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Mesoporous Zeolitic Materials (MZMs) Derived From Zeolite Y Using a Microwave Method for Catalysis

机译:使用微波法用于催化的沸石Y衍生自沸石Y的中孔沸石材料(MZMS)

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摘要

Mesostructured zeolitic materials (MZMs) with relatively high acidity in comparison with the mesoporous siliceous MCM-41 were prepared via an efficient, mild, and simple post-synthetic treatment of Y zeolite facilitated by microwave irradiation, i.e., microwave-assisted chelation (MWAC). The disordered mesoporous aluminosilicates materials (DMASs) of MZM were created from Y zeolite in the absence of using mesoscale templates. The prepared DMASs showed the good mesoporous features with the mesopore area and volume of ~260 m2 g−1 and ~0.37 cm3 g−1, respectively, and with the mesopore sizes distributed in a range of 2–10 nm. MZMs possess a total acidity of about 0.6 mmol g−1 and exhibited comparatively superior catalytic activity to the parent Y zeolite and MCM-41 in the vapor phase catalytic dealkylation of 1,3,5-triisopropylbenzene (TiPBz) and liquid phase catalytic aldol condensation of benzaldehyde with 1-heptanal. Although the yield loss was inevitable for preparing MZMs using the MWAC method, the preliminary economic analysis of the preparation cost of MZMs showed the promise. Additionally, a comprehensive comparison of the state-of-the-art mesoporous materials concerning their sustainable aspects was made, showing that MZMs are promising mesoporous materials for further development and functionalization for catalysis.
机译:通过微波辐射促进的y沸石的高分子,即易沸石的易沸石,即通过微波辐射,即微波辅助螯合(Mwac),制备具有相对高的酸度的沸石材料(MZMS)。 。在没有使用Messcale模板的情况下从Y沸石中产生混乱的介孔硅酸盐材料(DMASS)。制备的DMASS分别显示出良好的介孔特征,中孔面积和〜260m 2 G-1和〜0.37cm 3 G-1的体积,并且中孔尺寸分布在2-10nm的范围内。 MZMS具有约0.6mmol G-1的总酸度,并且在母体y沸石和MCM-41中表现出相对优越的催化活性,并且在1,3,5-三异丙基苯(TipBz)和液相催化醛凝聚的气相催化脱烷基中的MCM-41上苯甲醛用1-庚烷。虽然使用MWAC方法制备MZMS的屈服损失是不可避免的,但对MZMS的制备成本的初步经济分析表明了承诺。此外,制备了关于其可持续发展方面的最先进的中孔材料的全面比较,表明MZMS是具有进一步开发和催化作用的介孔材料的前景。

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