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首页> 外文期刊>Chemosphere >Treatment of low-level Cu(Ⅱ) wastewater and regeneration through a novel capacitive deionization-electrodeionization (CDI-EDI) technology
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Treatment of low-level Cu(Ⅱ) wastewater and regeneration through a novel capacitive deionization-electrodeionization (CDI-EDI) technology

机译:新型电容性去离子-电去离子(CDI-EDI)技术处理低浓度铜(Ⅱ)废水并再生

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It was difficult for mature technologies to manage the low-level heavy metal wastewater due to low efficiency, secondary pollution and difficult enrichment. In this study, a novel capacitive deionization-electrodeionization (CDI-EDI) technology was developed through coordination mechanism of electro-migration, electro-adsorption and ion exchange. Based on this technique, the low-content heavy metal ions in high-salinity wastewater could be removed efficiently. Moreover, a higher electro-adsorption CDI electrode was applied in the CDI-EDI stack. EDI device was optimized by decreasing ion exchange membranes from 4 to 2, thus reduced the stack cost. Based on the CDI-EDI stack, the simulated Cu(II) wastewater (C-0 = 42.9 mg/L) was treated, and its average removal rate in 1st cycle cathode- and anode-effluent was 95.7% and 87.6%, respectively, under optimal direct current (DC) of 1.5 mA for 1.5 min, followed by electroregeneration of resin and electrode. Besides, the actual electroplating wastewater containing Ni(II) (389.4 mg/L) was treated via this device after precipitation to verify its feasibility. The results indicated that Ni(II) in the anode- and cathode-compartments were removed by 1.61 mg/L and 2.01 mg/L, respectively, only via one-stage CDI-EDI device under the operating voltage (0.10-0.20 V) and direct current (2.0-4.0 mA). It was possible to improve desalination efficiency of low-concentration heavy metal using tandem-type multistage devices. The CDI-EDI technique could not only ensure stable effluent and lower regenerations cost, but also enrich heavy metal from regeneration fluid to achieve resource recovery. This study would have obvious implications in treatment of low-content and salt-containing heavy metal wastewater with high efficiency and low energy consumption. (C) 2018 Elsevier Ltd. All rights reserved.
机译:由于效率低,二次污染和富集困难,成熟的技术难以管理低含量的重金属废水。在这项研究中,通过电迁移,电吸附和离子交换的协调机制,开发了一种新颖的电容去离子-电去离子(CDI-EDI)技术。基于该技术,可有效去除高盐度废水中的低含量重金属离子。此外,在CDI-EDI堆栈中应用了更高的电吸附CDI电极。通过将离子交换膜从4减少到2来优化EDI设备,从而降低了堆叠成本。基于CDI-EDI堆栈,对模拟的Cu(II)废水(C-0 = 42.9 mg / L)进行处理,其在第一循环阴极和阳极废水中的平均去除率分别为95.7%和87.6%。 ,在1.5 mA的最佳直流电(DC)下1.5分钟,然后进行树脂和电极的电再生。此外,沉淀后通过该装置处理了实际含镍(II)(389.4 mg / L)的电镀废水,以验证其可行性。结果表明,在工作电压(0.10-0.20 V)下,仅通过一级CDI-EDI装置,阳极室和阴极室中的Ni(II)分别去除了1.61 mg / L和2.01 mg / L。和直流电(2.0-4.0 mA)。使用串联型多级装置可以提高低浓度重金属的脱盐效率。 CDI-EDI技术不仅可以确保废水稳定并降低再生成本,还可以从再生流体中富集重金属以实现资源回收。这项研究对高效低能耗的低含量含盐重金属废水的处理具有明显的意义。 (C)2018 Elsevier Ltd.保留所有权利。

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