The effect of hierarchical single-crystal ZSM-5 zeolites with different Si/Al ratios on its pore structure and catalytic performance

被引:0
作者
Yuexin Hou
Xiaoyun Li
Minghui Sun
Chaofan Li
Syed ul Hasnain Bakhtiar
Kunhao Lei
Shen Yu
Zhao Wang
Zhiyi Hu
Lihua Chen
Bao-Lian Su
机构
[1] Wuhan University of Technology,Laboratory of Living Materials at the State Key Laboratory of Advanced Technology for Materials Synthesis and Processing
[2] Wuhan University of Technology,State Key Laboratory of Silicate Material for Architectures
[3] University of Namur,Laboratory of Inorganic Materials Chemistry (CMI)
[4] Wuhan University of Technology,Nanostructure Research Centre (NRC)
[5] University of Cambridge,Clare Hall
来源
Frontiers of Chemical Science and Engineering | 2021年 / 15卷
关键词
hierarchical zeolites; single crystalline; interconnected pores; improved diffusion performance; benzyl alcohol self-etherification reaction;
D O I
暂无
中图分类号
学科分类号
摘要
Hierarchical single-crystal ZSM-5 zeolites with different Si/Al ratios (Hier-ZSM-5-x, where x = 50, 100, 150 and 200) were synthesized using an ordered mesoporous carbon-silica composite as hard template. Hier-ZSM-5-x exhibits improved mass transport properties, excellent mechanical and hydrothermal stability, and higher catalytic activity than commercial bulk zeolites in the benzyl alcohol self-etherification reaction. Results show that a decrease in the Si/Al ratio in hierarchical single-crystal ZSM-5 zeolites leads to a significant increase in the acidity and the density of micropores, which increases the final catalytic conversion. The effect of porous hierarchy on the diffusion of active sites and the final catalytic activity was also studied by comparing the catalytic conversion after selectively designed poisoned acid sites. These poisoned Hier-ZSM-5-x shows much higher catalytic conversion than the poisoned commercial ZSM-5 zeolite, which indicates that the numerous intracrystalline mesopores significantly reduce the diffusion path of the reactant, leading to the faster diffusion inside the zeolite to contact with the acid sites in the micropores predominating in ZSM-5 zeolites. This study can be extended to develop a series of hierarchical single-crystal zeolites with expected catalytic performance.
引用
收藏
页码:269 / 278
页数:9
相关论文
共 292 条
[1]  
Aizenberg J(2005)Skeleton of Science 309 275-278
[2]  
Weaver J C(2005) sp.: Structural hierarchy from the nanoscale to the macroscale Nature Materials 4 277-288
[3]  
Thanawala M S(1997)Biomimetism and bioinspiration as tools for the design of innovative materials and systems Science 276 122-126
[4]  
Sundar V C(1999)A general model for the origin of allometric scaling laws in biology Science 284 1677-1679
[5]  
Morse D E(1926)The fourth dimension of life: Fractal geometry and allometric scaling of organisms Proceedings of the National Academy of Sciences of the United States of America 12 207-214
[6]  
Fratzl P(2017)The physiological principle of minimum work: I. the vascular system and the cost of blood volume Nature Communications 8 14921-14930
[7]  
Sanchez C(2019)Bio-inspired Murray materials for mass transfer and activity Chemical Society Reviews 48 1095-1149
[8]  
Arribart H(2018)New trends in tailoring active sites in zeolite-based catalysts Nature Communications 9 1231-1242
[9]  
Guille M M G(2018)Single rhodium atoms anchored in micropores for efficient transformation of methane under mild conditions Frontiers of Chemical Science and Engineering 12 867-877
[10]  
West G B(2016)Research and development of hydrocracking catalysts and technologies in China Journal of the American Chemical Society 138 7484-7487