VANADIUM PENTOXIDE TITANIUM DIOXIDE SYSTEM - STRUCTURAL INVESTIGATION AND ACTIVITY FOR THE OXIDATION OF BUTADIENE

被引:193
作者
BOND, GC [1 ]
SARKANY, AJ [1 ]
机构
[1] TIOXIDE INT LTD,STOCKTON ON TEES TS18 2NQ,CLEVELAND,ENGLAND
关键词
D O I
10.1016/0021-9517(79)90013-7
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 interactions of various anatase and rutile samples with V2O5, and their products, have been studied by thermal analysis, by ir and ESR spectroscopy and by X-ray diffraction. The V2O5 was introduced either by mechanical admixture or by impregnation of the TiO2 with NH4VO3 and subsequent calcination. With anatase samples containing only low levels of P2O5 and K2O (< 0.6%) or containing SO4 = (6.3%), heating to 450 to 600 °C leads only to supported V2O5: but heating at 750 °C produces (i) a change in color to black, (ii) an irreversible loss of oxygen, (iii) a transformation of the anatase into rutile, and (iv) a substantial decrease in surface area. The results of experiments performed with various V2O5 concentrations (1 to 60% w w) suggest that about 8% w w V2O5 becomes incorporated as V4+ ions into the rutile lattice during the transformation, through the formation of a compound having the composition V0.04Ti0.96O2. Corresponding processes with rutile take place only at higher temperatures. Anatase containing Na+ (1.4%) behaves quite differently, and there is evidence for the formation of sodium vanadium bronzes on heating to 450 or 750 °C. Catalysts containing supported V2O5 oxidize butadiene to maleic anhydride at 260 °C with a selectivity which increases with V2O5 contents between 1 and 10%, and thereafter remains constant (S ∼- 0.45). Those containing the compound V0.04Ti0.96O2 are less active but more selective (S ∼- 0.57 for 10 to 30% V2O5). With both types, the selective reaction is zero order in butadiene and in O2, and both show activation energies for selective and for nonselective oxidation of 20 to 25 kcal · mol-1. Selective oxidation is believed to require lattice oxygen, and selectivity correlates with difficulty of reduction by CO. © 1979.
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页码:476 / 493
页数:18
相关论文
共 46 条
[1]  
ANDERSON PW, 1953, REV MOD PHYS, V25, P1269
[2]   IDENTIFICATION OF TITANIUM OXIDES BY X-RAY POWDER PATTERNS [J].
ANDERSSON, S ;
COLLEN, B ;
KRUUSE, G ;
KUYLENSTIERNA, U ;
MAGNELI, A ;
PESTMALIS, H ;
ASBRINK, S .
ACTA CHEMICA SCANDINAVICA, 1957, 11 (10) :1653-1657
[3]   PHASE ANALYSIS STUDIES ON THE TITANIUM-OXYGEN SYSTEM [J].
ANDERSSON, S ;
COLLEN, B ;
KUYLENSTIERNA, U ;
MAGNELI, A .
ACTA CHEMICA SCANDINAVICA, 1957, 11 (10) :1641-1652
[4]  
BLANCHARD M, 1972, B SOC CHIM FR, P3071
[5]  
BRYSTROV VI, 1973, RUSS J PHYS CHEM, V10, P1441
[6]   VANADIUM-PENTOXIDE-CATALYZED OXIDATION OF PENTENES .3. ROLE OF CATALYST [J].
BUTT, NS ;
FISH, A ;
SALEEB, FZ .
JOURNAL OF CATALYSIS, 1966, 5 (03) :508-&
[7]   STUDIES OF HETEROGENEOUS OXIDATION CATALYSTS .1. VANADIUM(V) OXIDE+TITANIUM(IV) OXIDE SYSTEM [J].
COLE, DJ ;
CULLIS, CF ;
HUCKNALL, DJ .
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS I, 1976, 72 :2185-2196
[8]   EXPLORATORY STUDY OF CATALYTIC-OXIDATION REACTIONS ON VANADIUM PENTOXIDE SINGLE-CRYSTALS [J].
COLPAERT, MN .
ZEITSCHRIFT FUR PHYSIKALISCHE CHEMIE-FRANKFURT, 1973, 84 (1-4) :150-156
[9]   INFRARED SPECTRA-STRUCTURE CORRELATION STUDY OF VANADIUM-OXYGEN COMPOUNDS [J].
FREDERICKSON, LD ;
HAUSEN, DM .
ANALYTICAL CHEMISTRY, 1963, 35 (07) :818-&
[10]   MAGNETIC-RESONANCE STUDIES OF LITHIUM VANADIUM BRONZE [J].
GENDELL, J ;
SIENKO, MJ ;
COTTS, RM .
JOURNAL OF CHEMICAL PHYSICS, 1962, 37 (02) :220-&