Friedrich-Alexander-Universität Erlangen-Nürnberg, CRT, Egerlandstraße 3, 91058 Erlangen, Germany.
Adv Mater. 2011 Jun 17;23(22-23):2602-15. doi: 10.1002/adma.201100462. Epub 2011 Apr 15.
During the past several years, different kinds of hierarchical structured zeolitic materials have been synthesized due to their highly attractive properties, such as superior mass/heat transfer characteristics, lower restriction of the diffusion of reactants in the mesopores, and low pressure drop. Our contribution provides general information regarding types and preparation methods of hierarchical zeolitic materials and their relative advantages and disadvantages. Thereafter, recent advances in the preparation and characterization of hierarchical zeolitic structures within the crystallites by post-synthetic treatment methods, such as dealumination or desilication; and structured devices by in situ and ex situ zeolite coatings on open-cellular ceramic foams as (non-reactive as well as reactive) supports are highlighted. Specific advantages of using hierarchical zeolitic catalysts/structures in selected catalytic reactions, such as benzene to phenol (BTOP) and methanol to olefins (MTO) are presented.
在过去的几年中,由于具有优异的性质,如优越的质量/热传递特性、在介孔中反应物扩散的限制较小以及压降较低,不同种类的分级结构沸石材料已经被合成。我们的贡献提供了有关分级沸石材料的类型和制备方法及其相对优缺点的一般信息。此后,通过后合成处理方法(例如脱铝或脱硅)在晶体内部制备和表征分级沸石结构的最新进展,以及通过原位和异位沸石在开孔陶瓷泡沫上的涂层作为(非反应性和反应性)支撑的结构化装置被强调。在选定的催化反应中使用分级沸石催化剂/结构的具体优点,如苯到苯酚(BTOP)和甲醇制烯烃(MTO)被提出。