4.6 Article

Distinguished Roles with Various Vanadium Loadings Of CoCr2-xVxO4 (x=0-0.20) for Methane Combustion

期刊

JOURNAL OF PHYSICAL CHEMISTRY C
卷 115, 期 35, 页码 17400-17408

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AMER CHEMICAL SOC
DOI: 10.1021/jp202958b

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资金

  1. National High-Tech Research and Development (863) Program of China [2009AA064806]
  2. State Key Joint Laboratory of Environment Simulation and Pollution Control [10Z01ESPCT]

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A series of vanadium-doped CoCr2-xVxO4 (x = 0-0.20) catalysts were prepared via the citric acid method and investigated for methane combustion. A significant improvement of the catalytic activity was observed over a CoCr1.95V0.05O4 catalyst, and the catalytic activity reached 90% of methane conversion at 438 degrees C, which was 76 degrees C lower than that of the undoped catalyst. Vanadium doping caused disorder in the spinel structure and various changes in physicochemical properties. The higher concentration of suprafacial, weakly chemisorbed oxygen and the active cobalt species, especially Co3+, could play a major role in the oxidation reaction. Results of XRD, Raman, and XPS suggested that excess vanadium probably formed separate catalytically inactive VOx species, which would explain the decline of catalytic activity for samples with a higher substitution degree.

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