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评估与除草剂莠去津在土壤中的降解及其对杂草生物有效性相关的环境行为的物理化学特性。

Physiochemical assessment of environmental behaviors of herbicide atrazine in soils associated with its degradation and bioavailability to weeds.

机构信息

Jiangsu Key Laboratory of Pesticide Science, College of Sciences, Nanjing Agricultural University, Nanjing, 210095, China; State & Local Joint Engineering Research Center of Green Pesticide Invention and Application, Nanjing Agricultural University, Nanjing, 210095, China.

Jiangsu Key Laboratory of Pesticide Science, College of Sciences, Nanjing Agricultural University, Nanjing, 210095, China; Chongqing Center for Disease Control and Prevention, Chongqing, 400042, China.

出版信息

Chemosphere. 2021 Jan;262:127830. doi: 10.1016/j.chemosphere.2020.127830. Epub 2020 Aug 1.

Abstract

Atrazine residue in soil is one of the serious environmental problems and continues to risk ecosystem and human health. To address the environmental behaviors and dissipation of atrazine and better manage the application of atrazine in reality, we comprehensively investigated the adsorption and desorption, migration ability, and vanishing of atrazine in three distinct soils in China including Jiangxi (JX, pH 5.45, TOC 0.54%), Nanjing (NJ, pH 6.15, TOC 2.13%), and Yancheng (YC, pH 8.60, TOC 0.58%) soils. The atrazine adsorptive capacity to the soils was arranged in the order of NJ > YC > JX. The leaching assay with profiles of the soils showed strong migration, suggesting it had a high bioavailability to weeds and potential for underground water contamination. We further investigated the effects of environmental factors such as soil moisture, microbial activity and photolysis on atrazine degradation and showed that the degradation of atrazine in the soil mainly underwent the abiotic process, most likely through hydrolysis and photolysis-mediated mechanisms, and to less extend through soil microbial catabolism. Using HRLC-Q-TOF-MS/MS and by comparing the measured and theoretical m/z values and fragmentation data, ten metabolites comprising eight degraded products and two conjugates were characterized. Atrazine existing in the soils and sprayed coordinately blocked the growth of three common weeds, which prompted us to use the minimal atrazine in practice to control the waste of the pesticide and its impact on the environment. Overall, our work provided an insight into the mechanisms for the degradation of atrazine residues in the soils and contributed to the environmental risk assessment of the pesticide and management in its application control in the crop rotation and safe production.

摘要

土壤中的莠去津残留是严重的环境问题之一,持续威胁着生态系统和人类健康。为了研究莠去津在土壤中的环境行为和消解规律,更好地管理莠去津在实际中的应用,我们综合研究了中国三种不同土壤(江西JX 土壤,pH 值为 5.45,TOC 为 0.54%;南京 NJ 土壤,pH 值为 6.15,TOC 为 2.13%;盐城 YC 土壤,pH 值为 8.60,TOC 为 0.58%)中莠去津的吸附和解吸、迁移能力和消解。土壤对莠去津的吸附能力顺序为 NJ>YC>JX。土壤剖面淋溶实验表明莠去津具有较强的迁移能力,这表明莠去津对杂草具有较高的生物有效性,并有潜在的地下水污染风险。我们进一步研究了土壤水分、微生物活性和光解等环境因素对莠去津降解的影响,结果表明莠去津在土壤中的降解主要经历了非生物过程,很可能通过水解和光解介导的机制,以及通过土壤微生物代谢作用的程度较小。利用 HRLC-Q-TOF-MS/MS,通过比较实测和理论 m/z 值和碎片数据,鉴定出包括 8 个降解产物和 2 个轭合物在内的 10 种代谢物。土壤中存在的莠去津和协同喷洒的莠去津协同抑制了三种常见杂草的生长,这促使我们在实践中使用最小剂量的莠去津来控制农药的浪费及其对环境的影响。总的来说,我们的工作深入了解了土壤中莠去津残留的降解机制,为莠去津的环境风险评估及其在轮作和安全生产中的应用控制提供了依据。

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