Highly effective self-propagating synthesis of CeO2-doped MnO2 catalysts for toluene catalytic combustion

2017 
Abstract Using a facile new synthesis method, the fabrication of cerium oxide doped birnessite MnO 2 (δ-MnO 2 ) catalysts has been operated, for the toluene catalytic combustion. These samples were investigated by XRD, Raman, TEM, BET, H 2 -TPR and XPS techniques and their catalytic activities were investigated and compared. The catalytic combustion of toluene was investigated as the model reaction for VOCs abatement. The several CeO 2 /MnO 2 based nano composites were accomplished via controlling the molar proportion of potassium permanganate and cerium acetate raw materials. The subtle CeO 2 doped δ-MnO 2 catalyst displayed better reducibility at lower reduction temperature, with the higher Mn 4+ /Mn 3+ ratio, which converts completely the 1000 ppm toluene to CO 2 and H 2 O at 318 °C and its T 90 is 277 °C. The excellent catalytic performance of Mn12Ce1O x catalyst might be resulted from the synergistic effect between the highly dispersed CeO 2 nanoparticles and the δ-MnO 2 substrate at their interface. These new observations provide a new perspective on the design of the high activity catalyst for decomposing the volatile organic compounds (VOCs abatement).
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