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首页> 外文期刊>Separation and Purification Technology >Phosphate removal during Fe(II) oxidation in the presence of Cu(II): Characteristics and application for electro-plating wastewater treatment
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Phosphate removal during Fe(II) oxidation in the presence of Cu(II): Characteristics and application for electro-plating wastewater treatment

机译:铜(II)存在下Fe(II)氧化过程中的磷酸盐去除:特征和在电镀废水处理中的应用

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This study investigated the potential contribution of co-present Cu(II) on the phosphate removal by the addition of Fe(II), and compare Fe(II) with conventional lime dosing in phosphate removal from real-plating wastewater originally containing Cu(II). Though the phosphate removal during Fe(II) oxidation by DO was notable, the co-present Cu(II) remarkably promoted the phosphate removal by adding Fe(II). The process of phosphate removal during Fe(II) oxidation was affected by DO, [Fe(II)]_o and pH, respectively. The catalytic effect of Cu(II) as little as 0.5 mg/L significantly weakened the suppressed effect of the above mentioned factors on phosphate precipitation. Such enhanced phosphate removal was considered due to the facilitated generation of Fe(III) through catalytic oxidation of Fe(II) in the presence of Cu(II). For the real electro-plating wastewater, in contrast with lime, the process of phosphate removal by dosing Fe(II) combined with the original Cu(II) showed efficient performance, produced less sludge and demanded lower economic cost. These results announced that in the presence of co-existing DO and Cu(II) the Fe(II) may have application in the electro-plating wastewater treatment and important implication for its utilization.
机译:这项研究调查了共存的Cu(II)对通过添加Fe(II)去除磷酸盐的潜在贡献,并将Fe(II)与传统的石灰计量法从最初含Cu(II)的实际电镀废水中去除磷酸盐进行了比较。 )。尽管通过DO氧化Fe(II)期间的磷酸盐去除效果显着,但共存的Cu(II)通过添加Fe(II)显着促进了磷酸盐去除。 Fe(II)氧化过程中磷酸盐的去除过程分别受DO,[Fe(II)] _ o和pH的影响。低至0.5 mg / L的Cu(II)的催化作用显着削弱了上述因素对磷酸盐沉淀的抑制作用。由于在Cu(II)存在下通过催化氧化Fe(II)而促进了Fe(III)的生成,因此认为这种磷酸盐去除的增加。对于真正的电镀废水,与石灰相比,通过添加Fe(II)和原始Cu(II)来去除磷酸盐的过程显示出高效的性能,产生的污泥更少,并要求较低的经济成本。这些结果表明,在同时存在DO和Cu(II)的情况下,Fe(II)可能在电镀废水处理中具有应用,并对其利用具有重要意义。

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