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An electrostatic shielding-based coupled electrodialysis/electrodeionization process for removal of cobalt ions from aqueous solutions.

机译:基于静电屏蔽的耦合电渗析/电去离子工艺,用于从水溶液中去除钴离子。

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摘要

Electrode graphite powder beds were interposed between anode and cathode as intermediate electrodes inside an electrolytic setup. Due to electrostatic shielding they eliminate the applied electric field and therefore stop the electromigration of ions within their mass. It was found that the intermediate electrodes can act as ionic current sinks-ion concentrating compartments and therefore cause a new type of a membrane-less electrodialysis/electrodeionization process. The proposed electrostatic shielding based coupled electrodialysis/electrodeionization treatment of synthetic cobalt plating rinse water containing 300mgL~(-1) Co~(2+) ions produced a low-volume Co~(2+) concentrate which could be recycled to the electroplating bath for reuse and a diluate containing 43.8mgL~(-1) Co~(2+) ions. The diluate was then used as feed in the subsequent electrostatic shielding electrodeionization process which produced pure water with a cobalt ion concentration less than 0.1mgL~(-1). The current efficiency was 22-29%, the enrichment factor 13.5-26.1, the current density 20-40Am~(-2) and the flow rate 1.54 × 10~(-4)-4.06 × 10~(-4)dm3 s~(-1). The proposed membrane free electrostatic shielding electrodialysis/electrodeionization process could be developed into a new alternative electrochemical method of cobalt or other heavy metal removal and water purification and recycling from industrial effluents laden with heavy metals.
机译:电极石墨粉床置于阳极和阴极之间,作为电解装置内部的中间电极。由于静电屏蔽,它们消除了施加的电场,因此阻止了离子在其质量范围内的电迁移。已经发现,中间电极可以充当离子电流吸收器-离子浓缩室,并因此引起新型的无膜电渗析/电去离子过程。提议的基于静电屏蔽的含300mgL〜(-1)Co〜(2+)离子的合成钴电镀漂洗水的电渗析/电去离子耦合处理产生了少量的Co〜(2+)精矿,可将其再循环到电镀浴中用于再利用和含有43.8mgL〜(-1)Co〜(2+)离子的稀释液。然后将稀释液用作随后的静电屏蔽电去离子工艺的进料,该工艺可产生钴离子浓度小于0.1mgL〜(-1)的纯净水。电流效率为22-29%,富集系数为13.5-26.1,电流密度为20-40Am〜(-2),流速为1.54×10〜(-4)-4.06×10〜(-4)dm3 s 〜(-1)。拟议中的无膜静电屏蔽电渗析/电去离子工艺可以发展为一种新的替代性电化学方法,用于去除钴或其他重金属,以及从含重金属的工业废水中进行水净化和再循环。

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