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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Surface acidic and redox properties of V-Ag-Ni-O catalysts for the selective oxidation of toluene to benzaldehyde
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Surface acidic and redox properties of V-Ag-Ni-O catalysts for the selective oxidation of toluene to benzaldehyde

机译:V-Ag-Ni-O催化剂用于甲苯选择性氧化为苯甲醛的表面酸性和氧化还原特性

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V-Ag-O and V-Ag-Ni-O complex oxides were found to exhibit good catalytic reactivity for the selective oxidation of toluene to benzaldehyde.In order to understand the effects of each metal in the two catalysts,a series of single and complex oxides were prepared including V2O5,Ag2O,NiO,V-Ni-O,Ag-Ni-O,V-Ag-O and V-Ag-Ni-O with the previously optimized compositions for the binary and tertiary oxides.Data from the X-ray diffraction (XRD),infrared spectroscopy and laser Raman spectroscopy showed the formation of complex oxides with phases of silver and nickel vanadates as well as the broadening and red shift of the band of V=O bonds,suggesting the formation of V-O-Ag and V-O-Ni bonds and the increased redox ability of vanadium species.The results from temperature programmed reduction (TPR) and the combined technique of TPR-XRD revealed that the addition of Ag and Ni promoted the reduction of vanadium species in the complex catalysts.Microcalorimetric adsorption of ammonia and the probe reaction of isopropanol in air demonstrated that the surface acidity was greatly decreased while the redox cycles of vanadium sites were significantly enhanced upon the addition of Ag and Ni.The reactivity for the selective oxidation of toluene was evaluated by using a fixed-bed microreactor,and was correlated with the surface acidity and redox property of the catalysts.Silver seemed to be a special promoter that not only decreased the surface acidity but also enhanced the redox cycles of vanadium sites,leading to the increased conversion of toluene and the selectivity to benzaldehyde.Such effect was even more pronounced when Ag and Ni were added simultaneously.Accordingly,the V-Ag-Ni-O catalyst studied in this work exhibited excellent performance for the selective oxidation of toluene to benzaldehyde.The conversion of toluene was found to be 8% with 95% selectivity to benzaldehyde on the V-Ag-Ni-O at 613 K.
机译:发现V-Ag-O和V-Ag-Ni-O复合氧化物对甲苯选择性氧化为苯甲醛具有良好的催化反应活性。为了解每种金属在两种催化剂中的作用,一系列单制备了复杂的氧化物,包括V2O5,Ag2O,NiO,V-Ni-O,Ag-Ni-O,V-Ag-O和V-Ag-Ni-O,并预先优化了二元和三元氧化物的组成。 X射线衍射(XRD),红外光谱和激光拉曼光谱表明形成了具有钒酸银和镍相的复合氧化物,以及V = O键的谱带变宽和红移,表明VO的形成-Ag和VO-Ni键和钒物种增强的氧化还原能力。程序升温还原(TPR)和TPR-XRD结合技术的结果表明,添加Ag和Ni可以促进络合物中钒物种的还原氨的微热量吸附与探针反应。空气中异丙醇的离子分析表明,加入Ag和Ni后表面酸度大大降低,钒位的氧化还原循环明显增强。用固定床微反应器评价甲苯选择性氧化的反应活性,银似乎是一种特殊的促进剂,不仅降低了表面酸度,而且增强了钒位的氧化还原循环,从而提高了甲苯的转化率和对苯甲醛的选择性。当同时添加Ag和Ni时,这种效果更加明显。因此,本研究中研究的V-Ag-Ni-O催化剂表现出优异的将甲苯选择性氧化为苯甲醛的性能。甲苯的转化率为8 %在613 K下对V-Ag-Ni-O具有95%的苯甲醛选择性。

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