杀虫剂
农药降解
光催化
矿化(土壤科学)
环境化学
零价铁
纳米技术
污染
纳米材料
环境科学
化学
材料科学
催化作用
生态学
吸附
土壤科学
土壤水分
生物
生物化学
有机化学
作者
Puangrat Kajitvichyanukul,Van‐Huy Nguyen,Thirasant Boonupara,Lan‐Anh Phan Thi,Apichon Watcharenwong,Sulak Sumitsawan,Patchimaporn Udomkun
标识
DOI:10.1016/j.envres.2022.113336
摘要
Pesticides have been frequently used in agricultural fields. Due to the expeditious utilization of pesticides, their excessive usage has negative impacts on the natural environment and human health. This review discusses the successful implications of nanotechnology-based photocatalysis for the removal of environmental pesticide contaminants. Notably, various nanomaterials, including TiO2, ZnO, Fe2O3, nanoscale zero-valent iron, nanocomposite-based materials, have been proposed and have played a progressively essential role in wastewater treatment. In addition, a detailed review of the crucial reaction condition factors, including water matrix, pH, light source, temperature, flow rate (retention time), initial concentration of pesticides, a dosage of photocatalyst, and radical scavengers, is also highlighted. Additionally, the degradation pathway of pesticide mineralization is also elucidated. Finally, the challenges of technologies and the future of nanotechnology-based photocatalysis toward the photo-degradation of pesticides are thoroughly discussed. It is expected that those innovative extraordinary photocatalysts will significantly enhance the performance of pesticides degradation in the coming years.
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