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Removal of hydrated silica, fluoride and arsenic from groundwater by electrocoagulation using a continuous reactor with a twelve-cell stack

机译:使用具有十二个电池堆的连续反应器通过电凝法从地下水中去除水合二氧化硅,氟化物和砷

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摘要

The simultaneous removal of hydrated silica, fluoride and arsenic from deep well water (hydrated silica 72 mg L-1, fluoride 4.4 mg L-1, arsenic 106.2 mu g L-1, sulfate 50 mg L-1, phosphate 0.99 mg L-1, pH = 8.2 and conductivity 659 mu S cm(-1)) by electrocoagulation (EC) was investigated. The EC was performed in a continuous electrochemical reactor using aluminum plates as sacrificial anodes coupled directly to a jar test device. The effect of current density (4 = j = 8 mA cm(-2)) and mean linear flow rates in the EC reactor (0.057 = u = 0.57 cm s(-1)) on the hydrated silica, fluoride, and arsenic removal efficiencies was analyzed. The abatement of hydrated silica was obtained at 8 mA cm(-2) and 0.057 cm s(-1), while the residual concentrations of F- and As after the same electrolysis were 0.19 mg L-1 and 9.8 mu g L-1, satisfying the WHO guidelines for F- (= 1.5 mg L-1) and As (= 10 mu g L-1). Spectroscopic analyses on aluminum flocs revealed that they are predominantly composed of aluminum silicates. Arsenates adsorb on aluminum flocs and fluoride replaces a hydroxyl group from aluminum aggregates. (C) 2018 Elsevier Ltd. All rights reserved.
机译:从深井水中同时去除水合二氧化硅,氟化物和砷(水合二氧化硅72 mg L-1,氟化物4.4 mg L-1,砷106.2μg L-1,硫酸盐50 mg L-1,磷酸盐0.99 mg L-在图1中,研究了电凝(EC)的pH = 8.2和电导率659μS cm(-1))。 EC在连续电化学反应器中进行,使用铝板作为直接耦合到广口瓶测试设备的牺牲阳极。电流密度(4 <= j <= 8 mA cm(-2))和EC反应器中的平均线性流速(0.057 <= u <= 0.57 cm s(-1))对水合二氧化硅,氟化物的影响,并分析了除砷效率。在8 mA cm(-2)和0.057 cm s(-1)时可以减少水合二氧化硅,而相同电解后F-和As的残留浓度分别为0.19 mg L-1和9.8μg L-1 ,符合WHO关于F-(<= 1.5 mg L-1)和As(<= 10μgL-1)的指南。对铝絮状物的光谱分析表明,它们主要由硅酸铝组成。砷酸盐吸附在铝絮状物上,氟化物取代了铝聚集物中的羟基。 (C)2018 Elsevier Ltd.保留所有权利。

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  • 来源
    《Chemosphere》 |2018年第11期|149-155|共7页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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