A computer simulation study of distribution, structure and acid strength of active sites in H-ZSM-5 catalyst

被引:51
作者
Grau-Crespo, R
Peralta, AG
Ruiz-Salvador, AR
Gómez, A
López-Cordero, R
机构
[1] Ctr Invest Petroleo, Unidad Catalisis, Havana 12000, Cuba
[2] Univ La Habana, IMRE Fac Fis, Lab Ingn Zeolitas, Dept Ciencia Mat, Havana 10400, Cuba
关键词
D O I
10.1039/b006490o
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
Classical calculations using the shell model were performed to study the stability, distribution, structure and acid strength of active centers in H-ZSM-5 catalyst. The defect energies associated with Al/Si substitution, in the absence of proton or other counterions, were calculated for the 24 crystallographically nonequivalent T sites of the monoclinic structure of ZSM-5, and the lattice energies of the 96 structures obtained by periodic (Al,H)/Si substitutions in all different positions of the framework were also calculated. Proton site occupancies were estimated by considering the acid site formation as a random two-step mechanism in which Al atom is sited first and proton is then bound to one of the adjacent O atoms. This approach suggests Al14-O32-Si18 as the acid site with the largest occurrence, in contrast to previous suggestions. The electrostatic field intensities at proton sites, the O-H frequencies and the geometric features of acid sites were also obtained, and the deprotonation energies (DPE) were estimated as the defect energy of removing a proton in the periodically-protonated structures. Calculated OH frequencies are in good agreement with spectroscopic data, while the DPE are underestimated by our classical defect calculations. The contributions of short-range and long-range factors to the acidity are studied by correlating the OH frequency with the Al-O-Si angle and with the electrostatic field created by the crystal at the proton site.
引用
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页码:5716 / 5722
页数:7
相关论文
共 44 条
[1]   ABINITIO QUANTUM CHEMICAL CALCULATIONS OF ALUMINUM SUBSTITUTION IN ZEOLITE ZSM-5 [J].
ALVARADOSWAISGOOD, AE ;
BARR, MK ;
HAY, PJ ;
REDONDO, A .
JOURNAL OF PHYSICAL CHEMISTRY, 1991, 95 (24) :10031-10036
[2]   Atomistic simulation of hydroxide ions in inorganic solids [J].
Baram, PS ;
Parker, SC .
PHILOSOPHICAL MAGAZINE B-PHYSICS OF CONDENSED MATTER STATISTICAL MECHANICS ELECTRONIC OPTICAL AND MAGNETIC PROPERTIES, 1996, 73 (01) :49-58
[3]   COMPUTER-SIMULATION OF THE MONOCLINIC DISTORTION IN SILICALITE [J].
BELL, RG ;
JACKSON, RA ;
CATLOW, CRA .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1990, (10) :782-783
[4]   LOWENSTEIN RULE IN ZEOLITE-A - A COMPUTATIONAL STUDY [J].
BELL, RG ;
JACKSON, RA ;
CATLOW, CRA .
ZEOLITES, 1992, 12 (07) :870-871
[5]   INFRA-RED SPECTRA AND SOLVENT EFFECTS .1. X-H STRETCHING FREQUENCIES [J].
BELLAMY, LJ ;
HALLAM, HE ;
WILLIAMS, RL .
TRANSACTIONS OF THE FARADAY SOCIETY, 1958, 54 (08) :1120-1127
[6]   THEORETICAL CALCULATIONS ON ZEOLITES - THE ALUMINUM SUBSTITUTION IN MORDENITE, FERRIERITE AND ZSM-5 [J].
BLANCO, F ;
URBINAVILLALBA, G ;
DEAGUDELO, MMR .
MOLECULAR SIMULATION, 1995, 14 (03) :165-176
[7]   Acidity differences between inorganic solids induced by their framework structure.: A combined quantum mechanics molecular mechanics ab initio study on zeolites [J].
Brändle, M ;
Sauer, J .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1998, 120 (07) :1556-1570
[8]  
Catlow C.R.A., 1997, Computer Modelling in Inorganic Crystallography
[9]  
Catlow C. R. A, 1992, MODELLING STRUCTURE
[10]  
CATLOW CRA, 1982, COMPUTER SIMULATION