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Assessment of dynamics and variability of organic substances in river bank filtration for prioritisation in analytical workflows.


ABSTRACT: Bank filtration supports the growing global demand for drinking water amidst concerns over organic micropollutants (OMPs). Efforts to investigate, regulate and manage OMPs have intensified due to their documented impacts on ecosystems and human health. Non-targeted analysis (NTA) is critical for addressing the challenge of numerous OMPs. While identification in NTA typically prioritises compounds based on properties like toxicity, considering substance quantity, occurrence frequency and exposure duration is essential for comprehensive risk management. A prioritisation scheme, drawing from intensive sampling and NTA of bank filtrate, is presented and reveals significant variability in OMP occurrence. Quasi-omnipresent substances, though only 7% of compounds, accounted for 44% of cumulative detections. Moderately common substances, constituting 31% of compounds, accounted for 50% of cumulative detections. Rare compounds, comprising 61%, contributed only 6% to cumulative detections. The application of suspect screening for 31 substances to the dataset yielded results akin to NTA, underscoring NTA's value. Correlation between both methods demonstrates the efficacy of high-resolution mass spectrometry-based NTA in assessing temporal and quantitative OMP dynamics.

SUBMITTER: Handl S 

PROVIDER: S-EPMC11379727 | biostudies-literature | 2024 Aug

REPOSITORIES: biostudies-literature

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Assessment of dynamics and variability of organic substances in river bank filtration for prioritisation in analytical workflows.

Handl Sebastian S   Kutlucinar Kaan Georg KG   Allabashi Roza R   Troyer Christina C   Mayr Ernest E   Perfler Reinhard R   Hann Stephan S  

Environmental science and pollution research international 20240827 40


Bank filtration supports the growing global demand for drinking water amidst concerns over organic micropollutants (OMPs). Efforts to investigate, regulate and manage OMPs have intensified due to their documented impacts on ecosystems and human health. Non-targeted analysis (NTA) is critical for addressing the challenge of numerous OMPs. While identification in NTA typically prioritises compounds based on properties like toxicity, considering substance quantity, occurrence frequency and exposure  ...[more]

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