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Catalytic behaviors of manganese oxides in electro-assisted catalytic air oxidation reaction: Influence of structural properties

机译:锰氧化物在电助催化空气氧化反应中的催化行为:结构性能的影响

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The electro-assisted catalytic we air oxidation (ECWAO) process is effective for pollutants removal, by taking advantage of an anodic electric field to activate O-2 on a catalyst surface. Herein, three different manganese oxides, including MnO2, Mn3O4 and MnO, are fabricated on graphite felt (GF) support to serve as the catalysts of ECWAO reaction. Structural properties of these manganese oxides are analyzed, and their catalytic behaviors in ECWAO reaction are investigated with bisphenol A as a probe pollutant. The manganese centers on the surface of manganese oxides are found to be present in multi-valence states, favoring the formation of chemisorbed oxygen species which are responsible for pollutants oxidation in the ECWAO process. Therefore, the manganese oxides demonstrate good and stable activity for catalytic oxidation of bisphenol A under room condition. The sequence of their catalytic activities is as follows: Mn3O4 > MnO > MnO2, depending on their low-temperature reducibility and oxygen mobility in them. These results illustrate a guideline to the design of highly active manganese oxide catalysts for the ECWAO reaction.
机译:电助催化空气氧化(ECWAO)工艺通过利用阳极电场活化催化剂表面的O-2可以有效去除污染物。在此,在石墨毡(GF)载体上制备了三种不同的锰氧化物,包括MnO 2,Mn 3 O 4和MnO,以用作ECWAO反应的催化剂。分析了这些锰氧化物的结构性质,并以双酚A为探针污染物研究了它们在ECWAO反应中的催化行为。发现锰氧化物表面上的锰中心以多价态存在,这有利于形成化学吸附的氧,这是造成ECWAO过程中污染物氧化的原因。因此,锰氧化物在室温下对双酚A的催化氧化表现出良好和稳定的活性。它们的催化活性的顺序如下:Mn3O4> MnO> MnO2,取决于它们的低温还原性和其中的氧迁移率。这些结果说明了用于ECWAO反应的高活性氧化锰催化剂设计的指南。

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