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Inverse Hysteresis and Self-Sustained Oscillations of CO Oxidation Reaction Rate over Pd Foil Тезисы доклада

Конференция EuropaCat-XIII: 13th European Congress on Catalysis
27-31 авг. 2017 , Florence
Сборник 13th European Congress on Catalysis
Сборник, 2017.
Вых. Данные Год: 2017, Номер статьи : P1.158, Страниц : 2
Авторы Lashina E.A. 1,3 , Slavinskaya E.M. 1,3 , Chumakova N.A. 1,3 , Chumakov G.A. 2,3 , Stadnichenko A.I. 1,3 , Boronin A.I. 1,3
Организации
1 Boreskov Institute of Catalysis, Novosibirsk, 630090, Russian Federation
2 Sobolev Institute of Mathematics, Novosibirsk, 630090, Russian Federation
3 Novosibirsk State University, Novosibirsk, 630090, Russian Federation

Информация о финансировании (1)

1 Федеральное агентство научных организаций России 0303-2016-0003

Реферат: Studying the kinetics of CO oxidation over Pd foil, we observed an inverse hysteresis: CO conversion was much lower under sample cooling than under foil heating. It was established that under heating the oxidation of metallic Pd (Pd0) to bulk PdO (PdOb) occurred through formation of the surface oxide PdO (PdOs). Under cooling PdOb reduced directly to Pd0 species, and in this case the self-sustained oscillations of reaction rate were observed. To describe reverse hysteresis together with oscillations the original kinetic model of CO oxidation reaction is proposed on the base of Langmuir-Hinshelwood mechanism both on Pd0 and PdOs surfaces. In this work we developed new approach based on nonlinear dependence of the activation energy of CO-oxygen interaction on coverage and composition of oxygen species over the catalyst surface. Under such assumptions, the model is capable to describe inverse hysteresis of CO oxidation rate as well as its oscillatory behavior at constant temperature.
Библиографическая ссылка: Lashina E.A. , Slavinskaya E.M. , Chumakova N.A. , Chumakov G.A. , Stadnichenko A.I. , Boronin A.I.
Inverse Hysteresis and Self-Sustained Oscillations of CO Oxidation Reaction Rate over Pd Foil
В сборнике 13th European Congress on Catalysis. 2017. – C.306-307.
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