Abstract:
TiO
2-SnO
2 mixed oxide was prepared by a co-precipitation method and
xCeO
2/TiO
2-SnO
2 catalysts were prepared using the impregnation method. The physicochemical properties were investigated by X-ray diffraction (XRD), BET specific surface area measurement, H
2 temperature-programmed reduction (H
2-TPR), NH
3 temperature-programmed desorption (NH
3-TPD), high-resolution transmission electron microscopy (HRTEM), and in situ diffuse reflectance infrared spectroscopy (DRIFTS). Meanwhile, their catalytic performance for the selective catalytic reduction of NO
x with NH
3(NH
3-SCR)was tested. It was found that 0.1Ce/TiO
2-SnO
2 had higher NO
x conversion and wider temperature range of 250~350℃. Excess loading of CeO
2 could lead to the decrease of specific surface area, redox ability and adsorption capacity of ammonia as well as the shrink of effective catalytic temperature range. NH
3-TPD result showed that the adsorption of NH
3 in weak acid and medium acid sites were significantly enhanced by CeO
2, which was related to the decrease of NH
3-SCR reaction temperature. In situ DRIFTS indicated that the strength of Lewis acid sites and Brønsted acid Sites were markedly enhanced for
xCeO
2/TiO
2-SnO
2 catalyst. Besides, new Brønsted acid Sites appeared at 1657~1666cm
-1 and NH
4+ played the dominant role in the SCR reaction.