Study of cumene oxidation over zirconia-, titania- and alumina-based complex oxides obtained by sol-gel methods: Activity structure relationships

被引:30
作者
Maksimov, YV
Suzdalev, IP
Tsodikov, MV
Kugel, VY
Bukhtenko, OV
Slivinsky, EV
Navio, JA
机构
[1] RUSSIAN ACAD SCI,AV TOPCHIEV PETROCHEM SYNTH INST,MOSCOW 117912,RUSSIA
[2] UNIV SEVILLA,CSIC,INST CIENCIA MAT,E-41012 SEVILLE,SPAIN
[3] FAC QUIM,DEPT QUIM INORGAN,E-41012 SEVILLE,SPAIN
关键词
cumene; oxidation; zirconia; titania; alumina; sol-gel methods; activity-structure relationships;
D O I
10.1016/1381-1169(95)00188-3
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
Activity-structure relationships have been studied in the low temperature liquid phase cumene oxidation over Fe-O/ZrO2, Fe-O/TiO2 and Fe-O/Al2O3 complex oxides obtained by sol-gel methods. The study has been carried out by the measurements of overall kinetics, product distribution and by X-ray diffraction and Mossbauer spectroscopic methods. Kinetic study in the presence of homogeneous initiator (azo-bis-diazobutyronitrile) has led to the conclusion that the active surface of complex oxides participates in chain initiation most probably via R-H bond rupture. Three groups of complex oxides are described: (1) two-phase polycrystalline zirconia-based catalysts showing high activity at low iron loading; (2) one-phase polycrystalline zirconia- and titania-based catalysts exhibiting either activity drop at some critical iron content (zirconia) or monotonic activity dependence (titania) on iron loading; (3) amorphous alumina-based catalysts containing gamma-ferric oxide clusters and showing monotone activity dependence. Electronically excited terminal Fe=O groups related to the surface FeO6 polyhedra and iron-containing species located at the interface have been suggested as active centers acquiring the anion-radical behavior. When comparing thermodynamically stable titania (anatase) with metastable one-phase zirconia (cubic or tetragonal) as host matrices, the suggestion was introduced that greater activity of zirconia-based catalysts is due to more energy transfer from the host matrix to the particular active center.
引用
收藏
页码:167 / 173
页数:7
相关论文
共 15 条
  • [1] Blyumberg E. A., 1975, PROBLEMY KINETIKI KA, V16, P150
  • [2] CHERONIS ND, 1964, ORGANIC FUNCTIONAL G
  • [3] EMANUEL NM, 1974, TEORIA PRACTICA GIDR, P330
  • [4] GORELYK SS, 1970, RENTGENOGRAPHICHESKI, P450
  • [5] LUMINESCENCE STUDY OF PHOTOREDUCTION OF VANADIUM(V) SUPPORTED ON SILICA-GEL
    GRITSCOV, AM
    SHVETS, VA
    KAZANSKY, VB
    [J]. CHEMICAL PHYSICS LETTERS, 1975, 35 (04) : 511 - 512
  • [6] HOCK H, 1959, Z PRAKT CHEM, V9, P173
  • [7] KAZANSKY VB, 1976, 6TH P INT C CAT, P50
  • [8] MAKSIMOV YV, 1980, CHIM VYSOKICH ENERG, V14, P505
  • [9] MELVILLE HW, 1954, J CHEM SOC, V3, P944
  • [10] FORMATION OF ZIRCONIUM TITANATE POWDER FROM A SOL-GEL PREPARED REACTIVE PRECURSOR
    NAVIO, JA
    MARCHENA, FJ
    MACIAS, M
    SANCHEZSOTO, PJ
    PICHAT, P
    [J]. JOURNAL OF MATERIALS SCIENCE, 1992, 27 (09) : 2463 - 2467