4.6 Article

Catalytic Abatement of Volatile Organic Compounds and Soot over Manganese Oxide Catalysts

期刊

MATERIALS
卷 14, 期 16, 页码 -

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MDPI
DOI: 10.3390/ma14164534

关键词

manganese oxide catalysts; soot catalytic oxidation; catalytic oxidation of volatile organic compounds; sustainable catalysts

资金

  1. European Union [768692]
  2. H2020 Societal Challenges Programme [768692] Funding Source: H2020 Societal Challenges Programme

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A group of manganese oxide catalysts were synthesized through two preparation techniques, and their physicochemical properties were studied. The catalysts exhibited high catalytic performance in the oxidation of volatile organic compounds and carbon soot. Among them, Mn2O3-SG550 and Mn3O4/Mn2O3-SCS catalysts showed the best performance in soot abatement.
A set of manganese oxide catalysts was synthesized via two preparation techniques: solution combustion synthesis (Mn3O4/Mn2O3-SCS and Mn2O3-SCS) and sol-gel synthesis (Mn2O3-SG550 and Mn2O3-SG650). The physicochemical properties of the catalysts were studied by means of N-2-physisorption at -196 degrees C, X-ray powder diffraction, H-2 temperature-programmed reduction (H-2-TPR), soot-TPR, X-ray photoelectron spectroscopy (XPS) and field-emission scanning electron microscopy (FESEM). The high catalytic performance of the catalysts was verified in the oxidation of Volatile Organic Compounds (VOC) probe molecules (ethene and propene) and carbon soot in a temperature-programmed oxidation setup. The best catalytic performances in soot abatement were observed for the Mn2O3-SG550 and the Mn3O4/Mn2O3-SCS catalysts. The catalytic activity in VOC total oxidation was effectively correlated to the enhanced low-temperature reducibility of the catalysts and the abundant surface O-alpha-species. Likewise, low-temperature oxidation of soot in tight contact occurred over the Mn2O3-SG550 catalyst and was attributed to high amounts of surface O-alpha-species and better surface reducibility. For the soot oxidation in loose contact, the improved catalytic performance of the Mn3O4/Mn2O3-SCS catalyst was attributed to the beneficial effects of both the morphological structure that-like a filter-enhanced the capture of soot particles and to a probable high amount of surface acid-sites, which is characteristic of Mn3O4 catalysts.

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