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March 30, 2026Water Environment Research0 citations

Seasonal Disparities and Risk Evaluation of EOCs in Pearl River Delta Water Sources

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JLJianwei LiangGuangzhou UniversityXLX. LiuPearl River Hydraulic Research InstituteRLRunqi LiPearl River Hydraulic Research Institute

Key Points

  • This research aims to evaluate the levels of emerging organic contaminants in drinking water sources and their ecological risks.
  • Analyzed residual levels of antibiotics and pesticides in five drinking water sources
  • Conducted ecological risk assessment on identified contaminants
  • Utilized PCA to interpret seasonal/co-variation patterns based on land use and contamination sources
  • Average antibiotic concentrations trended upwards, while pesticide levels generally declined
  • High ecological risk potential found for clothianidin and imidacloprid
  • Seasonal patterns correlated with influences from wastewater, livestock, and aquaculture activities

Abstract

Emerging organic contaminants (EOCs) are extensively employed for disease control and agricultural yield enhancement. However, EOCs can enter aquatic environments through multiple pathways, constituting a potential threat to both human health and aquatic ecosystems, particularly drinking water sources. This study investigated the residual levels of two typical classes of biocides-antibiotics and pesticides-in five drinking water sources within the Pearl River Delta (PRD) region. The average total concentrations of antibiotics and pesticides were 102.50 and 103.13 ng/L during the dry season, 112.13 and 74.94 ng/L during the wet season, and 169.62 and 133.40 ng/L during the normal-flow season, respectively. Between 2023 and 2024, pesticide contamination exhibited a general declining trend, whereas antibiotic contamination displayed a gradual increase. PCA suggested seasonal/site-specific co-variation patterns that were consistent with influences from domestic wastewater, livestock/aquaculture activities, and mixed inputs when interpreted together with land use information. An ecological risk assessment revealed that clothianidin and imidacloprid posed high risks to the aquatic ecosystem. This study elucidates the contamination characteristics and potential risks of antibiotics and pesticides in the drinking water sources of the PRD region, thereby providing a scientific basis for water pollution prevention and water quality safeguarding in the area.

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Cite This Study

Liang et al. (2026) studied this question.

synapsesocial.com/papers/69c9c51bf8fdd13afe0bd164https://doi.org/10.1002/wer.70359
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