Ceria modified three-dimensionally ordered macro-porous Pt/TiO_2 catalysts for water-gas shift react

来源 :Journal of Rare Earths | 被引量 : 0次 | 上传用户:A121972311
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Three-dimensionally ordered macro-porous(3DOM) TiO2 and ceria-modified 3DOM TiO2 supported platinum catalysts were prepared with template and impregnation methods,and the resultant samples were characterized by scanning electron microscopy(SEM) ,X-ray diffractometer(XRD) ,high-resolution transmission electron microscopy(HRTEM) and temperature programmed reduction(TPR) techniques. The catalytic performances over the platinum-based catalysts were investigated for water-gas shift(WGS) reaction in a wide temperature range(180-360 °C) . The results showed that 3DOM Pt/TiO2 catalyst exhibited obviously better catalytic performance than the corresponding non macro-porous catalyst,owing to the macro-porous structure favoring mass transfer. Addition of ceria into 3DOM Pt/TiO2 led to improvement of catalytic activity. TPR and HRTEM results showed that the interaction existed between ceria and titanium oxide and addition of ceria promoted the reducibility of platinum oxide and TiO2 on the interface of platinum and TiO2 particles,which contributed to high activity of the ceria modified catalysts. The results indicated that ceria-modified 3DOM Pt/TiO2 was a promising candidate of fuel cell oriented WGS catalyst. Three-dimensionally ordered macro-porous (3DOM) TiO2 and ceria-modified 3DOM TiO2 supported platinum catalysts were prepared with template and impregnation methods, and the resultant samples were characterized by scanning electron microscopy (SEM), X-ray diffractometer High-resolution transmission electron microscopy (HRTEM) and temperature programmed reduction (TPR) techniques. The catalytic performances of the platinum-based catalysts were investigated for water-gas shift (WGS) reaction in a wide temperature range (180-360 ° C) . The results showed that 3DOM Pt / TiO2 catalyst catalyst significantly better catalytic performance than the corresponding non-macroporous catalyst, due to the macro-porous structure favoring mass transfer. Addition of ceria into 3DOM Pt / TiO2 led to improvement of catalytic activity. TPR and HRTEM results showed that the interaction existed between ceria and titanium oxide and addition of ceria promoted the reducibility of platinum oxide and TiO2 on the interf ace of platinum and TiO2 particles, which contributed to high activity of the ceria modified catalysts. The results indicated that ceria-modified 3DOM Pt / TiO2 was a promising candidate of fuel cell oriented WGS catalyst.
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