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Preparation et caracterisation des catalyseurs Rh/Al2O3 et Rh/ZnO-Al2O3

机译:Rh / Al2O3和Rh / ZnO-Al2O3催化剂的制备与表征

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A series of rhodium (1 and 5 wt%) deposited on alumina and alumina modified by Zn was prepared by impregnation of A12O3 and ZnO-A12O3 with two different precursors,Rh(NO3)_2·xH2O and RhCl_3,followed by calcination at 723 K,and characterized after reduction at different temperatures,in the range 500-800 °C.Catalysts were analysed by Hydrogen Chemisorption (Hc),Temperature-Programmed Reduction (TPR),Temperature-Programmed Desorption (TPD),X-ray diffraction (RDX),and Scanning Electron Microscopy methods.The results show that the metal dispersion depends strongly on the Zn/Rh atomic ratio and on the metal loading.The presence of Zn and high reduction temperature decrease the capacity to chemisorb hydrogen,whereas the metal particles' size increase is probably due to the sintering effect.Temperature-programmed studies (TPR) of catalysts show that the temperature of maximal reduction is lower with nitrate-prepared catalysts,which is explained by metal-support interactions.
机译:通过用两种不同的前体Rh(NO3)_2·xH2O和RhCl_3浸渍A12O3和ZnO-A12O3,制备一系列沉积在氧化铝和Zn改性的氧化铝上的铑(分别为1和5 wt%),然后在723 K下煅烧并在不同温度下还原后在500-800°C范围内进行表征。通过氢化学吸附(Hc),温度程序还原(TPR),温度程序解吸(TPD),X射线衍射(RDX)分析催化剂结果表明,金属的分散性强烈依赖于Zn / Rh原子比和金属负载量.Zn的存在和高还原温度降低了化学吸附氢的能力,而金属颗粒的催化剂的温度程序研究(TPR)表明,硝酸盐制备的催化剂的最大还原温度较低,这可以通过金属-载体相互作用来解释。

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