Removal of Metal Ions from Water Using Oxygen Plasmas

S. Khanom, N. Hayashi
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Abstract

Zinc ion dissolved in water is attempted to be removed by generating the oxides of zinc using the oxygen gas in DBD plasma system. The removal rate of zinc oxides’ production (ZnO and Zn(OH2)) were measured at different treatment periods by the oxygen plasma penetration in water. The removal rate of the deposit increases initially and then decreases with the treatment period. The maximum removal rate (29%) of zinc from water is achieved at the treatment period of 10 min, where pH is minimum. From FTIR the generation properties of zinc oxide can be recognized. Initially the amount the deposit increases with the ozone treatment period due to production of both ZnO and Zn(OH)2. After that, the production of Zn(OH)42- increases even when the total removal rate of the deposit decreases. Therefore, to remove zinc ion from water forming metal oxide deposit, the penetration amount of the active oxygens to the water must be controlled to keep the pH lower than around 7.5. Because with increasing pH amount of removal rate of ZnO deposit decreases. The pH of the zinc dissolved water treated by ozone depends on both zinc and ozone concentration in water.
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氧等离子体去除水中的金属离子
在DBD等离子体系统中,利用氧气生成锌的氧化物,试图去除水中的锌离子。采用氧等离子体在水中渗透的方法,测定了不同处理时期氧化锌(ZnO和Zn(OH2))的去除率。随着处理时间的延长,沉积物的去除率先增大后减小。在pH值最小的情况下,处理时间为10 min,水中锌的最大去除率为29%。通过红外光谱可以识别氧化锌的生成性质。由于氧化锌和锌(OH)2的生成,初始沉积量随着臭氧处理时间的延长而增加。之后,即使沉积物的总去除率降低,Zn(OH)42-的产量也会增加。因此,要从水中去除锌离子形成金属氧化物沉积,必须控制活性氧对水中的渗透量,使pH值低于7.5左右。因为随着pH值的增加,氧化锌沉积物的去除率降低。臭氧处理的锌溶解水的pH值取决于水中锌和臭氧的浓度。
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