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Synthesis of a new meso/microporous composite molecular sieve of MCM-41/mordenite

机译:MCM-41 /丝光沸石新型介孔/微孔复合分子筛的合成

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摘要

An MCM-41/mordenite composite with twofold porous structure and stepwise-distributed acidity was prepared for the first time by using zeolite mordenite as the silica-alumina source. The composite molecular sieve has been investigated and compared with a mechanical mixture of mordenite and MCM-41 for their structure, acidity and catalytic activity by means of XRD, N_2 adsorption and de-sorption, HRTEM, DTG, NH_3-TPD and catalytic reaction. The characterization results show that the structure and property of the composite molecular sieve are quite different from those of the mechanical mixture, which might be ascribed to the incorporation of secondary building units characteristic of zeolite mordenite into the mesoporous walls of the composite which gives rise to the thicker mesoporous walls, the higher hydrothermal stability and more strong acid sites. Furthermore, the new strategy could be used as a new general method for the preparation of catalysts for the reaction system with multifold large molecules, and the results were well confirmed by the dealkylation of C10~+ aromatic hydrocarbon.
机译:以沸石丝光沸石为二氧化硅-氧化铝源,首次制备了具有双重多孔结构和酸性分布的MCM-41 /丝光沸石复合材料。研究了复合分子筛,并通过XRD,N_2吸附和解吸,HRTEM,DTG,NH_3-TPD和催化反应,与丝光沸石和MCM-41的机械混合物进行了结构,酸度和催化活性的比较。表征结果表明,复合分子筛的结构和性能与机械混合物的结构和性能有很大不同,这可能归因于将沸石丝光沸石特征的二级结构单元掺入复合材料的介孔壁中,从而导致中孔壁越厚,水热稳定性越高,酸位越强。此外,该新方法可作为制备具有多个大分子的反应体系的催化剂的一种新的通用方法,并且通过C10〜+芳烃的脱烷基反应已很好地证实了该结果。

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