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Elucidation of deactivation or resistance mechanisms of CrOx, VOx and MnOx supported phases in the total oxidation of chlorobenzene via ToF-SIMS and XPS analyses by F. Bertinchamps; C. Poleunis; C. Grégoire; P. Eloy; P. Bertrand; E. M. Gaigneaux is a Engineering article available to read on EtoBox.
What is Elucidation of deactivation or resistance mechanisms of CrOx, VOx and MnOx supported phases in the total oxidation of chlorobenzene via ToF-SIMS and XPS analyses about?
## Abstract VO~__x__~, CrO~__x__~ and MnO~__x__~ supported on TiO~2~ are all efficient catalysts in the total oxidation of benzene. However, in the oxidation of chlorobenzene, they exhibit different behaviors in terms of their resistance to deactivation by the chlorinated reactant and/or products of the reaction (Cl~2~, HCl). Precisely: VO~__x__~ catalysts present a very good resistance; conversely, MnO~__x__~ catalysts present a huge deactivation and CrO~__x__~ catalysts exhibit an intermediate behavior. This contribution leads to a better understanding of the mechanisms and origins of the respective deactivation (or resistance to deactivation) of the catalysts via a postmortem characterization by ‘X‐ray photoelectron spectroscopy’ (XPS) and ‘time of flight—secondary ion mass spectroscopy’ (ToF‐SIMS). (i) The different behaviors are correlated to the atomic ratio of chlorine/transition metal at the surface of the used catalysts and (ii) the nature of the chlorinated species responsible for the deactivation is elucidated: namely, CrO~__x__~ catalysts deactivate because of a firm adsorption at the surface of the chlorinated volatile organic compounds (VOC) or of chlorinated intermed
Who reads Elucidation of deactivation or resistance mechanisms of CrOx, VOx and MnOx supported phases in the total oxidation of chlorobenzene via ToF-SIMS and XPS analyses?
It is typically read by researchers, students, and practitioners in Engineering.
- Author
- F. Bertinchamps; C. Poleunis; C. Grégoire; P. Eloy; P. Bertrand; E. M. Gaigneaux
- Publisher
- John Wiley and Sons; Wiley (John Wiley & Sons); John Wiley & Sons Inc.; Wiley; Research Square (ISSN 0142-2421)
- Published
- 2008
- Language
- EN
- Field
- Engineering (Physical Sciences)