首页> 外文期刊>Chemical engineering journal >Preparation of Si-Al/α-FeOOH catalyst from an iron-containing waste and surface-catalytic oxidation of methylene blue at neutral pH value in the presence of H2O2
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Preparation of Si-Al/α-FeOOH catalyst from an iron-containing waste and surface-catalytic oxidation of methylene blue at neutral pH value in the presence of H2O2

机译:由含铁废料制备Si-Al /α-FeO​​OH催化剂,在H2O2存在下,在中性pH值条件下亚甲基蓝的表面催化氧化

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The tested Si-Al/α-FeOOH composite was prepared by dissolution, precipitation and aging of a high iron-containing grinding wheel ash (GWA). The obtained Si-Al/a-FeOOH composite was characterized using X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS) and scanning electron microscope/ energy dispersive X-ray spectrometer (SEM/EDS) analyses. The characterized composite was then evaluated for the decolorization of methylene blue (MB) in the presence of H2O2 at various pH conditions. The extent of MB decolorization was characterized using UV-Vis spectra, total organic carbon (TOC) and Fourier transform infrared spectroscopy (FTIR). The surface-catalytic oxidation mechanism was discussed and the roles of silica and alumina were also evaluated through preparation of four kinds of catalysts from analytical reagents (ARs). The results showed that a-FeOOH (75.40 wt% Fe) was the predominate content in Si-Al/α-FeOOH composite with 2.26 wt% Si and 1.02 wt% Al. The Fenton-like process (Si-Al/ α-FeOOH composite combined with H2O2) can effectively oxidize MB at pH 6.46% and 72% of TOC removal can be achieved after 60 min catalytic oxidation. The surface-catalytic oxidation by Si-Al/α-FeO-OH/H2O2 may proceed mainly through a non-radical mechanism. The introduction of silica played an important role in the enhancement of the α-FeOOH adsorptive capacity by the inhibition of the formation of crystalline structure of FeOOH, and the introduction of alumina might enhance the a-FeOOH catalytic activity and also prevent the iron from leaching from Si-Al/α-FeOOH catalyst.
机译:通过高铁含量的砂轮灰(GWA)的溶解,沉淀和老化来制备被测试的Si-Al /α-FeO​​OH复合材料。使用X射线衍射(XRD),X射线光电子能谱(XPS)和扫描电子显微镜/能量色散X射线能谱仪(SEM / EDS)分析来表征所获得的Si-Al / a-FeOOH复合材料。然后在各种pH条件下,在H2O2存在的情况下,对表征的复合材料进行亚甲基蓝(MB)脱色的评估。 MB的脱色程度使用UV-Vis光谱,总有机碳(TOC)和傅里叶变换红外光谱(FTIR)进行表征。讨论了表面催化氧化机理,并通过分析试剂(ARs)制备了四种催化剂,评估了二氧化硅和氧化铝的作用。结果表明,α-FeO​​OH(Fe为75.40 wt%)是含2.26 wt%Si和1.02 wt%Al的Si-Al /α-FeO​​OH复合材料的主要含量。类Fenton工艺(Si-Al /α-FeO​​OH复合材料与H2O2结合)可在pH值为6.46%的条件下有效氧化MB,催化氧化60分钟后可实现TOC去除率达到72%。 Si-Al /α-FeO​​-OH/ H2O2的表面催化氧化反应可能主要通过非自由基机理进行。二氧化硅的引入通过抑制FeOOH的晶体结构的形成,在增强α-FeO​​OH的吸附能力方面起着重要作用,而氧化铝的引入可能会增强α-FeO​​OH的催化活性,并防止铁的浸出由Si-Al /α-FeO​​OH催化剂制得。

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