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用于监测内分泌干扰化学物质(EDCs)和太湖流域环境风险评估的新型环糊精聚合物凝胶的扩散梯度薄膜(DGT)的验证和应用。

Validation and application of diffusive gradient in thin-film (DGT) equipped novel cyclodextrin polymer gels for monitoring endocrine disrupting chemicals (EDCs) and environmental risk assessment in the Taihu lake basin.

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing, PR China.

Key Laboratory of Poyang Lake Environment and Resource Utilization, Ministry of Education, School of Resources Environmental & Chemical Engineering, Nanchang University, Nanchang, 330031, China; Jiangxi Nanxin Environmental Protection Technology Co. LTD, Jiujiang City of Jiangxi Province, 330300, China.

出版信息

Environ Res. 2022 Sep;212(Pt D):113391. doi: 10.1016/j.envres.2022.113391. Epub 2022 May 18.

Abstract

Taihu Lake is the most important drinking water source of the major cities in the Yangtze River Delta. The pollution of endocrine disruptors (EDCs)in Taihu Lake has been increasing recently, the accurate determination is an important guide for predicting its health risks and developing appropriate controls. Monitoring organic pollutants in water using the diffusive gradient in thin film technique (DGT) has attracted much attention due to more accuracy and convenience than the grab sampling methods. In this study, a novel cyclodextrin polymer (CDP) synthesized by the simple and green method in water was taken as an adsorbent for the binding gel. Four endocrine-disrupting chemicals (EDCs), bisphenol A (BPA), 17α-ethinylestradiol (EE2), 17β-estradiol (E2), and estriol (E3), were taken as models to determine the diffusion coefficients (4.68 × 10, 3.38 × 10, 3.34 × 10 and 4.31 × 10 cm/s) and to test the performance of DGT, such as adsorption capacity and deployment time (1-5 day). The assembled CDP-DGT was adopted to determine four EDCs in a simulated water environment (3-9 of pH, 0.001-0.5 M of ionic strength (IS), and dissolved organic matter (DOM) of 0-20 mg/L). The ability of CDP-DGT sampling was verified in the Jiuxiang River and was carried out for a large-scale field application of in situ sampling EDCs in Taihu Lake basin. The results show that the total EDCs concentration range and the estradiol equivalent concentrations (EEQ) in Taihu Lake and its main rivers are 2.78 ng/L to 11.08 ng/L and 2.62 ng/L to 10.91 ng/L, respectively. The risk quotients (RQs) of all sampling sites in the region were greater than 1, indicating that EDCs pose a serious threat to aquatic organisms in the area. Therefore, the monitoring of EDCs in the Taihu Lake basin should be further strengthened.

摘要

太湖是长三角地区主要城市最重要的饮用水源。最近,太湖内分泌干扰物 (EDC) 的污染一直在增加,准确的测定是预测其健康风险和制定适当控制措施的重要指导。与传统的采集水样方法相比,使用扩散梯度薄膜技术 (DGT) 监测水中的有机污染物具有更高的准确性和便利性,因此受到了广泛关注。本研究以在水中通过简单环保的方法合成的环糊精聚合物 (CDP) 作为结合凝胶的吸附剂。以四种内分泌干扰物 (EDC) 双酚 A (BPA)、17α-乙炔雌二醇 (EE2)、17β-雌二醇 (E2) 和雌三醇 (E3) 为模型,测定扩散系数 (4.68×10、3.38×10、3.34×10 和 4.31×10 cm/s),并测试 DGT 的性能,如吸附容量和部署时间 (1-5 天)。采用组装的 CDP-DGT 测定模拟水环境 (pH 值为 3-9、离子强度 (IS) 为 0.001-0.5 M 和溶解有机物 (DOM) 为 0-20 mg/L) 中的四种 EDCs。在九香河验证了 CDP-DGT 采样能力,并对太湖流域原位采样 EDCs 进行了大规模现场应用。结果表明,太湖及其主要河流的总 EDC 浓度范围和雌二醇当量浓度 (EEQ) 分别为 2.78 ng/L 至 11.08 ng/L 和 2.62 ng/L 至 10.91 ng/L。该地区所有采样点的风险商 (RQ) 均大于 1,表明 EDC 对该地区水生生物构成严重威胁。因此,应进一步加强对太湖流域 EDC 的监测。

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