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September 18, 2025The Science of The Total Environment5 citationsOpen Access

Constructed wetlands for the mitigation of pesticide and heavy metal concentrations in a protected agrolandscape: removal efficiencies and ecological risk assessment

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NCNuria CarabalEPEric PucheSASergio Armenta

Key Points

  • Constructed wetlands achieved substantial reductions of 57-100% for fungicides and nearly 100% for heavy metals during different seasons.
  • The effectiveness of constructed wetlands was evidenced by 0% to 100% removal of 33 pesticides and 12 metals, influenced by compound properties.
  • Seasonal variations contributed to significant pollutant reductions, particularly achieving 50% lower concentrations in water during summer and winter.
  • The findings suggest constructed wetlands are vital for reducing ecological risks associated with hazardous pollutants entering protected areas.

Abstract

Constructed wetlands (CWs) are increasingly recognised as nature-based solutions, offering key ecosystem services such as the mitigation of pollutants in agricultural landscapes. This study assessed the effectiveness of two surface-flow CWs, Tancat de la Pipa and Tancat de L'Illa, located within the Albufera de València Natural Park (Spain), in reducing pesticide and heavy metal concentrations between inlet and outlet waters (directly/indirectly connected to a protected lagoon) between 2020 and 2025 (including a historic rainfall and flooding event, leading to significantly higher concentrations of certain pesticides). Water, sediment, macrophyte, and herbivorous bird excrement samples were analysed for 33 pesticides and 12 metals/metalloids across the seasons. The results showed how the CWs reduced the concentration of 57-100 % of the fungicides, 67-86 % of the herbicides, and 67-100 % of the insecticides; overall removal efficiencies being 15 %, 25 % and 50 %, respectively. In addition to the CWs' configuration (e.g., size and type of macrophytes), pesticide retention was influenced by compound physical and chemical properties, favouring the accumulation of non-mobile ones in sediment and mobile ones in vegetation and herbivorous bird excrement. For metals/metalloids, the concentration of 50 % of the elements was reduced, with seasonal variations, reaching nearly 100 % in summer and winter. Environmental risks associated with pesticide concentrations, including banned compounds still detected in the CWs, were notably reduced in the outlets, preventing the discharge of moderate to high-risk concentrations into the protected Albufera de València lagoon. While for metals/metalloids, although general risk levels were low, mercury exceeded threshold values yet the CWs effectively mitigated it.

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Cite This Study

Carabal et al. (2025) studied this question.

synapsesocial.com/papers/68d463f131b076d99fa63600https://doi.org/10.1016/j.scitotenv.2025.180466
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