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镉对阿特拉津在复合污染条件下于水中的降解及三种主要代谢物生成的影响

Influence of Cd on atrazine degradation and the formation of three primary metabolites in water under the combined pollution.

机构信息

College of Environmental Science and Engineering, Central South University of Forestry and Technology, Changsha, 410004, China.

Beijing Research & Development Center for Grass and Environment, Beijing Academy of Agriculture and Forestry Sciences, Beijing, 100097, China.

出版信息

Environ Sci Pollut Res Int. 2021 Apr;28(13):16081-16091. doi: 10.1007/s11356-020-11819-4. Epub 2020 Nov 27.

Abstract

To understand the influence of Cd on atrazine (ATZ) degradation in aqueous solution, the degradation of different initial levels of ATZ (0.1, 0.5, 1.0, and 2.0 mg·L) was investigated in the presence and absence of Cd in a 20-day laboratory experiment. It was found that Cd caused a significant decrease in ATZ degradation and increased its half-life from 17-34 days to 30-57 days (p < 0.0001). Regarding the three most common metabolites of ATZ, deethylatrazine (DEA) and deisopropylatrazine (DIA) were detected in water earlier than hydroxyatrazine (HYA). The DEA content was several times higher than the DIA and HYA contents, regardless of the presence or absence of Cd. In the presence of Cd, the DIA content was significantly lower and the HYA content was significantly higher. Furthermore, Cd had a dose-dependent effect on HYA formation. Our results indicated that the coexistence of Cd and ATZ resulted in greater herbicide persistence, thereby possibly increasing the risk of environmental contamination. DEA was still the predominant ATZ degradation product detected in water under the combined pollution, which was similar to the ATZ tendency.

摘要

为了了解 Cd 对阿特拉津(ATZ)在水溶液中降解的影响,在 20 天的实验室实验中,研究了在存在和不存在 Cd 的情况下,不同初始浓度(0.1、0.5、1.0 和 2.0 mg·L)的 ATZ 的降解情况。结果发现,Cd 导致 ATZ 降解显著减少,半衰期从 17-34 天增加到 30-57 天(p < 0.0001)。关于 ATZ 的三种最常见代谢物,在水中比羟基阿特拉津(HYA)更早地检测到脱乙基阿特拉津(DEA)和脱异丙基阿特拉津(DIA)。无论是否存在 Cd,DEA 的含量都比 DIA 和 HYA 的含量高几倍。在 Cd 的存在下,DIA 的含量明显较低,HYA 的含量明显较高。此外,Cd 对 HYA 的形成具有剂量依赖性。我们的研究结果表明,Cd 和 ATZ 的共存导致除草剂的持久性增加,从而可能增加环境污染的风险。在联合污染下,水中仍检测到主要的 ATZ 降解产物 DEA,这与 ATZ 的趋势相似。

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