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韩国荣川江中的新兴药物和工业化学品:鉴定、定量监测和优先级排序。

Emerging pharmaceuticals and industrial chemicals in Nakdong River, Korea: Identification, quantitative monitoring, and prioritization.

机构信息

Graduate School of FEED of Eco-Friendly Offshore Structure, Changwon National University, Changwon, Gyeongsangnamdo, 51140, South Korea.

Graduate School of FEED of Eco-Friendly Offshore Structure, Changwon National University, Changwon, Gyeongsangnamdo, 51140, South Korea; School of Civil, Environmental and Chemical Engineering, Changwon National University, Changwon, Gyeongsangnamdo, 51140, South Korea; Department of Smart Ocean Environmental Energy, Changwon National University, Changwon, Gyeongsangnamdo, 51140, South Korea.

出版信息

Chemosphere. 2021 Jan;263:128014. doi: 10.1016/j.chemosphere.2020.128014. Epub 2020 Aug 18.

Abstract

The extensive development and use of new anthropogenic chemicals have inevitably led to their presence in aquatic environments. Surface waters affected by sewage effluents have been exposed to these new substances. In the present study, the occurrence of anthropogenic substances, including pharmaceuticals and industrial chemicals, was investigated in one of the major rivers in Korea, the Nakdong River. Furthermore, seasonal variations in their content were determined via annual monitoring. Through the suspect and non-target screening (SNTS) technique, 58 substances were newly identified in the river and integrated in the quantitative monitoring practice. The results revealed that niflumic acid and melamine exhibited the highest median concentrations, i.e., 320 ng/L and 11,000 ng/L, respectively. The results associated with seasonal change revealed that the concentration of a considerable number of substances increased in winter when the flow rate was low. Conversely, some substances exhibited high concentrations in summer (e.g., polyethylene glycol) and spring (e.g., niflumic acid). This was attributed to the seasonal changes in the consumption, prescriptions, or the application of alternative substances. These changes were also reflected by the risk quotient (RQ) values calculated from the concentration and toxicity values. Pharmaceuticals such as telmisartan and carbamazepine and industrial chemicals such as organophosphorus flame retardants (OPFRs) and melamine accounted for approximately 90% of the total RQ. Major substances prioritized using the production of the RQ value and the detection frequency included OPFRs and telmisartan. It is recommended that these results be reflected in future water quality monitoring plans.

摘要

新人为造化学物质的广泛开发和使用不可避免地导致了它们在水生环境中的存在。受污水影响的地表水已经接触到了这些新物质。在本研究中,调查了韩国主要河流之一——纳川(Nakdong River)中的人为物质(包括药物和工业化学品)的出现情况。此外,通过年度监测确定了它们含量的季节性变化。通过可疑物和非靶标筛查(SNTS)技术,在河流中又新鉴定出了 58 种物质,并将其纳入定量监测实践中。结果表明,尼氟灭酸和三聚氰胺的含量最高,分别为 320ng/L 和 11000ng/L。与季节性变化相关的结果表明,相当数量的物质的浓度在冬季流量较低时增加。相反,一些物质在夏季(如聚乙二醇)和春季(如尼氟灭酸)浓度较高。这归因于消费、处方或替代物质应用的季节性变化。这些变化也反映在根据浓度和毒性值计算的风险商(RQ)值中。药物(如替米沙坦和卡马西平)和工业化学品(如有机磷阻燃剂(OPFRs)和三聚氰胺)占总 RQ 的约 90%。使用 RQ 值和检测频率来确定的主要优先物质包括 OPFRs 和替米沙坦。建议在未来的水质监测计划中反映这些结果。

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