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Hierarchical ZSM-5 Zeolites in Shape-Selective Xylene Isomerization: Role of Mesoporosity and Acid Site Speciation

机译:择形二甲苯异构化中的分层ZSM-5沸石:介孔性和酸性位点形成的作用

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摘要

The isomerization of o-xylene, a prototypical example of shape-selective catalysis by zeolites, was investigated on hierarchical porous ZSM-5. Extensive intracrystalline mesoporosity in ZSM-5 was introduced by controlled silicon leaching with NaOH. In addition to the development of secondary porosity, the treatment also induced substantial aluminum redistribution, increasing the density of Lewis acid sites located at the external surface of the crystals. However, the strength of the remaining Brønsted sites was not changed. The mesoporous zeolite displayed a higher o-xylene conversion than its parent, owing to the reduced diffusion limitations. However, the selectivity to p-xylene decreased, and fast deactivation due to coking occurred. This is mainly due to the deleterious effect of acidity at the substantially increased external surface and near the pore mouths. A consecutive mild HCl washing of the hierarchical zeolite proved effective to increase the p-xylene selectivity and reduce the deactivation rate. The HCl-washed hierarchical ZSM-5 displayed an approximately twofold increase in p-xylene yield compared to the purely microporous zeolite. The reaction was followed by operando infrared spectroscopy to simultaneously monitor the catalytic performance and the buildup of carbonaceous deposits on the surface. Our results show that the interplay between activity, selectivity, and stability in modified zeolites can be optimized by relatively simple post-synthesis treatments, such as base leaching (introduction of mesoporosity) and acid washing (surface acidity modification).
机译:在分级多孔ZSM-5上研究了邻二甲苯的异构化反应,这是沸石进行形状选择催化的典型例子。 ZSM-5中广泛的晶内介孔率是通过用NaOH进行受控的硅浸出引入的。除了形成二次孔隙外,该处理还引起铝的大量重新分布,从而增加了位于晶体外表面的路易斯酸位的密度。但是,其余Brønsted站点的强度未更改。由于降低的扩散限制,中孔沸石显示出比其母体更高的邻二甲苯转化率。然而,对对二甲苯的选择性降低,并且由于焦化而发生快速失活。这主要是由于酸度在实质上增加的外表面和靠近孔口处的有害作用。连续温和的HCl洗涤分级沸石证明有效地提高了对二甲苯的选择性并降低了失活速率。与纯微孔沸石相比,用HCl洗涤的分级ZSM-5的对二甲苯收率提高了约两倍。反应后用操作红外光谱法同时监测催化性能和表面上碳沉积物的堆积。我们的结果表明,改性沸石中活性,选择性和稳定性之间的相互作用可以通过相对简单的合成后处理来优化,例如碱浸(引入中孔)和酸洗(表面酸度改性)。

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