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片状ZSM-5沸石作为烃类裂解的高效催化剂

Plate-Like ZSM-5 Zeolites as Robust Catalysts for the Cracking of Hydrocarbons.

作者信息

Dai Weijiong, Zhang Lina, Liu Runze, Wu Guangjun, Guan Naijia, Li Landong

机构信息

School of Materials Science and Engineering & National Institute for Advanced Materials, Nankai University, Tianjin 300350, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2022 Mar 9;14(9):11415-11424. doi: 10.1021/acsami.1c23614. Epub 2022 Feb 28.

Abstract

Zeolites with good acid site accessibility and high diffusion rates are highly desirable catalysts, especially when dealing with bulk molecules. In this work, ZSM-5 zeolites with similar Si/Al ratios but different thicknesses along the -axis (from ∼30 nm to ∼5 μm), namely, two plate-like ZSM-5 zeolites and two reference zeolites have been prepared and the impacts of -axis thickness on the surface properties and catalytic cracking performances are explored. Comprehensive physiochemical studies demonstrate that reducing the -axis thickness of the zeolite crystals endows the samples with better acid site accessibility and more external surface acid sites. Two model compounds with different molecule sizes, namely, 1,3,5-triisopropylbenzene (TIPB) and cumene, are selected to explore the catalytic cracking performances of the as-synthesized samples. The results reveal that decreasing the -axis thickness of zeolite crystals can effectually promote the catalytic activity and stability in catalytic cracking reactions. For TIPB cracking, the greatly enhanced catalytic activity is ascribed to the enhanced acid site accessibility in plate-like ZSM-5 zeolites, and for cumene cracking, the improved catalytic stability is ascribed to the shortened diffusion length of plate-like zeolites.

摘要

具有良好酸位可及性和高扩散速率的沸石是非常理想的催化剂,尤其是在处理大分子时。在这项工作中,制备了具有相似硅铝比但沿c轴厚度不同(从约30纳米到约5微米)的ZSM-5沸石,即两种片状ZSM-5沸石和两种参比沸石,并探讨了c轴厚度对其表面性质和催化裂化性能的影响。综合物理化学研究表明,减小沸石晶体的c轴厚度可使样品具有更好的酸位可及性和更多的外表面酸位。选择两种具有不同分子尺寸的模型化合物,即1,3,5-三异丙基苯(TIPB)和异丙苯,来研究合成样品的催化裂化性能。结果表明,减小沸石晶体的c轴厚度可有效提高催化裂化反应中的催化活性和稳定性。对于TIPB裂化,催化活性的大幅提高归因于片状ZSM-5沸石中酸位可及性的增强,而对于异丙苯裂化,催化稳定性的提高归因于片状沸石扩散长度的缩短。

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