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Arsenic removal from aqueous solution using ferrous based red mud sludge

机译:使用亚铁基赤泥污泥从水溶液中去除砷

摘要

Ferrous based red mud sludge (FRS) which combined the iron-arsenic co-precipitation and the high arsenic adsorption features was developed aimed at low arsenic water treatment in rural areas. Arsenic removal studies shown that FRS in dosage of 0.2 or 0.3 g/I can be used effectively to remove arsenic from aqueous solutions when initial As(V) concentration was 0.2 or 0.3 mg/I. Meanwhile, turbidity of supernatant in disturbing water was lower than 2 NTU after 24 h. The pH range (4.5-8.0) for FRS in effective arsenic removal was applicable in natural circumstance. Phosphate can greatly reduce the arsenic removal efficiency while the presence of carbonate had no significant effect on arsenic removal. Arsenic fractionation experiments showed that amorphous hydrous oxide-bound arsenic was the major components. When aqueous pH was decreased from 8.0 to 4.5, arsenic in FRS was not obviously released. The high arsenic uptake capability, good settlement performance and cost-effective characteristic of FRS make it potentially attractive material for the arsenic removal in rural areas. (C) 2009 Elsevier B.V. All rights reserved.
机译:结合铁-砷共沉淀和高砷吸附特性的亚铁基赤泥污泥(FRS)的开发旨在针对农村地区的低砷水处理。去除砷的研究表明,当初始As(V)浓度为0.2或0.3 mg / I时,FRS用量为0.2或0.3 g / I可以有效地从水溶液中去除砷。同时,扰动水中的上清液的浊度在24 h后低于2 NTU。有效去除砷的FRS的pH范围(4.5-8.0)适用于自然环境。磷酸盐会大大降低砷的去除效率,而碳酸盐的存在对砷的去除没有显着影响。砷分级分离实验表明,无定形水合氧化物是砷的主要成分。当水溶液的pH从8.0降低到4.5时,FRS中的砷没有明显释放。 FRS的高砷吸收能力,良好的沉降性能和具有成本效益的特性使其成为农村地区除砷的潜在诱人材料。 (C)2009 Elsevier B.V.保留所有权利。

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