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Impact of pore topology and crystal thickness of nanosponge zeolites on the hydroconversion of ethylbenzene

机译:孔隙拓扑和晶体厚度的影响nanosponge hydroconversion的沸石乙苯

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摘要

The gas-phase hydroconversion of ethylbenzene was investigated in the presence of intimate mixtures of *MRE, MFI and MTW-type zeolite nanosponges and a hydrogenating component (Pt/Al2O3). The nanomorphic zeolites were prepared using multiammonium surfactants acting as dual-porogenic agents directing the formation of micro-and mesopores simultaneously. The effects of the zeolite topology (pore size and dimensionality) and crystal thickness on the product selectivity of ultra-thin zeolite frameworks (<10 nm) were investigated. The enhanced catalytic activity confirmed the importance of improved molecular diffusion. These nanosponges were unique in producing more xylenes, suggesting lower confinement effects. The selectivity for p-xylene and the selectivity towards ethylbenzene hydroisomerization, dealkylation, disproportionation, transalkylation and hydrocracking were evaluated. Despite the similar <10 nm crystal thickness of all the nanosponge zeolites, the presence of spacious channel interconnections in MFI was concluded to remarkably impact the product selectivity compared to straight channels as in *MRE and MTW. Our findings clarify the relatively unexplored transformation of alkyl-aromatics over ultra-thin zeolite crystals, through five typical catalytic reactions of major industrial interest.
机译:的气相hydroconversion乙苯调查的亲密的混合物*绝笔,MFI和MTW-type沸石纳米海绵加氢,组件(Pt /氧化铝)。nanomorphic沸石是准备使用multiammonium表面活性剂作为dual-porogenic代理指挥的形成同时微观和中孔。(孔隙大小和沸石的拓扑维度)和晶体厚度产品超薄沸石的选择性框架(< 10 nm)进行调查。增强的催化活性证实了改进的分子扩散的重要性。纳米海绵独特生产更多二甲苯,建议降低约束的影响。对二甲苯的选择性和选择性对乙苯hydroisomerization,脱烷基化作用,歧化和烷基转移加氢裂化和评估。类似< 10纳米晶体的厚度nanosponge沸石,宽敞的存在通道互连在MFI的结论显著影响产品选择性相比直接*绝笔和MTW渠道。我们的研究结果阐明相对未开发转换的烷基芳香烃超薄沸石晶体,通过五道典型的催化反应的主要工业利益。

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