4.8 Article

Comparative study of La-Sr-Fe-O perovskite-type oxides prepared by ceramic and surfactant methods over the CH4 and H2 lean-deNOx

期刊

APPLIED CATALYSIS B-ENVIRONMENTAL
卷 93, 期 1-2, 页码 1-11

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ELSEVIER
DOI: 10.1016/j.apcatb.2009.09.003

关键词

Perovskites; NO reduction by H-2; NO reduction by CH4; Lean-deNO(x)

资金

  1. Research Committee of the University of Cyprus
  2. E.U. [GROWTH - G5RD - CT - 2000 - 00317]

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Mixed oxides of the general formula La0.8Sr0.2FeO3-x were prepared by ceramic and surfactant methods and tested towards the NO/H-2/O-2 and NO/CH4/O-2 lean-deNO(x) reactions in the 200-450 degrees C range. The materials were characterized for their bulk and surface composition by XRD, Mossbauer and XPS techniques. The main crystal phases detected were perovskites LaFeO3 and SrFeO3-x, and alpha-Fe2O3. The Mossbauer technique allowed the precise determination of the composition of Fe-containing phases in the solids prepared by both the ceramic and surfactant methods. Significant differences in the composition of the phases and the surface chemical states of Fe, Sr and La were revealed among the two solid compositions. For the CH4 lean-deNO(x) reaction at 350 degrees C, the La0.8Sr0.2FeO3-x solid composition (LSF-2) prepared by the surfactant method exhibited an increase by 50% in the rate of NO conversion and by 30% in the rate of N-2 formation (per gram basis) as compared to the solid prepared by the ceramic method (LSF-1). An opposite relative catalytic activity behavior was observed for the two solids when tested towards the H-2 lean-deNO(x) reaction. At 375 degrees C (maximum activity observed) the solid prepared by the ceramic method (LSF-1) exhibited an increase by 83% in the rate of N-2 formation as compared to the solid prepared by the surfactant method (LSF-2). It is suggested that the mobility of surface lattice oxygen, the concentration of oxygen vacant sites, and the mixed valences of metal cations present in the La0.8Sr0.2FeO3-x solid all influenced by the preparation method used are the main parameters that largely influenced the catalytic behavior observed over the LSF-1 and LSF-2 solids. (C) 2009 Elsevier B.V. All rights reserved.

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