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Removal and Oxidation of Arsenic from Aqueous Solution by Biochar Impregnated with Fe-Mn Oxides

机译:含铁锰氧化物的生物炭脱除并氧化水溶液中的砷

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We explored the preparation of Fe-Mn oxide-biochar composites and applied them for the removal of arsenic (As) from aqueous solutions. All composites exhibited high As removal efficiencies that increased with increasing pH within the investigated range (pH 3-7). According to the equation fitting for adsorption processes, F3M1BC18 (biochar:FeSO4:KMnO4, the weight ratios of 18:3:1) had the greatest sorption ability (Q(m)=8.80mgg(-1)), and the sorption process of F3M1BC18 was well fitted with Freundlich isotherm. In addition, FTIR and XPS analyses indicated that Fe oxides and Mn oxide particles on the outer sphere resulted in more oxidation of As(III) to As(V). The best-performing composite was characterized before and after adsorption using a range of instrumental techniques, which better identify the properties of F3M1BC18. Moreover, the physical properties, composition, and structures of the synthesized composites were investigated, and the As removal mechanism involving surface adsorption/oxidation was proposed with the high performance of Fe-Mn oxide-impregnated biochars, suggesting that these materials are well-suited for efficient water decontamination.
机译:我们探索了Fe-Mn氧化物-生物炭复合材料的制备方法,并将其用于从水溶液中去除砷(As)。所有复合材料均表现出较高的As去除效率,并且在研究范围内(pH 3-7)随pH值的增加而增加。根据吸附过程的方程拟合,F3M1BC18(生物炭:FeSO4:KMnO4,重量比为18:3:1)具有最大的吸附能力(Q(m)= 8.80mgg(-1)),且吸附过程F3M1BC18的F3非常适合Freundlich等温线。此外,FTIR和XPS分析表明,外球上的Fe氧化物和Mn氧化物颗粒导致As(III)进一步氧化为As(V)。在吸附前后,使用一系列仪器技术对性能最佳的复合材料进行了表征,这些技术可以更好地识别F3M1BC18的特性。此外,对合成复合材料的物理性能,组成和结构进行了研究,并提出了具有Fe-Mn氧化物浸渍生物炭的高性能,涉及表面吸附/氧化的As去除机理,表明这些材料非常适合。用于有效的水净化。

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