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Nonclassical from-shell-to-core growth of hierarchically organized SAPO-11 with enhanced catalytic performance in hydroisomerization of n-heptane

机译:具有增强的催化性能的分层组织的SAPO-11的非乳酸到核心生长,其催化性能提高了正庚烷的催化性能

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Integrating hierarchical porosity over microporous zeotype materials is an effective way to promote their mass transfer properties and catalytic performances. A combined synthetic strategy using small molecular growth inhibitor 1,2,3-hexanetriol and tumbling crystallization condition to generate hierarchically organized SAPO-11 is herein presented. The addition of 1,2,3-hexanetriol in the synthetic gel of SAPO-11 under agitating conditions significantly altered its crystallization behaviour, resulting in the formation of a hierarchically organized architecture. An underlying nonclassical from-shell-to-core crystallization has been disclosed by time-dependent observation of the formation process. The hierarchically self-organized structure has been characterized by a suite of characterization techniques, such as XRD, N _(2) physisorption, SEM, TEM, mercury intrusion measurements, ~(27) Al, ~(29) Si, ~(31) P MAS NMR and pyridine adsorption IR (Py-IR). The structure featuring barrel-shaped architecture is comprised of aligned 300–400 nm primary building blocks with voids in between, constructing an auxiliary macro-/meso-pore system open to external surfaces. The catalytic performance of Pt supported on hierarchical SAPO-11 in n -heptane hydroisomerization has been assessed, showing that both catalytic activity and isomer yield have been increased with respect to a conventional sample. As the acidity for the hierarchical SAPO-11 is comparable to the conventional sample, the enhancement in catalytic performance is attributed to the small primary crystal size and macro-/meso-pore-connectivity, that are important for mass transfer.
机译:在微孔Zeotype材料上整合层孔隙度是促进其传质性能和催化性能的有效方法。本文介绍了使用小分子生长抑制剂1,2,3-己二醇的组合合成策略和滚动结晶条件以产生分层组织的SAPO-11。在搅拌条件下,在SAPO-11的合成凝胶中加入1,2,3-六己四醇显着改变了其结晶行为,导致形成分层组织的建筑。已经通过时间依赖性观察形成过程,公开了一种底层非乳壳到核心结晶。层次的自组织结构的特点是一套表征技术,如XRD,N _(2)理由,SEM,TEM,汞入侵测量,〜(27)Al,〜(29)Si,〜(31 )P Mas NMR和吡啶吸附IR(Py-IR)。具有桶形架构的结构包括与之间的对齐300-400nm主构造块,在其间构造辅助宏/中间孔系统,该系统开放到外表面。已经评估了在N-庚烷氢代异构化中支持的PT的催化性能,表明常规样品相对于常规样品增加了催化活性和异构物产率。随着等级SAPO-11的酸度与常规样品相当,催化性能的增强归因于小的初级晶体尺寸和宏观/中间孔隙连接,这对于传质对于传质重要。

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