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Macroporous SmMn2O5 mullite for NOx-assisted soot combustion

机译:大孔SmMn2O5 NOx-assisted烟尘的莫来石燃烧

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摘要

A series of mullite SmMn2O5 oxides were prepared by citric acid (CA), hydrothermal (HT) and co-precipitation (CP) and combustion of ethylene glycol and methanol solutions (EG&M) methods, and tested for NOx-assisted soot combustion. The catalyst performance tests were conducted under "loose" contact conditions and the physical and chemical properties characterized by XRD, FTIR, BET, SEM, XPS, and O-2-TPD and H-2-TPR measurements. The SmMn2O5-EG&M catalyst possessed a distinct morphology with slabs separated by interconnected macropores, and exhibited the overall highest catalytic activity for soot combustion. The corresponding T-10, T-50, and T-90 were 283 degrees C, 368 degrees C, and 420 degrees C, respectively, and the CO2 selectivity was 99.6%. The soot combustion activation energy for the SmMn2O5-EG&M catalyst is 65 kJ mol(-1). O-2-TPD and H-2-TPR measurements demonstrated higher mobility and better reducibility of surface adsorbed oxygen for the EG&M sample. The soot combustion is greatly accelerated by the NO2-assisted mechanism under a NO + O-2 atmosphere and further enhanced by the interconnected macropores of the catalyst, facilitating an intimate contact between the soot and the catalyst. Our study reveals that SmMn2O5 mullite is an effective catalyst for NOx-assisted soot combustion.
机译:制备了一系列的莫来石SmMn2O5氧化物柠檬酸(CA),热液(HT)和共同沉淀(CP)和乙烯的燃烧乙二醇和甲醇的解决方案(EG&M)方法,检测NOx-assisted燃烧烟尘。催化剂进行了性能测试“宽松”的条件和物理接触化学性质的特征x射线衍射,红外光谱,打赌,SEM, XPS, O-2-TPD H-2-TPR测量。一个明显的形态学与板隔开相互联系的大孔隙,并展出整体烟尘的催化活性最高燃烧。t - 90是283度,368度,420摄氏度,分别和二氧化碳选择性是99.6%。SmMn2O5-EG&M催化剂是65 kJ摩尔(1)。O-2-TPD和H-2-TPR测量更高的灵活性和更好的还原性EG&M样品表面吸附氧气。烟尘燃烧大大地加速了NO2-assisted机制下没有+ 0 2大气和进一步提高相互关联的大孔隙的催化剂,促进之间的亲密接触烟尘和催化剂。NOx-assisted莫来石是一种有效的催化剂燃烧烟尘。

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