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首页> 外文期刊>Separation and Purification Technology >Simultaneous removal of Zn2+ and Mn2+ ions from synthetic and real smelting wastewater using electrocoagulation process: Influence of pulse current parameters and anions
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Simultaneous removal of Zn2+ and Mn2+ ions from synthetic and real smelting wastewater using electrocoagulation process: Influence of pulse current parameters and anions

机译:使用电凝处理同时除去合成和实际冶炼废水的Zn2 +和Mn2 +离子:脉冲电流参数和阴离子的影响

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In present work, alternating rectangular pulse electrocoagulation (ARP-EC) system was constructed to simultaneously remove zinc (Zn2+) and manganese (Mn2+) ions from synthetic and real high salinity smelting wastewater using hybrid Fe-Al electrodes. Effects parameters of reversal time ratio of anode material (T-Fe;(Al)), frequency (f), duty cycle (r), current density (j(avg)), initial pH (pH(i)) and anions concentration (Cl-, SO42- and their mass ratios) were examined to determine the optimal ARP-EC operation parameters. The results indicated that the anode reversal time ratios, frequency, current density, initial pH and Cl-ions concentration are conducive to the removal of two heavy metal ions. After 180 min treatment, almost all Zn2+ were removed in all experiments. However, high concentration of SO4-ions have an dramatically negative effect on Mn2+ removal due to the severe passivation of electrodes. Interestingly, moderate concentration of Cl-ions can decrease the negative effect passivation by dissolving passive film. The optimal parameters were obtained with anode reversal time ratio of 25s: 5s (Fe: Al), frequency of 5000 Hz, duty cycle of 40%, at a initial pH 7.0 and current density of 8 mA/cm2 (400 mA). Finally, real smelting wastewater was treated using ARP-EC under these optimum conditions (not alter pH; and anions concentration). The highest removal efficiency of Zn2+ and Mn2+ ions respectively reached 99.16% and 70.37% with an electrical energy consumption (EEC) of 18.3 kWh/m(3) and a dry sludge mass of 3.15 kg/m(3). (C) 2017 Elsevier B.V. All rights reserved.
机译:在目前的工作中,构建交替的矩形脉冲电凝(ARP-EC)系统以使用杂合FE-AL电极同时从合成和实际高盐度冶炼废水中除去锌(Zn2 +)和锰(MN2 +)离子。阳极材料逆转时间比的效果参数(T-Fe;(Al)),频率(F),占空比(R),电流密度(J(AVG)),初始pH(pH(i))和阴离子浓度检查(CL-,SO42-及其质量比)以确定最佳ARP-EC操作参数。结果表明,阳极反转时间比,频率,电流密度,初始pH和CL-离子浓度有利于去除两种重金属离子。在180分钟后,在所有实验中除去几乎所有Zn2 +。然而,由于电极严重钝化,高浓度的SO4-离子对MN2 +去除具有显着的阴性影响。有趣的是,中等浓度的Cl-离子可以通过溶解被动膜来降低负效应钝化。通过阳极反转时间比为25秒:5s(Fe:Al),5000Hz的频率,占空比为40%,在初始pH 7.0和电流密度为8mA / cm2(400mA)获得的最佳参数。最后,在这些最佳条件下使用ARP-EC治疗真正的冶炼废水(不改变pH;和阴离子浓度)。 Zn2 +和Mn2 +离子的最高去除效率分别达到99.16%和70.37%,电能消耗(EEC)为18.3千瓦时/ m(3),干污泥质量为3.15kg / m(3)。 (c)2017 Elsevier B.v.保留所有权利。

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