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Characteristics of heavy metal separation and determination of limiting current density in a pilot-scale electrodialysis process for plating wastewater treatment

机译:重金属分离特性及镀施废水处理中导尺寸电渗析工艺中限制电流密度的测定

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Recent development in industry has led to increased water usage, while intensifying water shortage. Electrodialysis has been proposed as a technique for minimizing the generation of secondary environmental pollution problems and effectively treating harmful substances such as heavy metals in industrial wastewater. As electrodialysis is affected by several factors, it is crucial to provide necessary information about the operating elements. This study investigates the effect of linear flow velocity on the removal of heavy metals in an electrodialysis pilot plant. The results of the experiment showed that increasing the linear flow velocity from 0.6 to 5.1 cm/min increased the voltage from 17.3 to 40 V. In addition, the limiting current density (LCD) showed a linear relationship with the linear flow velocity, increasing from 1.4 to 5.9 A/m~2 as the linear flow velocity increased proportionally in the same voltage range. The empirical correlation coefficients a and b for the mass transfer coefficient K, which can be expressed as a nonlinear function of the linear flow velocity, were estimated to be 1.8519 and 0.7016, respectively. In the batch operation, the ion-separation rate in the electrodialysis process was estimated with the shift order kinetics of the first-order and zero-order constants via regression analysis of experimental data. The ion separation rate in the diluate and the ion concentration rate in the concentrate decrease as the experiment number increase. This may be due to the reverse diffusion of ions transferring to the diluate owing to the high concentration of ions in the concentrate. Therefore, ion concentration in the concentrate has to be maintained at an appropriate level. Copper ions are deposited on the cathode electrode surface, although not uniformly.
机译:工业最近的发展导致了增加了水的使用量,同时加剧了水资源短缺。已经提出了电渗析作为最小化二次环境污染问题的产生,并有效地治疗工业废水中重金属等有效物质。随着电渗透受若干因素的影响,提供有关操作元素的必要信息至关重要。本研究研究了线性流速对电渗析中的重金属去除的影响。实验的结果表明,从0.6到5.1cm / min的线性流速增加到从17.3至40V的电压增加了电压。此外,限制电流密度(LCD)显示与线性流速的线性关系,从而增加当线性流速在相同的电压范围内比例增加,为1.4至5.9 A / m〜2。用于传质系数k的经验相关系数A和B,其可以表达为线性流速的非线性函数,估计为1.8519和0.7016。在批量操作中,通过对实验数据的回归分析估计了电渗析过程中的离子分离速率,并通过第一阶和零阶常数的换算动力学进行估算。随着实验号的增加,浓缩物中的离子分离率和浓缩物中的离子浓度降低。这可能是由于离子的反向扩散,由于浓缩物中的高浓度离子转移到稀释剂。因此,必须保持浓缩物中的离子浓度以适当的水平。铜离子沉积在阴极电极表面上,尽管不均匀。

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