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Flow velocity and cell pair number effect on current efficiency in plating wastewater treatment through electrodialysis

机译:电渗析电镀废水处理电流效率的流速和细胞对数

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摘要

Electrodialysis has been used for treating toxic substances such as heavy metals and minimizing secondary environmental pollution problems effectively. However, electrodialysis depends on the operating parameters as well as fluid dynamics and electrical properties. This study provides design elements for the treatment of heavy metal-containing wastewater by electrodialysis. We found that the limiting current density (LCD) is proportional but not completely linear to the diluate concentration over a threshold value. In contrast, it is linear to the linear flow velocity for the whole range. As the number of cell pairs increases, because linear flow velocity and LCD increase, the removal efficiency of heavy metals also increases. Therefore, for highly concentrated wastewater, increasing the linear flow velocity, the applied voltage, and the number of cell pairs can effectively improve removal efficiency. It was found that the current efficiency is as low as 17% when the removal efficiency of heavy metals exceeds 95%. Thus, it is necessary to select an operating range that optimizes the operating and initial investment costs for the effective removal of heavy metals using electrodialysis.
机译:ElectrodiaLysis已用于治疗诸如重金属的有毒物质,有效地减少二次环境污染问题。然而,电渗析取决于操作参数以及流体动力学和电性能。本研究提供了通过电渗析处理含重金属废水的设计元素。我们发现限制电流密度(LCD)比阈值在稀释浓度上比例但不是完全线性的。相反,它是整个范围的线性流速线性。随着细胞对的数量增加,因为线性流速和LCD增加,重金属的去除效率也增加。因此,对于高度浓缩的废水,增加线性流速,施加的电压和细胞对的数量可以有效地提高去除效率。发现当较重金属的去除效率超过95%时,电流效率低至17%。因此,有必要选择优化使用电渗析有效去除重金属的操作和初始投资成本的操作范围。

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