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首页> 外文期刊>Water, air and soil pollution >Improvement of Arsenic Electro-Removal from Underground Water by Lowering the Interference of other Ions
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Improvement of Arsenic Electro-Removal from Underground Water by Lowering the Interference of other Ions

机译:通过降低其他离子的干扰来改善地下水中砷的去除

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摘要

Electrocoagulation (EC) has been evaluated as a treatment technology for arsenic (As) removal. Experiments were developed in an electrochemical reactor with three parallel iron plates. Current densities of 15, 30, and 45 A m~(-2) were used to treat model water and 45 A m~(-2) to treat underground water (GW). For both types of water, the EC process was able to decrease the residual arsenic concentration to less than 10μg L~(-1). However, the treatment time for As removal from GW was higher. This phenomenon was attributed to the competition of dissolved species present in GW such as silica and calcium with arsenic for the adsorption sites on the ferric oxyhydroxides flocs generated during the EC process. A procedure is proposed to reduce such interference by the addition of a silica adsorption inhibitor compound into the GW achieving a reduction in the process time. The adsorption of arsenic species over adsorbent was found to follow Lagergren adsorption model.
机译:电凝(EC)已被评估为去除砷(As)的一种处理技术。在具有三个平行铁板的电化学反应器中进行了实验。使用15、30和45 A m〜(-2)的电流密度处理模型水,使用45 A m〜(-2)的电流密度处理地下水(GW)。对于这两种类型的水,EC工艺都能将残留砷浓度降低到小于10μgL〜(-1)。但是,从GW去除As的处理时间较长。该现象归因于GW中存在的溶解物质(例如二氧化硅和钙)与砷竞争EC过程中生成的羟基氧化铁絮凝物的吸附位点。提出了一种通过将二氧化硅吸附抑制剂化合物添加到GW中来减少这种干扰的方法,从而减少了处理时间。发现砷在吸附剂上的吸附遵循Lagergren吸附模型。

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