Meng Jie, Fang Fan, Feng Nengjie, Wan Hui, Guan Guofeng
State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Jiangsu National Synergetic Innovation Center for AdvancedMaterials, Jiangsu Collaborative Innovation Center for Advanced Inorganic FunctionComposites, Nanjing Tech University Nanjing 210009 P. R. China
RSC Adv. 2020 Jan 14;10(5):2472-2482. doi: 10.1039/c9ra08157g.
To improve the catalytic activity when utilizing metal oxides for the combustion of VOCs, Mn/Al-SBA-15 catalysts have been successfully synthesized through an emerging wetness impregnation technique involving Mn(NO) on Al-SBA-15, which has been directly prepared from attapulgite by a hydrothermal method. Compared to Mn/SBA-15, which is prepared with TEOS as its silicon source, all the as-prepared Mn/Al-SBA-15 catalysts demonstrated enhanced catalytic performance in the oxidation of toluene. From this research, the 8% Mn/Al-SBA-15 catalyst presented the best catalytic performance, due to the high efficiency resulting from the high chemical valence of Mn. When the concentration of toluene was 2000 ppm, and the space velocity was 60 000 mL (g h), 8% Mn/Al-SBA-15 could effectively reduce the and values of toluene to 201 and 278 °C, respectively; while the 8% Mn/SBA-15 catalyst could reduce the and values of toluene to 223 and 298 °C, respectively. A systematic investigation has been conducted to reveal the synergistic effects of Al doping and manganese loading on the enhanced catalytic performance. The experiments showed impressive results, demonstrating that Al doping can not only increase the surface acidity of SBA-15, but it can also be beneficial for achieving a uniform dispersion of MnO on the surface and in the pores of Al-SBA-15, resulting in the enhancement of the catalytic performance.
为了提高利用金属氧化物燃烧挥发性有机化合物(VOCs)时的催化活性,通过一种新兴的湿浸渍技术成功合成了Mn/Al-SBA-15催化剂,该技术涉及在Al-SBA-15上负载Mn(NO),而Al-SBA-15是由凹凸棒石通过水热法直接制备的。与以TEOS作为硅源制备的Mn/SBA-15相比,所有制备的Mn/Al-SBA-15催化剂在甲苯氧化中均表现出增强的催化性能。从这项研究来看,8% Mn/Al-SBA-15催化剂表现出最佳的催化性能,这归因于Mn的高价态所带来的高效率。当甲苯浓度为2000 ppm且空速为60 000 mL/(g h)时,8% Mn/Al-SBA-15可分别有效地将甲苯的T50和T90值降至201和278 °C;而8% Mn/SBA-15催化剂可分别将甲苯的T50和T90值降至223和298 °C。已进行了系统研究以揭示Al掺杂和锰负载量对增强催化性能的协同作用。实验显示出令人印象深刻的结果,表明Al掺杂不仅可以增加SBA-15的表面酸度,而且有利于MnO在Al-SBA-15表面和孔中实现均匀分散,从而提高催化性能。