Title of article :
CO oxidation trends on Pt-group metals from ultrahigh vacuum to near atmospheric pressures: A combined in situ PM-IRAS and reaction kinetics study
Author/Authors :
Gao، نويسنده , , F. and McClure، نويسنده , , S.M. and Cai، نويسنده , , Y. and Gath، نويسنده , , K.K. and Wang، نويسنده , , Y. and Chen، نويسنده , , M.S. and Guo، نويسنده , , Q.L. and Goodman، نويسنده , , D.W.، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2009
Pages :
6
From page :
65
To page :
70
Abstract :
The CO oxidation reaction on Pt-group metals (Pt, Rh, and Pd) has been investigated at low (⩽10−3 Torr) and near atmospheric (1–102 Torr) pressures in a batch reactor under steady-state conditions and at various gaseous reactant compositions using PM-IRAS and kinetic measurements. The results indicate that Langmuir–Hinshelwood kinetics adequately provides a general description of the kinetic trends over a wide range of pressures provided that mass transfer effects are considered. At high pressures, the reaction kinetics fall into three regimes: a CO-inhibited low temperature regime where the reaction rate is determined by CO desorption; a mass transfer limited regime at high temperatures; and a transient, high-rate regime which lies in between the other two regimes. The data show that the most reactive surface phase, at both low and high pressures, is a CO-uninhibited phase. This surface phase is not an oxide phase, but a surface phase that contains primarily chemisorbed atomic oxygen and a low coverage of CO.
Keywords :
Reaction kinetics , Pt-group metals , CO oxidation , polarization modulation , Infrared reflection absorption spectroscopy
Journal title :
Surface Science
Serial Year :
2009
Journal title :
Surface Science
Record number :
1704108
Link To Document :
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