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Study the efficiency of electrocoagulation system using conductivity measurements for the removal of zinc heavy metal

机译:使用电导率测量法研究电凝系统去除锌重金属的效率

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Electrocoagulation has turned out to be a rapidly growing area of wastewater treatment due to its ability to remove contaminants that are generally more difficult to remove by filtration or chemical treatment systems. The removal efficiency of zinc from a simulated industrial wastewater of three electrocoagulation systems has been studied depending on conductivity measurements. System (1) has only two circulated horizontal flat electrodes, system (2) has two circulated horizontal electrodes with 17 holes and system (3) has two circulated horizontal electrodes and one of them is made of wire mesh. Aluminum metal has been used in all electrodes. The effects of various parameters such as applied voltage, initial Zn concentration, electrodes distance and temperature on the removal efficiency have been investigated. It has been seen from the results that removal efficiency has been significantly affected by the type the configuration system used. The best results obtained using Al-electrodes with holes. The conductivity has been decreased with increasing temperature as a function of time. Finally the ultrasonic effect on the electrocoagulation process has also been examined. In conclusion, the removal of heavy metal ions can be successfully accomplished by using electrochemical technique.
机译:由于电凝具有去除通常更难以通过过滤或化学处理系统去除的污染物的能力,因此电凝已成为废水处理的快速增长领域。根据电导率测量值,研究了从三个电凝系统的模拟工业废水中去除锌的效率。系统(1)仅具有两个循环的水平扁平电极,系统(2)具有两个具有17个孔的循环水平扁平电极,而系统(3)具有两个循环的水平扁平电极,其中之一由金属丝网制成。金属铝已用于所有电极。研究了施加电压,初始锌浓度,电极距离和温度等各种参数对去除效率的影响。从结果可以看出,去除效率已受到所使用配置系统类型的显着影响。使用带孔的铝电极可获得最佳结果。电导率随温度的升高而随时间降低。最后,还研究了超声波对电凝过程的影响。总之,通过使用电化学技术可以成功地完成重金属离子的去除。

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