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使用四极杆飞行时间质谱仪(QTOF-MS)对废水中农药和药物转化产物进行可疑和非目标筛查。

Suspect and non-target screening of pesticides and pharmaceuticals transformation products in wastewater using QTOF-MS.

作者信息

Wang Xuebing, Yu Nanyang, Yang Jingping, Jin Ling, Guo Huiwei, Shi Wei, Zhang Xiaowei, Yang Liuyan, Yu Hongxia, Wei Si

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing, People's Republic of China.

Laboratory of Immunology and Reproductive Biology, School of Medicine, Nanjing University, Nanjing, People's Republic of China.

出版信息

Environ Int. 2020 Apr;137:105599. doi: 10.1016/j.envint.2020.105599. Epub 2020 Feb 25.

Abstract

Pesticides and pharmaceuticals are widely used in modern life and are discharged into wastewater after usage. However, a large number of transformation products (TPs) are formed through abiotic (hydrolysis/photolysis, etc.) and biotic (aerobic/anaerobic degradation by micro-organisms) wastewater treatment processes, and the structure and potential risk of TPs are still unclear. In this study, a suspect and non-target screening was performed to monitor these chemicals with HPLC-QTOF-MS. We identified 60 parent compounds by suspect screening in three Chinese wastewater treatment plants with the commercial database of pesticides and pharmaceuticals, and they were confirmed by authentic standards. Then, suspect and non-target screening strategies based on the predicted diagnostic fragment ions were used to screen TPs of the 60 parent compounds. We tentatively identified 50 TPs and confirmed thirteen of them with authentic standards. Among 13 quantified TPs, about 40% of them showed higher concentration than their parent compounds in effluent. Especially, cloquintocet, as a TP of cloquintocet-mexyl, had a concentration ratio TP/parent = 14,809 in effluent. Twenty-five TPs had higher predicted toxicity than the corresponding parent compounds by calculating their LC values towards aquatic organisms using toxicity prediction software. Twenty identified TPs were firstly reported in this study. These results indicate the importance of TP analysis in environmental monitoring in wastewater.

摘要

农药和药物在现代生活中广泛使用,使用后会排放到废水中。然而,大量转化产物(TPs)通过非生物(水解/光解等)和生物(微生物好氧/厌氧降解)废水处理过程形成,且TPs的结构和潜在风险仍不明确。在本研究中,采用高效液相色谱-四极杆飞行时间质谱(HPLC-QTOF-MS)进行可疑物和非目标物筛查,以监测这些化学物质。我们利用农药和药物的商业数据库,通过可疑物筛查在三家中国污水处理厂中鉴定出60种母体化合物,并通过标准品进行了确认。然后,基于预测的诊断性碎片离子的可疑物和非目标物筛查策略被用于筛查这60种母体化合物的TPs。我们初步鉴定出50种TPs,并通过标准品确认了其中13种。在13种定量的TPs中,约40%在出水的浓度高于其母体化合物。特别是,异噁唑草酮作为甲氧异噁唑草酮的一种TP,在出水中的浓度比TP/母体 = 14,809。通过使用毒性预测软件计算它们对水生生物的LC值,25种TPs的预测毒性高于相应的母体化合物。本研究首次报道了20种鉴定出的TPs。这些结果表明了TP分析在废水环境监测中的重要性。

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