Environmental risk of diclofenac in European groundwaters and implications for environmental quality standards.

Sci Rep

Centre for Ecology, Evolution and Environmental Changes & CHANGE - Global Change and Sustainability Institute, and Departamento de Biologia Animal, Faculdade de Ciências, Universidade de Lisboa, 1749-016, Campo Grande, Lisbon, Portugal.

Published: September 2024

AI Article Synopsis

  • - Groundwater is home to unique species that thrive in darkness, and these organisms contribute significantly to global ecosystem services, but they face threats from contamination, particularly from drugs like diclofenac.
  • - The study assessed the environmental risks of diclofenac in European groundwaters, analyzing its concentrations and potential effects on groundwater species, particularly the crustacean Proasellus lusitanicus.
  • - Results indicate that while current diclofenac levels are generally safe for P. lusitanicus, different groundwater species show varying sensitivities. The study recommends setting a precautionary environmental quality standard for diclofenac at 5 ng/L to protect these vital ecosystems.

Article Abstract

Groundwater harbours unique species adapted to perpetual darkness. Groundwater fauna plays a crucial role in global ecosystem services, but contamination poses a threat to this keystone ecosystem. Diclofenac is a common non-steroidal anti-inflammatory drug of particular concern, due to its presence in both surface and groundwater. We assess the environmental risk of diclofenac in European groundwaters using different scenarios, analyzing Measured Environmental Concentrations (MECs) of diclofenac and estimating the Predicted No Effect Concentration (PNECs) through two approaches: considering the sensitivity of the groundwater crustacean Proasellus lusitanicus (Isopoda: Asellidae), and using surface water species as proxies. Our results show that scenarios based on surrogate species predict that groundwater ecosystems are at risk due to diclofenac contamination. On the other hand, the MECs of diclofenac were consistently lower than the PNEC of P. lusitanicus, suggesting that the current MECs do not pose a significant threat to this groundwater-adapted species. However, risk scenarios differ considering the sensitivity of other groundwater species, emphasizing the importance of considering multiple species' sensitivities in risk assessment. Therefore, we recommend establishing an environmental quality standard for diclofenac in groundwater at 5 ng/L, a value that accounts the need for precautionary measures to safeguard groundwater ecosystems, essential for preserving their unique biota and services.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11377587PMC
http://dx.doi.org/10.1038/s41598-024-71747-yDOI Listing

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