THE OXIDATIVE COUPLING OF METHANE AND THE OXIDATIVE DEHYDROGENATION OF ETHANE OVER A NIOBIUM PROMOTED LITHIUM DOPED MAGNESIUM-OXIDE CATALYST

被引:20
作者
SWAAN, HM
LI, Y
SESHAN, K
VANOMMEN, JG
ROSS, JRH
机构
[1] TIANJIN UNIV,DEPT CHEM ENGN,TIANJIN 300072,PEOPLES R CHINA
[2] UNIV LIMERICK,DEPT IND CHEM & LIFE SCI,LIMERICK,IRELAND
关键词
D O I
10.1016/0920-5861(93)80094-H
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
The promoting effect of niobium in a Li/MgO catalyst for the oxidative coupling of methane (OCM) and for the oxidative dehydrogenation of ethane (ODHE) has been studied in some detail. It has been found that a Li/Nb/MgO catalyst with 16 wt % niobium showed the highest activity for the C2 production in the OCM reaction; the activity at 600-degrees-C was ten times that of the Li/MgO catalyst at the same temperature. The Li/Nb/MgO catalyst was also slightly more active for the ODHE reaction than was the Li/MgO catalyst. However, the Li/Nb/MgO catalyst produced considerably more carbon dioxide in the both reactions. Structural investigation of the catalyst showed that the addition of niobium to the Li/MgO catalyst increased the surface area and gave an increase in the lithium content of the calcined catalysts. Two niobium phases, LiNbO3 and Li3NbO4, were formed; it is shown that the first of these probably causes the increased activity. Ageing experiments showed that the activity of the catalyst was lost if the catalyst was used above 720-degrees-C, the melting point of the lithium carbonate phase. The catalyst showed a decrease of surface area after ageing and a sharp decrease of the amount of the two niobium phases. The addition of carbon dioxide to the feed could not prevent the deactivation of the Li/Nb/MgO catalyst.
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页码:537 / 546
页数:10
相关论文
共 13 条
[1]  
BROCKWELL JL, 1985, ARAB J SCI ENG, V10, P351
[2]  
ITO T, 1985, NATURE, V314, P416
[3]   HIGH TEMPERATURE TRANSPORT PROCESSES IN LITHIUM NIOBATE [J].
JORGENSE.PJ ;
BARTLETT, RW .
JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 1969, 30 (12) :2639-&
[4]  
Kolts J.H., 1986, [No title captured], Patent No. 4579997
[5]  
KOLTS JH, 1986, Patent No. 205675
[6]   LITHIUM CHEMISTRY OF LITHIUM DOPED MAGNESIUM-OXIDE CATALYSTS USED IN THE OXIDATIVE COUPLING OF METHANE [J].
KORF, SJ ;
ROOS, JA ;
DEBRUIJN, NA ;
VANOMMEN, JG ;
ROSS, JRH .
APPLIED CATALYSIS, 1990, 58 (01) :131-146
[7]   EFFECT OF ADDITIVES ON LITHIUM DOPED MAGNESIUM-OXIDE CATALYSTS USED IN THE OXIDATIVE COUPLING OF METHANE [J].
KORF, SJ ;
ROOS, JA ;
VELTMAN, LJ ;
VANOMMEN, JG ;
ROSS, JRH .
APPLIED CATALYSIS, 1989, 56 (01) :119-135
[8]  
Korf SJ, 1990, CATAL TODAY, V6, P417
[9]   THE EFFECT OF NB2O5 AND ZRO2 ADDITIONS ON THE BEHAVIOR OF LI/MGO AND LI/NA/MGO CATALYSTS FOR THE OXIDATIVE COUPLING OF METHANE [J].
MCNAMARA, DJ ;
KORF, SJ ;
SESHAN, K ;
VANOMMEN, JG ;
ROSS, JRH .
CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 1991, 69 (04) :883-890
[10]  
SMITS RHH, 1991, J CHEM SOC CHEM COMM, V8, P558