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Progress of metal-loaded biochar-activated persulfate for degradation of emerging organic contaminants.

Tianhong ZhouChao ShiYangyang WangXiaoshu WangZhenle LeiXunjie LiuJinyu WuFengxiang LuoLei Wang
Published in: Water science and technology : a journal of the International Association on Water Pollution Research (2024)
In recent years, studies on the degradation of emerging organic contaminants by sulfate radical (SO 4 - ·) based advanced oxidation processes (SR-AOPs) have triggered increasing attention. Metal-loaded biochar (Me-BC) can effectively prevent the agglomeration and leaching of transition metals, and its good physicochemical properties and abundant active sites induce outstanding in activating persulfate (PS) for pollutant degradation, which is of great significance in the field of advanced oxidation. In this paper, we reviewed the preparation method and stability of Me-BC, the effect of metal loading on the physicochemical properties of biochar, the pathways of pollutant degradation by Me-BC-activated PS (including free radical pathways: SO 4 - ·, hydroxyl radical (·OH), superoxide radicals (O 2 -·); non-free radical pathways: singlet oxygen ( 1 O 2 ), direct electron transfer), and discussed the activation of different active sites (including metal ions, persistent free radicals, oxygen-containing functional groups, defective structures, etc.) in the SR-AOPs system. Finally, the prospect was presented for the current research progress of Me-BC in SR-AOPs technology.
Keyphrases
  • heavy metals
  • electron transfer
  • sewage sludge
  • hydrogen peroxide
  • drug delivery
  • anaerobic digestion
  • health risk assessment
  • drinking water
  • cancer therapy
  • health risk
  • water soluble
  • risk assessment
  • wound healing