Brominated flame retardants(BFRs),have been extensively utilized in modern industry,contaminate aquatic ecosystems.They exhibit bioaccumulation and biomagnification properties,posing significant risks to human health,...Brominated flame retardants(BFRs),have been extensively utilized in modern industry,contaminate aquatic ecosystems.They exhibit bioaccumulation and biomagnification properties,posing significant risks to human health,such as developmental disorders,endocrine disruption,and other adverse effects.Current treatment methods for BFRs encompass chemical,electrochemical,biological,and advanced oxidation processes(AOPs).Among them,AOPs are particularly notable for their stability,ease of control,and production of clean end-products.This paper focuses on employing a titanium dioxide(TiO_(2))photocatalytic system to investigate the degradation of 2,4,6-tribromophenol(TBP).展开更多
文摘Brominated flame retardants(BFRs),have been extensively utilized in modern industry,contaminate aquatic ecosystems.They exhibit bioaccumulation and biomagnification properties,posing significant risks to human health,such as developmental disorders,endocrine disruption,and other adverse effects.Current treatment methods for BFRs encompass chemical,electrochemical,biological,and advanced oxidation processes(AOPs).Among them,AOPs are particularly notable for their stability,ease of control,and production of clean end-products.This paper focuses on employing a titanium dioxide(TiO_(2))photocatalytic system to investigate the degradation of 2,4,6-tribromophenol(TBP).