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首页> 外文期刊>ChemSusChem >Excellent Performances of Dealuminated H-Beta Zeolites from Organotemplate-Free Synthesis in Conversion of Biomass-derived 2,5-Dimethylfuran to Renewable p-Xylene
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Excellent Performances of Dealuminated H-Beta Zeolites from Organotemplate-Free Synthesis in Conversion of Biomass-derived 2,5-Dimethylfuran to Renewable p-Xylene

机译:从有机块合成的有机型H-β沸石的优异性能转化生物质 - 衍生的2,5-二甲基呋喃转化为可再生的对二甲苯

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Direct synthesis of renewable p-xylene (PX) by cycloaddition of biomass-derived 2,5-dimethylfuran (2,5-DMF) and ethylene was achieved over Al-rich H-beta zeolites synthesized by an organotemplate-free approach and their dealuminated counterparts with different Si/Al ratios. Among them, H-beta zeolite with an Si/Al ratio of 22, obtained from an Al-rich parent by dealumination, was found to be an excellent catalyst for the synthesis of PX. A PX yield of 97 % and 2,5-DMF conversion of 99 % were obtained under optimized conditions. These results are even better than those of a commercial H-beta zeolite prepared using a organotemplate synthesis with a similar Si/Al ratio of 19. The excellent performance of the H-beta zeolite with Si/Al ratio of 22 is closely related to its acidity and porous structure. A moderate Bronsted/Lewis acid ratio can improve the conversion of 2,5-DMF to as high as 99 %. Furthermore, dealuminated H-beta zeolite has a secondary pore system that facilitates product diffusion, which increases the selectivity to PX. In addition, this catalyst shows better regeneration. After five successive regeneration cycles, the yield of PX was still as high as 85 % without obvious dealumination. This work provides a deeper understanding of the more general Diels-Alder cycloaddition of furan-based feedstocks and olefins and significantly improves the potential for the synthesis of chemicals from lignocellulosic biomass.
机译:通过通过有机块的方法合成的富含性H-Beta沸石和浸润物的富含生物量 - 衍生的2,5-二甲基吡喃(2,5-DMF)和乙烯的可再生对二甲苯(PX)的直接合成可再生的对二甲苯(PX)。具有不同Si / Al比率的对应物。其中,从富含丙普莫宁获得的具有Si / Al比例的H-β沸石是由富丙的父母的合成的优异催化剂。在优化条件下获得97%和2,5-DMF转化率为97%和2,5-DMF转化的PX产量。这些结果甚至比使用具有类似Si / Al比例的有机块合成制备的商业H-β沸石的结果甚至更好。H-β沸石的优异性能与Si / Al比例为22的比例与其密切相关酸度和多孔结构。中度富棱镜/路易斯酸比可以将2,5-DMF的转化率改善至高达99%。此外,Dealminated H-Beta沸石具有辅助孔系统,其促进了产品扩散,这增加了对PX的选择性。此外,该催化剂表现出更好的再生。经过五次连续再生循环后,PX的产量仍高达85%,没有明显的近似。这项工作提供了更深入了解呋喃基原料和烯烃的更普通Diels-Alder环加成,并显着提高了从木质纤维素生物质合成化学品的可能性。

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