YBa2Cu3O7-delta X sigma (X = F and Cl): Highly active and durable catalysts for the selective oxidation of ethane to ethene

Citation
Hx. Dai et al., YBa2Cu3O7-delta X sigma (X = F and Cl): Highly active and durable catalysts for the selective oxidation of ethane to ethene, J CATALYSIS, 193(1), 2000, pp. 65-79
Citations number
78
Categorie Soggetti
Physical Chemistry/Chemical Physics","Chemical Engineering
Journal title
JOURNAL OF CATALYSIS
ISSN journal
00219517 → ACNP
Volume
193
Issue
1
Year of publication
2000
Pages
65 - 79
Database
ISI
SICI code
0021-9517(20000701)193:1<65:YXS(=F>2.0.ZU;2-Y
Abstract
The catalytic performance and characterization of YBa2Cu3O7-delta and YBa2C u3O7-deltaXsigma for the oxidative dehydrogenation of ethane (ODE) to ethen e have been investigated. Under the reaction conditions of temperature = 68 0 degrees C, C2H6/O-2/N-2 molar ratio = 2/1/3.7, and contact time = 1.67 x 10(-4) h g ml(-1), YBa2Cu3O7-0.21F0.16 showed 84.1% C2H6 conversion, 81.8% C2H4 selectivity, and 68.8% C2H4 yield; YBa2Cu3O7-0.18Cl0.13 showed 92.5% C 2H6 conversion, 72.0% C2H4 selectivity, and 66.6% C2H4 yield. The sustainab le performance during a period of 40 h on-stream reaction at 680 degrees C demonstrated that the F- and Cl-doped catalysts are durable. X-ray powder d iffraction results indicated that the undoped YBa2Cu3O7-delta and halide-do ped YBa2Cu3O7-deltaXsigma were of triple-layered oxygen-deficient perovskit e-type orthorhombic structure. The results of the X-ray photoelectron spect roscopy, thermal treatment, thermogravimetric analysis, and O-18(2)-pulsing studies indicated that the incorporation of halide ions into the YBa2Cu3O7 -delta lattice enhanced the activity of lattice oxygen. According to the O- 2 temperature-programmed desorption and temperature-programmed reduction re sults, we conclude that the oxygen species desorbed at 610-710 degrees C ar e active for the selective oxidation of ethane and those desorbed below 610 degrees C are active for the total oxidation of ethane; a suitable oxygen nonstoichiometry and Cu3+ concentration in YBa2Cu3O7-deltaXsigma, are requi red for the best catalytic performance of the catalysts. (C) low Academic P ress.