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Rod-like,hexagonal and fiber-like SBA-15 mesoporous silicas were synthesized to support MnOx for toluene oxidation.This study showed that the morphology of the supports greatly influenced the catalytic activity in toluene oxidation.MnOx supported on rod-like SBA-15 (R-SBA-15) displayed the best catalytic activity and the conversion at 230C reached more than 90%,which was higher than the other two catalysts.MnOx species consisted of coexisting MnO2 and Mn2O3 on the three kinds of SBA-15 samples.Large amounts of Mn2O3 species were formed on the surface and high oxygen mobility was obtained on MnOx supported on R-SBA-15,according to the H2 temperature programmed reduction (H2-TPR) and X-ray photoelectron spectroscopy (XPS) results.The Mn/R-SBA-15 catalyst with greater amounts of Mn2O3 species possessed a large amount of surface lattice oxygen,which accelerated the catalytic reaction rate.Therefore,the surface lattice oxygen and high oxygen mobility were critical factors on the catalytic activity of the Mn/R-SBA-15 catalyst.