刘易斯酸的人口比例与铝的含量无关。产生的酸性位点的数量和强度与柱状酸活化粘土相当,并且比Si / Al = 3.65的H-Y沸石低。硅铝酸盐MCM-41是用于枯烯转化的中度催化剂,其主要通过催化裂化进行为丙烯和苯。骨架铝含量最高的MCM-41样品(Si / Al = 10)具有最多的布朗斯台德酸位点,并具有最高的催化活性。

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