The Influence of Carrier on the Critical Phenomena in CO Oxidation over NiO

The influence of thermo-exfoliated graphite (TEG) on the catalytic activity of nickel in the CO oxidation process has been investigated. It was shown that nickel supported on the thermo-exfoliated graphite surface was more active catalytically than the bulk metal. Alternate oxidation–reduction on th...

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Main Authors: Vitaly K. Yatsimirsky, Vitaly L. Budarin, Vitaly Y. Diyuk, L.Y. Matzui, M.I. Zacharenko
Format: Article
Language:English
Published: SAGE Publications 2000-09-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1260/0263617001493666
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author Vitaly K. Yatsimirsky
Vitaly L. Budarin
Vitaly Y. Diyuk
L.Y. Matzui
M.I. Zacharenko
author_facet Vitaly K. Yatsimirsky
Vitaly L. Budarin
Vitaly Y. Diyuk
L.Y. Matzui
M.I. Zacharenko
author_sort Vitaly K. Yatsimirsky
collection DOAJ
description The influence of thermo-exfoliated graphite (TEG) on the catalytic activity of nickel in the CO oxidation process has been investigated. It was shown that nickel supported on the thermo-exfoliated graphite surface was more active catalytically than the bulk metal. Alternate oxidation–reduction on the Ni–NiO phase boundary occurred at temperatures higher than 633 K (Curie temperature of pure nickel). Using a magnetogravimetric method, it was found that the nickel catalyst was transformed by the reaction mixture into a heterophase (Ni/NiO) system both in the presence of a carrier and in its absence. Hence the carrier did not influence the size of the Ni particles. The high catalytic activity of the catalyst supported on graphite may be explained by an increase in the number of Ni particles. Ni/TEG and Ni/NiO samples were studied via X-ray diffraction, Auger spectroscopy and electron microscopy methods.
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spelling doaj.art-ed0a69fe0f3b4dcda760fa5e22698f9d2024-03-02T02:30:55ZengSAGE PublicationsAdsorption Science & Technology0263-61742048-40382000-09-011810.1260/0263617001493666The Influence of Carrier on the Critical Phenomena in CO Oxidation over NiOVitaly K. YatsimirskyVitaly L. BudarinVitaly Y. DiyukL.Y. MatzuiM.I. ZacharenkoThe influence of thermo-exfoliated graphite (TEG) on the catalytic activity of nickel in the CO oxidation process has been investigated. It was shown that nickel supported on the thermo-exfoliated graphite surface was more active catalytically than the bulk metal. Alternate oxidation–reduction on the Ni–NiO phase boundary occurred at temperatures higher than 633 K (Curie temperature of pure nickel). Using a magnetogravimetric method, it was found that the nickel catalyst was transformed by the reaction mixture into a heterophase (Ni/NiO) system both in the presence of a carrier and in its absence. Hence the carrier did not influence the size of the Ni particles. The high catalytic activity of the catalyst supported on graphite may be explained by an increase in the number of Ni particles. Ni/TEG and Ni/NiO samples were studied via X-ray diffraction, Auger spectroscopy and electron microscopy methods.https://doi.org/10.1260/0263617001493666
spellingShingle Vitaly K. Yatsimirsky
Vitaly L. Budarin
Vitaly Y. Diyuk
L.Y. Matzui
M.I. Zacharenko
The Influence of Carrier on the Critical Phenomena in CO Oxidation over NiO
Adsorption Science & Technology
title The Influence of Carrier on the Critical Phenomena in CO Oxidation over NiO
title_full The Influence of Carrier on the Critical Phenomena in CO Oxidation over NiO
title_fullStr The Influence of Carrier on the Critical Phenomena in CO Oxidation over NiO
title_full_unstemmed The Influence of Carrier on the Critical Phenomena in CO Oxidation over NiO
title_short The Influence of Carrier on the Critical Phenomena in CO Oxidation over NiO
title_sort influence of carrier on the critical phenomena in co oxidation over nio
url https://doi.org/10.1260/0263617001493666
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