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    水热诱导Mo2C/AC表面重构促进NO2低温高效催化转化

    Hydrothermal induced surface reconstruction of Mo2C/AC for enhanced low-temperature catalytic conversion of NO2

    • 摘要: 为提升钼炉转化剂在低温反应条件下的活性,文中对浸渍-碳热还原制备Mo2C/AC催化剂的浸渍过程进行水热强化,通过N2物理吸附-脱附、拉曼光谱、X射线衍射、X射线光电子能谱对催化剂结构进行表征,深入探讨水热强化对催化剂结构及其在NO2制NO反应中的催化性能影响机制。结果表明,经过水热处理后,样品比表面积均有不同程度减小,同时平均孔径有所增大。水热处理使催化剂表面发生重构,当水热处理温度控制在120 ℃时,催化剂缺陷程度最低,表面Mo含量与N含量达到最大值,尤其是有利于NO2吸附的吡啶氮含量明显高于其他样品。反应温度为50 ℃时,该催化剂对NO2的转化率达到100%。

       

      Abstract: To enhance the activity of molybdenum furnace conversion agents under low-temperature reaction conditions, this study optimized the preparation process of Mo2C/AC catalysts via impregnation-carbothermal reduction by employing hydrothermal strengthening. The catalysts’ structures were characterized by N2 physisorption-desorption, Raman spectroscopy, X-ray diffraction, and X-ray photoelectron spectroscopy. The effects of hydrothermal strengthening on the catalyst structure and its catalytic performance in the conversion of NO2 to NO were thoroughly investigated. The results indicated that after hydrothermal treatment, the specific surface area of the samples decreased to varying degrees, while the average pore size increased. The hydrothermal treatment induced surface reconstruction of the catalyst, and when the hydrothermal treatment temperature was controlled at 120 ℃, the catalyst had the lowest degree of defects, and the Mo content and N content on the surface reached the maximum value. Notably, the pyridinic nitrogen content, which is favorable for NO2 adsorption, was significantly higher than that of other samples. At a reaction temperature of 50 ℃, the NO2 conversion rate reached 100%.

       

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