REACTIONS OF 2-METHYLPENTANE AND 3-METHYLPENTANE, METHYLCYCLOPENTANE, CYCLOPENTANE, AND CYCLOHEXANE ON ACTIVATED MO2C

被引:82
作者
PHAMHUU, C
LEDOUX, MJ
GUILLE, J
机构
[1] UNIV STRASBOURG 1,CHIM MAT CATALYT LAB,1 RUE BLAISE PASCAL,F-67070 STRASBOURG,FRANCE
[2] EHICS,IPCMS,MAT INORGAN GRP,F-67070 STRASBOURG,FRANCE
关键词
D O I
10.1006/jcat.1993.1270
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
Molybdenum carbide, prepared by a new synthetic route and further activated either by reductive or by oxidative treatments, has been studied as a catalyst for isomerization of 2- and 3-methylpentane and also for hydrogenolysis of cyclopentane, cyclohexane, and methylcyclopentane. The nature of this activating pretreatment dramatically modifies both the activity and the selectivity of the catalyst. Reductive pretreatments lead either to inactive, or to active but poorly selective, catalysts (Mo metal on the surface or pure Mo carbide), whereas oxidative treatment first inhibits the hydrogenolysis reaction present on oxygen-free molybdenum carbide, and second, enhances the isomerization rate of the catalyst. The branched molecules isomerize to give mostly acyclic isomers. No deactivation is observed with time on stream during isomerization of the branched molecules. The rate of hydrogenolysis of methylcyclopentane and cyclopentane is about four times lower than the rate obtained with branched molecules, and the catalyst is strongly deactivated. This phenomenon is attributed to the formation of highly dehydrogenated polyaromatics, and to the formation of CH4, by demethylation of methylcyclopentane, which can irreversibly reduce the oxicarbide phase. The deactivated catalyst can easily be regenerated by a short oxidative treatment at 350°C. The results, in terms of both activity and isomer selectivity, obtained for n-hexane, 2-methylpentane. and 3-methylpentane isomerization are attributed to a bond-shift mechanism involving a metallocyclobutane ring intermediate which would take place on an oxicarbide phase. © 1993 by Academic Press, Inc.
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页码:249 / 261
页数:13
相关论文
共 23 条
[1]  
BOUDART M, 1973, SCIENCE, V181, P547
[2]   MECHANISMS OF SKELETAL ISOMERIZATION OF HYDROCARBONS ON METALS [J].
GAULT, FG .
ADVANCES IN CATALYSIS, 1981, 30 :1-95
[3]   SYNTHESIS, CHARACTERIZATION, AND CATALYTIC PROPERTIES OF CLEAN AND OXYGEN-MODIFIED TUNGSTEN CARBIDES [J].
IGLESIA, E ;
RIBEIRO, FH ;
BOUDART, M ;
BAUMGARTNER, JE .
CATALYSIS TODAY, 1992, 15 (02) :307-337
[4]   BIFUNCTIONAL REACTIONS OF ALKANES ON TUNGSTEN CARBIDES MODIFIED BY CHEMISORBED OXYGEN [J].
IGLESIA, E ;
BAUMGARTNER, JE ;
RIBEIRO, FH ;
BOUDART, M .
JOURNAL OF CATALYSIS, 1991, 131 (02) :523-544
[5]   CATALYTIC ACTIVITIES OF TIC, WC, AND TAC FOR HYDROGENATION OF ETHYLENE [J].
KOJIMA, I ;
MIYAZAKI, E ;
INOUE, Y ;
YASUMORI, I .
JOURNAL OF CATALYSIS, 1979, 59 (03) :472-474
[6]   CATALYSIS BY TRANSITION-METAL CARBIDES .4. MECHANISM OF ETHYLENE HYDROGENATION AND THE NATURE OF ACTIVE-SITES ON TANTALUM MONOCARBIDE [J].
KOJIMA, I ;
MIYAZAKI, E ;
INOUE, Y ;
YASUMORI, I .
JOURNAL OF CATALYSIS, 1982, 73 (01) :128-135
[7]   CATALYTIC PROPERTIES OF TRANSITION-METAL CARBIDES .2. ACTIVITY OF BULK MIXED CARBIDES OF MOLYBDENUM AND TUNGSTEN IN HYDROCARBON CONVERSION [J].
LECLERCQ, L ;
PROVOST, M ;
PASTOR, H ;
LECLERCQ, G .
JOURNAL OF CATALYSIS, 1989, 117 (02) :384-395
[8]  
LEDOUX MJ, 1990, CR ACAD SCI II, V310, P707
[9]   COMPARED ACTIVITIES OF PLATINUM AND HIGH SPECIFIC SURFACE-AREA MO2C AND WC CATALYSTS FOR REFORMING REACTIONS .1. CATALYST ACTIVATION AND STABILIZATION - REACTION OF NORMAL-HEXANE [J].
LEDOUX, MJ ;
CUONG, PH ;
GUILLE, J ;
DUNLOP, H .
JOURNAL OF CATALYSIS, 1992, 134 (02) :383-398
[10]  
LEDOUX MJ, 1989, Patent No. 4433