渗滤液
纳滤
阳极
电极
材料科学
阴极
化学
废物管理
化学工程
无机化学
膜
环境化学
工程类
物理化学
生物化学
作者
Yunqing Zhu,Gaigai Dong,Xuequan Wan,Minghui Ji,Linbo Zhang,Hanlin Wang
标识
DOI:10.1002/slct.202405054
摘要
Abstract The treatment of nanofiltration concentrate has always been a critical technical challenge in the application of membrane technology for landfill leachate treatment. This study attempts to address this challenge using electrocatalytic oxidation technology. A Pt‐modified Ti/RuO 2 ‐IrO 2 anode was synthesized using a solution method. The results show that Pt was uniformly dispersed within the Ru‐Ir composite oxide phase, and Pt doping induced the formation of numerous disordered and mismatched lattices on the electrode coating surface. The interaction between Pt and the RuO 2 ‐IrO 2 system can enhance the stability of the ternary composite electrode, improve electron transport efficiency, and reduce surface resistance of the electrode coating, thereby increasing the efficiency of chemical reactions. In the treatment of nanofiltration concentrate of landfill leachate, it was found that under conditions of a current density of 20 mA·cm −2 , electrode distance of 0.5 cm, and pH = 5, the removal rates of COD, TOC, and NH 4 + ‐N were 93.5%, 46%, and 98% respectively, with an energy consumption of only 0.66 kWh·(kg TOC) −1 . After 20 repeated experiments, the Ti/RuO 2 ‐IrO 2 ‐Pt 8% anode also demonstrated good stability and catalytic activity.
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