A multitechnique characterization of the acidity of dealuminated mazzite

被引:60
作者
McQueen, D
Chiche, BH
Fajula, F
Auroux, A
Guimon, C
Fitoussi, F
Schulz, P
机构
[1] ECOLE NATL SUPER CHIM MONTPELLIER, CNRS, UMR 5618, LAB MAT CATALYT & CATALYSE CHIM ORGAN, F-34053 MONTPELLIER, FRANCE
[2] INST RECH CATALYSE, CNRS, UPR 5401, F-69626 VILLEURBANNE, FRANCE
[3] UNIV PAU & PAYS ADOUR, CNRS, URA 474, LAB PHYSICOCHIM MOL, F-64000 PAU, FRANCE
[4] ELF ANTAR FRANCE, CTR RECH, F-69360 SOLAIZE, FRANCE
关键词
D O I
10.1006/jcat.1996.0221
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 acidity of steam-dealuminated mazzite has been studied using heat flow calorimetry, temperature programmed desorption, X-ray photoelectron, and infrared spectroscopy, Particular emphasis has been given on evaluating the influence of framework and nonframework aluminum species on the nature, strength, and accessibility of the acid sites by preparing mazzite samples covering a broad range of global and framework compositions. It is shown that the strong acid sites present in dealuminated mazzite are associated with the framework aluminum atoms, whereas nonframework species contribute essentially to the weaker acidity. The presence of very strong sites has been revealed by the various techniques, Initial and intermediate heats of adsorption of ammonia were higher (by about 10 to 20 kJ/mol) than those usually reported for dealuminated zeolites. Three families of sites have been identified: (i) very strong Lewis sites, whose assignment to framework species is supported by the photoelectron and infrared data, (ii) structural Bronsted sites, associated with bridging hydroxyl groups, which exhibit an acid strength higher than those of mordenite and faujasite, and (iii) Lewis and Bronsted sites with weak or medium strength, originating from nonframework aluminum-containing species formed by high-temperature hydrolysis of structural Al-OH-Si groups.:valuation of the performance of platinum/mazzite catalyst for n-paraffin isomerization under industrial-like conditions reveals an activity and selectivity higher than that of commercial platinum/mordenite, with increased production of the high-octane isomer 2,2-dimethylbutane. (C) 1996 Academic, Press, Inc.
引用
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页码:587 / 596
页数:10
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