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Nestlike Hollow Hierarchical MCM-22 Microspheres: Synthesis and Exceptional Catalytic Properties

机译:巢状空心分层MCM-22微球:合成和出色的催化性能。

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The synthesis and exceptional catalytic performance of nestlike hollow hierarchical MCM-22 microspheres (MCM-22-HS) were presented. The MCM-22-HSs were obtained by one-pot rotating hydrothermal synthesis using carbon black as a hard template via self-assembly combined hydro-thermal crystallization. The shell of MCM-22-HS was hierarchically constructed by many flaky MCM-22 crystals. The Mo/MCM-22-HS exhibited significantly improved methane conversion, yield of benzene product and catalyst lifetime for methane dehydroaromatization as a model reaction. The exceptional catalytic performance was attributed to the hollow and hierarchical structure. Faster transfer of Mo species because of the existing mesopores and higher dispersion of Mo species brought by the higher external surface of the Mo/HMCM-22-HS lead to generation of more catalysis active sites and high benzene yield. The sites associated with catalyst deactivation could also be reduced, contributing to improvement of the catalyst lifetime. Both the hierarchical and hollow structure is favorable for the diffusion of larger molecule product, probably contributing to significant improvement of the catalyst lifetime. This work demonstrated the potential applications of hollow hierarchical microsphere structure in catalytic engineering.
机译:介绍了巢状空心分级MCM-22微球(MCM-22-HS)的合成和优异的催化性能。 MCM-22-HSs是通过以炭黑为硬模板通过自组装组合水热结晶通过一锅法旋转水热合成获得的。 MCM-22-HS的外壳由许多片状MCM-22晶体分层构造而成。 Mo / MCM-22-HS表现出显着改善的甲烷转化率,苯产物收率和甲烷脱氢芳构化作为模型反应的催化剂寿命。优异的催化性能归因于空心和分级结构。由于Mo / HMCM-22-HS较高的外表面带来的中孔和较高的Mo分散度,Mo物种的转移速度更快,从而导致产生更多的催化活性位点和较高的苯收率。与催化剂失活有关的位点也可以减少,有助于延长催化剂寿命。分层结构和中空结构都有利于大分子产物的扩散,可能有助于催化剂寿命的显着提高。这项工作证明了空心分级微球结构在催化工程中的潜在应用。

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