化学
矿化(土壤科学)
电化学
废水
环境化学
高级氧化法
电子转移
流出物
羟基自由基
水处理
环境工程
催化作用
电极
光化学
有机化学
环境科学
激进的
物理化学
氮气
作者
Kui Yang,Xingwei Feng,Hui Lin,Jiale Xu,Cao Yang,Juan Du,Dengmiao Cheng,Sihao Lv,Zhifeng Yang
标识
DOI:10.1016/j.jhazmat.2021.127239
摘要
Herein, we reported a tandem multilevel reactive electrochemical membrane (REM) system was promising for the rapid and complete removal of trace antibiotics from natural waters. Results indicate that a four-stage REM module-in-series system achieved steady over 98% removal of model antibiotic norfloxacin (NOR, 100 μg·L-1) from wastewater treatment plant final effluent and surface water with a residence time of 5.4 s, and the electric energy consumption was only around 0.007-0.011 kWh·m-3. As for the oxidation mechanism, direct electron transfer (DET) oxidation process played an important role in NOR rapid oxidation, enabling the REM system to tolerate various •OH scavenges in natural waters, including natural organic matters, Cl- and HCO3-, even at very high concentration levels. Meanwhile, •OH-mediated indirect oxidation process promotes the oxidation and mineralization of NOR. Although the DET-dominated oxidation mechanism makes the REM system cannot achieve the complete mineralization of NOR with residence times of few seconds, the antibacterial activity from NOR was completely eliminated. This REM system featured effective removal performance of trace contaminants with low energy cost and was tolerant to complex waster matrix, suggesting that it could be a powerful supplementary step for wastewater/water treatment.
科研通智能强力驱动
Strongly Powered by AbleSci AI