Simultaneous Degradation of p-Nitrophenol and Recovery of Copper from Wastewater in Electrochemical Reactor Under High Salinity

降级(电信) 电解质 阴极 阳极 电化学 材料科学 硝基苯酚 废水 电极 核化学
作者
Xin Tan,Zhijie Zheng,Bo Peng,Xiaogang Wu,Xiangyang Huang,Xiaofei Chen
出处
期刊:Science of Advanced Materials [American Scientific Publishers]
卷期号:13 (12): 2450-2459
标识
DOI:10.1166/sam.2021.4120
摘要

Ti/RuO 2 –IrO 2 electrode was used in this study as an anode, while titanium plate (Ti) was used as a cathode for electrochemical oxidation process, to explore the influences of related parameters on degradation of p-nitrophenol (PNP) and removal of Cu 2+ from mixed simulated wastewater. Using a single chamber reactor, we tested the influence of various factors on the PNP degradation and Cu 2+ elimination. The factors that were tested are as follow; the type of electrolyte, density of the current, various values of pH and different concentrations of Cu 2+ . Furthermore, a dual-chamber diaphragm reactor compartmentalized by cationic membrane was utilized to explore the removal mechanism of PNP and Cu 2+ . Results showed that, treatment of PNP-Cu 2+ simulated wastewater, with NaCl as electrolyte, had a better effect compared with Na 2 SO 4 , which had characteristics such as shorter reaction time and higher degradation efficiency for PNP. Removal of Cu 2+ had no obvious advantage over Na 2 SO 4 . The degradation of PNP and removal of Cu 2+ were improved with increased current density when the rang was increased from 10 to 40 mA/cm 2 . Cu 2+ concentration when increased initially promoted the degradation of PNP. At the same time, Cu 2+ acted as electron acceptor at the cathode that slowed down the consumption of H + through reduced combination of H + with electrons. The degradation rate of PNP decreased with increased initial pH, but the Cu 2+ was opposite. In this experiment, the degradation of PNP was positively correlated with indirect oxidation of active chlorine, and the Cu 2+ was removed by cathodic electrodeposition.

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