阿特拉津
环境修复
环境科学
沉积物
植物修复
土壤污染
环境化学
生物累积
环境工程
污染
杀虫剂
化学
土壤水分
土壤科学
生态学
地质学
生物
古生物学
作者
Jianning Chang,Wei Fang,Le Chen,Panyue Zhang,Guangming Zhang,Haibo Zhang,Jinsong Liang,Qingyan Wang,Weifang Ma
出处
期刊:Chemosphere
[Elsevier]
日期:2022-08-13
卷期号:307: 136006-136006
被引量:59
标识
DOI:10.1016/j.chemosphere.2022.136006
摘要
Atrazine has become one of the most popular applied triazine herbicides in the world due to its high herbicidal efficiency and low price. With its large-dosage and long-term use on a global scale, atrazine can cause widespread and persistent contamination of soil and sediment. This review systematically evaluates the toxicological effects, environmental risks, environmental behaviors (adsorption, transport and transformation, and bioaccumulation) of atrazine, and the remediation technologies of atrazine-contaminated soil and sediment. For the adsorption behavior of atrazine on soil and sediment, the organic matter content plays an extremely important role in the adsorption process. Various models and equations such as the multi-media fugacity model and solute transport model are used to analyze the migration and transformation process of atrazine in soil and sediment. It is worth noting that certain transformation products of atrazine in the environment even have stronger toxicity and mobility than its parent. Among various remediation technologies, the combination of microbial remediation and phytoremediation for atrazine-contaminated soil and sediment has wide application prospects. Although other remediation technologies such as advanced oxidation processes (AOPs) can also efficiently remove atrazine from soil, some potential problems still need to be further clarified. Finally, some related challenges and prospects are proposed.
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