Wang Yun-Fei, Li Yi-Bing, Wang Yan-Bin, Qi Fan-Jing, Zhao Kai, Tian Shi-Chao, Guo Tao, Guan Wei, Zhao Xu
School of Civil and Transportation, Hebei University of Technology, Tianjin 300401, China.
State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
Huan Jing Ke Xue. 2017 Mar 8;38(3):1061-1066. doi: 10.13227/j.hjkx.201608014.
In recent years, cyanide contamination problem is becoming more and more serious. Cyanides widely occur in the wastewater from metallurgical industry and electroplating industry. The efficiency for cyanides removal of conventional physical and chemical methods is not very satisfactory. Therefore, it is urgent to develop highly efficient and environmental friendly methods for the removal of cyanides. As an environmental-friendly oxidant, potassium persulfate is widely used in the treatment of organic pollutants. The destruction of Cu(CN) was investigated by homogeneous KSO under alkaline conditions, and the reaction mechanism was analyzed. The effects of the amount of KSO and the ratio of Cu/CN on the degradation of CN were studied. With the increase of KSO dose, the rate of CNoxidation was accelerated. The removal efficiency of CN reached 89.6% after 60 min of reaction in the presence of 2 mmol·L KSO. Oxidation of CN was accelerated with Cu/CN increasing from 2.0 to 5.0. Cu was oxidized to Cu and copper oxide was formed during the reaction. The reactive radicals were analyzed using electron spin resonance and radical quenching experiments, and the results indicated that both radicals oxidation pathway and non-radical oxidation pathway were responsible for the removal of Cu(CN) by KSO.