Desilication and silylation of Mo/HZSM-5 for methane dehydroaromatization

被引:68
|
作者
Tempelman, Christiaan H. L. [1 ]
de Rodrigues, Victor O. [1 ,2 ]
van Eck, Ernst R. H. [3 ]
Magusin, Pieter C. M. M. [1 ]
Hensen, Emiel J. M. [1 ]
机构
[1] Eindhoven Univ Technol, Lab Inorgan Mat Chem, Schuit Inst Catalysis, NL-5612 AZ Eindhoven, Netherlands
[2] Univ Fed Rio de Janeiro, Inst Quim, BR-21941909 Rio De Janeiro, RJ, Brazil
[3] IMM Radboud Univ Nijmegen, Solid State NMR Facil Adv Mat Res, NL-6525 AJ Nijmegen, Netherlands
关键词
Methane; Aromatization; Mo/HZSM-5; Desilication; Silylation; ZSM-5; ZEOLITE; OXIDE CATALYSTS; ACID SITES; DEHYDRO-AROMATIZATION; SPREADING BEHAVIOR; MOLYBDENUM OXIDES; RAMAN; BENZENE; CONVERSION; MO;
D O I
10.1016/j.micromeso.2014.10.020
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
The influence of mesoporosity and silylation on the physico-chemical and catalytic properties of Mo/HZSM-5 in methane dehydroaromatization was investigated. The zeolites were characterized by XRD, Al-27 and Mo-95 NMR, UV-Vis, UV Raman and pyridine IR spectroscopy and TEM. Base-desilicated mesoporous and bulk HZSM-5 zeolites with comparable Bronsted acidity were employed as acidic supports. Mo loading was optimized to minimize loss of acidity. Surface silylation of Mo/HZSM-5 resulted in improved Mo-oxide dispersion. More intensive silylation led to decreased Mo-oxide dispersion because of increased hydrophobicity. High methane conversion rates were associated with small Mo-oxide precursor particles. Silylation of the external surface of Mo/HZSM-5 led to higher methane conversion and less coke formation. On contrary, silylation of HZSM-5 prior to Mo introduction had a negative effect on the performance. Post-synthesis silylation of Mo/HZSM-5 affected the Mo-oxide phase. The amount of hard coke decreased with increasing silylation degree due to deactivation of acid sites at the external surface. It also decreased naphthalene yield. Methane conversion and aromatics selectivity were lower for mesoporous Mo/HZSM-5 compared with bulk Mo/HZSM-5. Although the initial Mo-oxide dispersion was higher, the different nature of the mesopore surface resulted in rapid formation of large Mo-carbide particles with higher coke selectivity. Silylation slightly improved activity and selectivity to benzene. (C) 2014 Elsevier Inc. All rights reserved.
引用
收藏
页码:259 / 273
页数:15
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