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Phenyl VOCs catalytic combustion on supported CoMn/AC oxide catalyst

机译:负载型CoMn / AC氧化物催化剂上的苯基VOCs催化燃烧

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Supported CoMn/AC composite oxide catalysts were prepared by a typical impregnation method at different calcination temperatures. The prepared CoMn/AC catalysts were characterized, and the catalytic activity of the prepared supported CoMn/AC oxide catalysts was also investigated by the catalytic combustion of phenyl volatile organic compounds (VOCs) (benzene, toluene, and ethylbenzene). XRD and XPS results indicated that MnCo2O4 and CoMn2O4 were the main crystal phase species in the prepared supported CoMn/AC oxide catalysts. The active components were observed to be highly dispersed and had small crystal sizes. The toluene catalytic combustion results demonstrated that the CAT350 catalyst had higher toluene catalytic combustion activity than the CTA250, CAT300, and CAT400 catalysts. The toluene catalytic combustion conversion of the CAT350 catalyst exceeded 93.5% at 235 degrees C, with a decreased toluene concentration in air of less than 130 ppm at 250 degrees C. The order of toluene catalytic activity of the supported CoMn/AC oxide catalysts was as follows: CAT250 < CAT300 approximate to CAT400 < CAT350. The catalytic combustion activity and stability of the CAT350 catalyst also increased with the increase in reaction temperature. The catalytic activity of the CAT350 catalyst was investigated to bring about the complete oxidation of benzene, ethylbenzene, and toluene. The combustibility of phenyl VOCs on the CAT350 catalyst was observed to follow the order benzene < ethylbenzene < toluene. Therefore, the differences in the phenyl VOC catalytic combustion performances of the supported CoMn/AC composite oxide catalysts can be attributed to the different physical chemistry properties of the phenyl VOC molecules and the catalyst. (C) 2014 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:通过典型的浸渍方法,在不同的煅烧温度下制备了负载型CoMn / AC复合氧化物催化剂。对制备的CoMn / AC催化剂进行了表征,并通过苯挥发性有机化合物(VOC)(苯,甲苯和乙苯)的催化燃烧研究了制备的负载型CoMn / AC氧化物催化剂的催化活性。 XRD和XPS结果表明,MnCo2O4和CoMn2O4是所制备的负载型CoMn / AC氧化物催化剂的主要晶相。观察到活性组分高度分散并且具有小的晶体尺寸。甲苯催化燃烧结果表明,CAT350催化剂比CTA250,CAT300和CAT400催化剂具有更高的甲苯催化燃烧活性。 CAT350催化剂在235摄氏度时的甲苯催化燃烧转化率超过93.5%,空气中甲苯的降低浓度在250摄氏度时小于130 ppm。负载型CoMn / AC氧化物催化剂的甲苯催化活性的顺序为如下所示:CAT250

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