4.6 Article

Influence of Alumina Precursor Properties on Cu-Fe Alumina Supported Catalysts for Total Toluene Oxidation as a Model Volatile Organic Air Pollutant

期刊

CATALYSTS
卷 11, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/catal11020252

关键词

alumina precursors; Cu-Fe; Al2O3 catalysts; heterogeneous catalysis; nanostructures; toluene total catalytic oxidation

资金

  1. Slovenian Research Agency, Slovenia [P1-0021, P2-150]
  2. European Regional Development Fund within the Operational Program Science and Education for Smart Growth 2014-2020 under the Project Center of Excellence: National center of mechatronics and clean technologies, Bulgaria [BG05M2OP001-1.001-0008]

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The role of alumina support precursors in Cu-Fe/Al2O3 catalysts for the total oxidation of toluene has been elucidated, with important factors being the structural order of the support precursor, homogeneous distribution of catalytic sites, and metal oxide distribution on the support. Homogeneous distribution of FexOy and CuOx with defined Cu/Fe molar ratio on the Al2O3 support is required for efficient catalytic performance. Introducing low iron concentration during alumina support synthesis procedure leads to a beneficial effect of homogeneous metal oxide distribution on the support.
The structure-property relationship of catalytic supports for the deposition of redox-active transition metals is of great importance for improving the catalytic efficiency and reusability of the catalysts. In this work, the role of alumina support precursors of Cu-Fe/Al2O3 catalysts used for the total oxidation of toluene as a model volatile organic air pollutant is elucidated. Surface characterization of the catalysts revealed that the surface area, pore volume and acid site concentration of the alumina supports are important but not the determining factors for the catalytic activity of the studied catalysts for this type of reaction. The determining factors are the structural order of the support precursor, the homogeneous distribution of the catalytic sites and reducibility, which were elucidated by XRD, NMR, TEM and temperature programed reduction (TPR). Cu-Fe/Al2O3 prepared from bayerite and pseudoboehmite as highly ordered precursors showed better catalytic performance compared to Cu-Fe/Al2O3 derived from the amorphous alumina precursor and dawsonite. Homogeneous distribution of FexOy and CuOx with defined Cu/Fe molar ratio on the Al2O3 support is required for the efficient catalytic performance of the material. The study showed a beneficial effect of low iron concentration introduced into the alumina precursor during the alumina support synthesis procedure, which resulted in a homogeneous metal oxide distribution on the support.

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