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Assessing Emissions from Pharmaceutical Manufacturing Based on Temporal High-Resolution Mass Spectrometry Data

机译:基于时间高分辨率质谱数据的制药生产排放评估

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摘要

This study presents a nontarget approach to detect discharges from pharmaceutical production in municipal waste-water treatment plant (WWTP) effluents and to estimate their relevance on the total emissions. Daily composite samples were collected for 3 months at two WWTPs in Switzerland, measured using liquid chromatography high-resolution mass spectrometry, and time series were generated for all features detected. The extent of intensity variation in the time series was used to differentiate relatively constant domestic inputs from highly fluctuating industrial emissions. We show that an intensity variation threshold of 10 correctly classifies compounds of known origin and reveals clear differences between the two WWTPs. At the WWTP receiving wastewater from a pharmaceutical manufacturing site, (i) 10 times as many potential industrial emissions were detected as compared to the WWTP receiving purely domestic wastewater; (ii) for 11 pharmaceuticals peak concentrations, > 10 μg/L and up to 214 μg/L were quantified, which are clearly above typical municipal wastewater concentrations; and (iii) a pharmaceutical not authorized in Switzerland was identified. Signatures of potential industrial emissions were even traceable at the downstream Rhine monitoring station at a >4000-fold dilution. Several of them occurred repeatedly, suggesting that they were linked to regular production, not to accidents. Our results demonstrate that small wastewater volumes from a single industry not only left a clear signature in the effluents of the respective WWTP but also influenced the water quality of one of Europe's most important river systems. Overall, these findings indicate that pharmaceutical production is a relevant emission source even in highly developed countries with a strong focus on water quality, such as Switzerland.
机译:这项研究提出了一种非目标方法来检测市政废水处理厂(WWTP)废水中制药生产的排放,并估算其与总排放的相关性。在瑞士的两个污水处理厂收集3个月的每日复合样品,使用液相色谱高分辨率质谱仪进行测量,并为检测到的所有特征生成时间序列。时间序列中强度变化的程度用于将相对恒定的国内投入与波动剧烈的工业排放区分开来。我们显示强度变化阈值10正确地分类了已知来源的化合物,并揭示了两个污水处理厂之间的明显差异。在污水处理厂接收的制药厂废水中,(i)与仅接收生活污水的污水处理厂相比,发现的潜在工业排放量是污水处理厂的10倍; (ii)对于11种药物的峰值浓度,≥10μg/ L,最高可达214μg/ L,明显高于典型的城市废水浓度; (iii)确定了未经瑞士授权的药品。甚至在下游莱茵监测站以> 4000倍的稀释度也可以追溯到潜在的工业排放特征。其中有几次反复发生,表明它们与正常生产有关,而不是与事故有关。我们的结果表明,来自单个行业的少量废水不仅在相应的污水处理厂的废水中留下了鲜明的标志,而且还影响了欧洲最重要的河流系统之一的水质。总体而言,这些发现表明,即使在高度重视水质的高度发达国家(例如瑞士)中,药品生产也是相关的排放源。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第7期|4110-4120|共11页
  • 作者单位

    Eawag Swiss Federal Institute of Aquatic Science and Technology Dübendorf 8600 Switzerland Institute of Biogeochemistry and Pollutant Dynamics ETH Zürich Zürich 8092 Switzerland;

    enviBee Dübendorf 8600 Switzerland;

    Eawag Swiss Federal Institute of Aquatic Science and Technology Dübendorf 8600 Switzerland;

    Eawag Swiss Federal Institute of Aquatic Science and Technology Dübendorf 8600 Switzerland Institute of Biogeochemistry and Pollutant Dynamics ETH Zürich Zürich 8092 Switzerland Department of Chemistry University of Zürich Zürich 8057 Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 05:27:33

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