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Mechanochemical formation of highly active manganese species from OMS-2 and peroxymonosulfate for degradation of dyes in aqueous solution

机译:来自OMS-2高活性锰物种的机械化学形成,过氧键磺酸盐在水溶液中降解染料的降解

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The performance and mechanism of mechanochemical activation of peroxymonosulfate (PMS) by cryptomelane-type manganese octahedral molecular sieve (OMS-2) prepared by a refluxing method for degradation of Acid Orange7 (AO7) have been demonstrated. Grinding of OMS-2 and PMS in presence of a small amount of H2O for a short time induced amuch higher AO7 degradation efficiency compared with the OMS-2+PMS system without pretreatment. Such degradation can also be efficiently performed by this system over a wide range of solution pH and for different organic dyes. For other manganese oxides such as OMS-2 prepared by a solvent-free method, amorphous manganese oxides, and -MnO2, with coexistence of Mn(III) and Mn(IV) species, great enhancement of catalytic activity was also observed. Characterization of the ground OMS-2 by X-ray diffraction (XRD) analysis, transmission electron microscopy (TEM), and X-ray photoelectron spectroscopy (XPS) suggested that, during grinding, low-valent manganese species are oxidized to Mn(IV) species, representing the main active species for AO7 degradation. The produced SO sub arrange=stack 4 Sup arrange=stackbold and HO/bold radicals from Mn(III) and the rest of the PMS also take part in the degradation reaction, although their contribution is limited. In addition, the influence of some key factors including the water content and time on the grinding and AO7 degradation was explored. The results of this study provide deep insight into mechanochemical activation of PMS with manganese oxides for enhanced degradation of pollutants in aqueous solution.
机译:已经证实了通过回流酸橙型锰杂交分子筛(OMS-2)通过回流酸橙7(AO7)的回流法制备的Croxymonsulfate(PMS)的性能和机制。与OMS-2 + PMS系统相比,在少量H2O的情况下,在没有预处理的情况下,在短时间内的H 2 O存在少量H 2 O的μS-2和PMS。这种劣化也可以通过该系统在各种溶液pH和不同的有机染料中有效地进行该系统。对于通过无溶剂方法制备的其他锰氧化物,例如通过无溶剂方法制备的,无定形锰氧化物和-MnO 2,具有Mn(III)和Mn(IV)物种的共存,催化活性的显着增强。通过X射线衍射(XRD)分析,透射电子显微镜(TEM)和X射线光电子谱(XPS)表征地面OMS-2,表明,在研磨期间,低价锰物种被氧化成Mn(IV )物种,代表AO7降解的主要活性物种。所产生的所以子排列=堆叠4 sup排列=堆栈&粗体&和ho& / bold&虽然它们的贡献是有限的,但来自Mn(III)的基团以及PM的其余部分也参与降解反应。此外,还探讨了包括水含量和研磨时间和AO7降解的一些关键因素的影响。该研究的结果提供了深入了解用氧化锰的PMS的机械化学活化,以提高水溶液中污染物的降解。

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