生物炭
化学
流出物
浸出(土壤学)
环境化学
生态毒性
降级(电信)
地表水
废水
饮用水净化
污水
制浆造纸工业
环境科学
环境工程
热解
有机化学
土壤水分
电信
毒性
计算机科学
土壤科学
工程类
作者
Xi Chen,Shufang Qian,Yongfei Ma,Jinyao Zhu,Shitai Shen,Jiayi Tang,Yongzhen Ding,Suli Zhi,Keqiang Zhang,Lie Yang,Zulin Zhang
标识
DOI:10.1016/j.envpol.2023.121010
摘要
First time, this study synthesized a magnetic-modified sludge biochar (MSBC) as an activator of peroxymonosulfate (PMS) to eliminate sulfamethoxazole (SMX). The removal efficiency of SMX reached 96.1% at t = 60 min by PMS/MSBC system. The larger surface area and magnetic Fe3O4 of MSBC surface enhanced its activation performance for PMS. The PMS decomposition, premixing and reactive oxygen species (ROS) identification experiments combined with Raman spectra analysis demonstrated that the degradation process was dominated by surface-bound radicals. The transformed products (TPs) of SMX and the main degradation pathways were identified and proposed. The ecotoxicity of all TPs was lower than that of SMX. The magnetic performance was beneficial for its reuse and the removal efficiency of SMX was 83.3% even after five reuse cycles. Solution pH, HCO3- and CO32- were the critical environmental factors affecting the degradation process. MSBC exhibited environmental safety for its low heavy metal leaching. PMS/MSBC system also performed excellent removal performance for SMX in real waters including drinking water (88.1%), lake water (84.3%), Yangtze River water (83.0%) and sewage effluent (70.2%). This study developed an efficient PMS activator for SMX degradation in various waters and provided a workable way to reuse and recycle municipal sludge.
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