Non-target screening of surface water samples to identify exposome-related pollutants: a case study from Luxembourg

IF 5.9 3区 环境科学与生态学 Q1 Environmental Science
Dagny Aurich, Philippe Diderich, Rick Helmus, Emma L. Schymanski
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引用次数: 0

Abstract

Background

Non-target screening of surface water samples collected over an extended period can reveal interesting temporal patterns in exposome-related pollutants. Additionally, geographical data on pollution sources close to the sampling sites, chemical classification data and the consideration of flow paths can provide valuable information on the origins and potential threat of tentatively identified chemical compounds. In this study, 271 surface water samples from 20 sampling sites across Luxembourg were analysed using high-resolution mass spectrometry, complementing routine target monitoring efforts in 2019–2022. Data analysis was performed using the open source R-package patRoon, which offers a customizable non-target workflow. By employing open source workflows featuring scoring terms, like spectral match and applying identification levels, tentative identifications can be prioritized, e.g. based on spectral similarity. Furthermore, by utilizing supplementary database information such as PubChemLite annotation categories and classification software such as classyFire, an overall assessment of the potential threats posed by the tentatively identified chemicals was conducted, enabling the prioritization of chemicals for future confirmation through targeted approaches.

Results

The study tentatively identified 378 compounds associated with the exposome including benzenoids, organoheterocyclic compounds, and organic phosphoric acids and derivatives (11 classyFire superclasses, 50 subclasses). The classification analysis not only revealed temporal variations in agrochemicals, with the majority of identifications occurring in May to July, but also highlighted the prevalence of pharmaceuticals such as venlafaxine in surface waters. Furthermore, potential sources of pollutants, like metallurgic industry or household products were explored by considering common uses and geographical information, as commercial uses of almost 100% of the identified chemicals are known. 41 chemicals were suggested for potential inclusion to governmental monitoring lists for further investigation.

Conclusions

The findings of this study complement existing knowledge on the pollution status of surface water in Luxembourg and highlight the usefulness of non-target screening for identifying temporal and spatial trends in pollutant levels. This approach, performed in a complementary manner to routine monitoring, can help to tentatively identify chemicals of concern for potential inclusion in target monitoring methods following additional confirmation and quantification efforts.

Abstract Image

对地表水样本进行非目标筛选以确定与暴露有关的污染物:来自卢森堡的案例研究
背景:对长时间收集的地表水样本进行非靶筛选可以揭示与暴露有关的污染物的有趣的时间模式。此外,关于采样地点附近的污染源的地理数据、化学分类数据和对流动路径的考虑可以提供关于初步确定的化合物的来源和潜在威胁的宝贵信息。在这项研究中,使用高分辨率质谱分析了来自卢森堡20个采样点的271个地表水样本,补充了2019-2022年的常规目标监测工作。数据分析是使用开源r包patron执行的,它提供了一个可定制的非目标工作流。通过采用具有评分术语的开源工作流,如频谱匹配和应用识别级别,可以对暂定识别进行优先级排序,例如基于频谱相似性。此外,通过利用PubChemLite注释类别等补充数据库信息和classyFire等分类软件,对初步确定的化学品构成的潜在威胁进行了全面评估,从而能够通过有针对性的方法确定化学品的优先级,以便将来确认。结果初步鉴定出378种与暴露体相关的化合物,包括苯类化合物、有机杂环化合物、有机磷酸及其衍生物(11个超类,50个亚类)。分类分析不仅揭示了农用化学品的时间变化,大多数鉴定发生在5月至7月,而且还突出了地表水中文拉法辛等药物的流行。此外,由于几乎100%已查明的化学品的商业用途都是已知的,因此通过考虑共同用途和地理信息,探讨了诸如冶金工业或家用产品等污染物的潜在来源。建议将41种化学品列入政府监测清单以供进一步调查。本研究的发现补充了卢森堡地表水污染状况的现有知识,并强调了非目标筛选在确定污染物水平的时空趋势方面的有用性。这种方法作为常规监测的补充,可以帮助初步确定值得关注的化学品,以便在进一步的确认和量化工作之后纳入目标监测方法。
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来源期刊
Environmental Sciences Europe
Environmental Sciences Europe Environmental Science-Pollution
CiteScore
9.20
自引率
1.70%
发文量
110
审稿时长
13 weeks
期刊介绍: ESEU is an international journal, focusing primarily on Europe, with a broad scope covering all aspects of environmental sciences, including the main topic regulation. ESEU will discuss the entanglement between environmental sciences and regulation because, in recent years, there have been misunderstandings and even disagreement between stakeholders in these two areas. ESEU will help to improve the comprehension of issues between environmental sciences and regulation. ESEU will be an outlet from the German-speaking (DACH) countries to Europe and an inlet from Europe to the DACH countries regarding environmental sciences and regulation. Moreover, ESEU will facilitate the exchange of ideas and interaction between Europe and the DACH countries regarding environmental regulatory issues. Although Europe is at the center of ESEU, the journal will not exclude the rest of the world, because regulatory issues pertaining to environmental sciences can be fully seen only from a global perspective.
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