Slight channel difference influences the reaction pathway of methanol-to-olefins conversion over acidic H-ZSM-22 and H-ZSM-12 zeolites

被引:53
作者
Chu, Yueying [1 ]
Sun, Xianyong [2 ]
Yi, Xianfeng [1 ]
Ding, Lihong [1 ]
Zheng, Anmin [1 ,3 ]
Deng, Feng [1 ]
机构
[1] Chinese Acad Sci, Wuhan Inst Phys & Math, Natl Ctr Magnet Resonance Wuhan, State Key Lab Magnet Resonance & Atom & Mol Phys, Wuhan 430071, Peoples R China
[2] Coal Chem Catalysis Ctr, Natl Inst Clean & Low Carbon Energy NICE, Beijing 102211, Peoples R China
[3] Huanggang Normal Univ, Hubei Key Lab Proc & Applicat Catalyt Mat, Huanggang 438000, Hubei, Peoples R China
基金
中国国家自然科学基金;
关键词
REACTION-MECHANISM; HYDROCARBONS CONVERSION; CATALYTIC CYCLE; CO-REACTION; METHYLATION; SAPO-34; SELECTIVITY; DESCRIPTOR; STABILITY; FRAMEWORK;
D O I
10.1039/c5cy00312a
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The methanol to olefins (MTO) process, in which low-value carbon-rich feedstocks are converted to value-added petrochemical products, is one of the most prominent alternatives for the production of light olefins. In order to reveal the confinement effect of zeolites on the catalytic reactions, the MTO mechanisms and reactivity over two unidimensional zeolites (H-ZSM-12 and H-ZSM-22) with a channel difference of only 0.3 angstrom have been systematically explored by DFT calculations in this work. The calculated activation barriers and reaction energies demonstrated that the 0.3 angstrom channel difference between H-ZSM-12 and H-ZSM-22 zeolites results in a dramatic discrepancy in their transition state selectivity associated with the aromatic-based hydrocarbon pool (HCP) mechanism. For the larger H-ZSM-12 zeolite, the formation of pentamethybenzenium cation was favored, which would be the active HCP species in the MTO reaction. For the H-ZSM-22 zeolite with a 0.3 angstrom smaller pore structure, the traditional methylation at the C-H sites of polymethylbenzenes occurred exclusively. When the alternative olefin-based cycle is followed for the MTO reaction, both of the zeolites are active catalysts for the formations of butene and propene. A comparison of the activation barriers for the olefin-based cycle revealed that the larger H-ZSM-12 possesses a higher catalytic activity than the H-ZSM-22 zeolite. Our theoretical results demonstrate that both the aromatic-based cycle and the olefin-based cycle can proceed during the MTO reaction over H-ZSM-12, with the latter cycle being predominant.
引用
收藏
页码:3507 / 3517
页数:11
相关论文
共 58 条
[41]   Shape-Selective Conversion of Methanol to Hydrocarbons Over 10-Ring Unidirectional-Channel Acidic H-ZSM-22 [J].
Teketel, Shewangizaw ;
Svelle, Stian ;
Lillerud, Karl-Petter ;
Olsbye, Unni .
CHEMCATCHEM, 2009, 1 (01) :78-81
[42]   Methanol to Olefins (MTO): From Fundamentals to Commercialization [J].
Tian, Peng ;
Wei, Yingxu ;
Ye, Mao ;
Liu, Zhongmin .
ACS CATALYSIS, 2015, 5 (03) :1922-1938
[43]   Packing sticky hard spheres into rigid zeolite frameworks [J].
Treacy, M. M. J. ;
Foster, M. D. .
MICROPOROUS AND MESOPOROUS MATERIALS, 2009, 118 (1-3) :106-114
[44]   Methylation of benzene by methanol: Single-site kinetics over H-ZSM-5 and H-beta zeolite catalysts [J].
Van der Mynsbrugge, Jeroen ;
Visur, Melina ;
Olsbye, Unni ;
Beato, Pablo ;
Bjorgen, Morten ;
Van Speybroeck, Veronique ;
Svelle, Stian .
JOURNAL OF CATALYSIS, 2012, 292 :201-212
[45]   First Principle Kinetic Studies of Zeolite-Catalyzed Methylation Reactions [J].
Van Speybroeck, Veronique ;
Van der Mynsbrugge, Jeroen ;
Vandichel, Matthias ;
Hemelsoet, Karen ;
Lesthaeghe, David ;
Ghysels, An ;
Marin, Guy B. ;
Waroquier, Michel .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2011, 133 (04) :888-899
[46]   Verification of the dual cycle mechanism for methanol-to-olefin conversion in HSAPO-34: a methylbenzene-based cycle from DFT calculations [J].
Wang, Chuan-Ming ;
Wang, Yang-Dong ;
Xie, Zai-Ku .
CATALYSIS SCIENCE & TECHNOLOGY, 2014, 4 (08) :2631-2638
[47]   Reactivity Descriptor in Solid Acid Catalysis: Predicting Turnover Frequencies for Propene Methylation in Zeotypes [J].
Wang, Chuan-Ming ;
Brogaard, Rasmus Y. ;
Weckhuysen, Bert M. ;
Norskov, Jens K. ;
Studt, Felix .
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2014, 5 (09) :1516-1521
[48]   Insights into the reaction mechanism of methanol-to-olefins conversion in HSAPO-34 from first principles: Are olefins themselves the dominating hydrocarbon pool species? [J].
Wang, Chuan-Ming ;
Wang, Yang-Dong ;
Xie, Zai-Ku .
JOURNAL OF CATALYSIS, 2013, 301 :8-19
[49]   Catalytic activity and selectivity of methylbenzenes in HSAPO-34 catalyst for the methanol-to-olefins conversion from first principles [J].
Wang, Chuan-Ming ;
Wang, Yang-Dong ;
Lie, Hong-Xing ;
Xie, Zai-Ku ;
Liu, Zhi-Pan .
JOURNAL OF CATALYSIS, 2010, 271 (02) :386-391
[50]   Methanol to Olefin Conversion on HSAPO-34 Zeolite from Periodic Density Functional Theory Calculations: A Complete Cycle of Side Chain Hydrocarbon Pool Mechanism [J].
Wang, Chuan-Ming ;
Wang, Yang-Dong ;
Xie, Zai-Ku ;
Liu, Zhi-Pan .
JOURNAL OF PHYSICAL CHEMISTRY C, 2009, 113 (11) :4584-4591