Erlangen Catalysis Resource Center (ECRC), Friedrich-Alexander-Universität Erlangen-Nürnberg, Egerlandstr. 3, 91058 Erlangen, Germany.
Chemical Reaction Engineering, Friedrich-Alexander-Universität Erlangen-Nürnberg, Egerlandstr. 3, 91058 Erlangen, Germany.
Chem Soc Rev. 2016 Jun 13;45(12):3313-30. doi: 10.1039/c5cs00935a.
Hierarchical zeolites have received increasing attention in the last decade due to their outstanding catalytic performance. Several types of hierarchical zeolites can be prepared by a large number of different techniques. Hierarchical zeolites combine the intrinsic catalytic properties of conventional zeolites and the facilitated access and transport in the additional meso- or macropore system. In this tutorial review, we discuss several test reactions that have been explored to show the benefit of the hierarchical pore system with respect to their suitability to prove the positive effects of hierarchical porous zeolites. It is important to note that positive effects on activity, stability and less frequently selectivity observed for hierarchically structured catalysts not necessarily are only a consequence of the additional meso- or macropores but also the number, strength and location of active sites as well as defects and impurities. With regard to these aspects, the test reaction has to be chosen carefully and potential changes in the chemistry of the catalyst have to be considered as well. In addition to the determination of conversion, yield and selectivity, we will show that the calculation of the activation energy and the determination of the Thiele modulus and the effectiveness factor are good indicators of the presence or absence of diffusion limitations in hierarchical zeolites compared to their parent materials.
在过去的十年中,由于其出色的催化性能,层状沸石受到了越来越多的关注。通过大量不同的技术可以制备出几种类型的层状沸石。层状沸石结合了传统沸石的固有催化性质以及在附加的中孔或大孔系统中易于接近和传输的性质。在本教程综述中,我们讨论了几种已探索的测试反应,以展示分层孔系统的优势,就其适合证明分层多孔沸石的积极效果而言。需要注意的是,对于具有分层结构的催化剂,观察到的活性、稳定性以及选择性的提高不一定仅仅是由于增加了中孔或大孔,还与活性位点数、强度和位置以及缺陷和杂质有关。在这些方面,必须谨慎选择测试反应,并考虑催化剂化学性质的潜在变化。除了转化率、产率和选择性的测定外,我们还将表明,与母体材料相比,计算活化能以及确定 Thiele 模量和效率因子是衡量层状沸石中是否存在扩散限制的良好指标。