Title of article
Lattice model studies of CO oxidation kinetic oscillation over nano-scaled Pt particle: Effect of temperature variation and diffusion
Author/Authors
Ching-Cher Sanders Yan، نويسنده , , Wan-Ting Chuang، نويسنده , , Ajay Chaudhari، نويسنده , , Shyi-Long Lee، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2005
Pages
9
From page
784
To page
792
Abstract
Monte-Carlo technique was applied to simulate the nonisothermal oxide formation/removal model for kinetic oscillation of
carbon monoxide oxidation over nano-scaled catalysts. The nonisothermal oxide model interprets kinetic oscillation more
properly with shorter oscillatory period and lower maximum CO coverage. Two channels transferring the system back and forth
between low and high rate states are necessary to achieve kinetic oscillation. Oxide formation switches the state from high to low
rate and found no changes in nonisothermal condition. Oxide removal reverses the process and it is accelerated in nonisothermal
simulations cutting low rate period. The role of CO diffusion was found important for the kinetic oscillation. Without CO
diffusion, oxide formation rate is increased keeping oxide coverage constant. Thus, the nondiffusive system is always in low
reactive state
Keywords
Model of surface reaction , Monte-Carlo simulation , Heterogeneous catalysis
Journal title
Applied Surface Science
Serial Year
2005
Journal title
Applied Surface Science
Record number
1001518
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