Articles

What role do ponds play in limiting pesticide flows in the agricultural landscape?

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Abstract

Aquatic systems, including ponds, wetlands, stormwater basins, and hillside reservoirs, are prevalent water retention systems within agricultural catchments. These reservoirs function as natural biogeochemical reactors, regulating the dispersion and transference of agricultural contaminants, notably pesticides, throughout the catchment area. As a complementary approach to mitigating or potentially eliminating the use of synthetic pesticides, the PESTIPOND project (2018-2023), funded by the French National Research Agency (ANR), examined the role of reservoirs in pesticide transfers on a catchment scale. The primary findings are detailed within this article. PESTIPOND has facilitated an enhanced comprehension, prioritization, and forecasting of the mechanisms influencing pesticide dissipation within reservoirs. Furthermore, it elucidates how pesticide dissipation in ponds governs pesticide transference across the catchment under varying hydro-climatic conditions and agricultural practices. To incorporate the multifaceted and dynamic aspects of this issue, we propose a modelling framework that accounts for the role of reservoirs at the catchment scale. This framework aims to enhance the accuracy of pesticide transfer prediction and the assessment of potential risks associated with the transfer to aquatic ecosystems.

Authors


Gwenaël IMFELD

imfeld@unistra.fr

Affiliation : Institut Terre et environnement de Strasbourg (ITES), Université de Strasbourg/EOST/ENGEES, CNRS UMR 7063, 5 rue Descartes, 67084 Strasbourg

Country : France


Sylvain PAYRAUDEAU

Affiliation : Institut Terre et environnement de Strasbourg (ITES), Université de Strasbourg/EOST/ENGEES, CNRS UMR 7063, 5 rue Descartes, 67084 Strasbourg

Country : France


Sabine SAUVAGE

Affiliation : Laboratoire Ecologie fonctionnelle et Environnement, Université de Toulouse, CNRS, UPS, Toulouse INP, Campus ENSAT, Avenue de l’Agrobiopole, Castanet Tolosan, 31326 Toulouse – LTSER Zone Atelier Pyrénées—Garonne, Université de Toulouse, CNRS, Castanet Tolosan, 31320 Toulouse – LTER Bassin versant expérimental d'Auradé, IR OZCAR, Université de Toulouse, CNRS, Castanet Tolosan, 31320 Toulouse

Country : France


Francis MACARY

Affiliation : ETTIS, INRAE, 33612 Cestas-Gazinet

Country : France


Cédric CHAUMONT

Affiliation : Université Paris Saclay, INRAE, UR HYCAR, CS 10030, 92761 Antony

Country : France


Jérémie D. LEBRUN

Affiliation : Université Paris Saclay, INRAE, UR HYCAR, CS 10030, 92761 Antony

Country : France


Anne PROBST

Affiliation : Laboratoire Écologie fonctionnelle et Environnement, Université de Toulouse, CNRS, UPS, Toulouse INP, Campus ENSAT, Avenue de l’Agrobiopole, Castanet Tolosan, 31326 Toulouse – LTSER Zone Atelier Pyrénées—Garonne, Université de Toulouse, CNRS, Castanet Tolosan, 31320 Toulouse – LTER Bassin versant expérimental d'Auradé, IR OZCAR, Université de Toulouse, CNRS, Castanet Tolosan, 31320 Toulouse

Country : France


José-Miguel SÁNCHEZ-PÉREZ

Affiliation : Laboratoire Écologie fonctionnelle et Environnement, Université de Toulouse, CNRS, UPS, Toulouse INP, Campus ENSAT, Avenue de l’Agrobiopole, Castanet Tolosan, 31326 Toulouse – LTSER Zone Atelier Pyrénées—Garonne, Université de Toulouse, CNRS, Castanet Tolosan, 31320 Toulouse – LTER Bassin versant expérimental d'Auradé, IR OZCAR, Université de Toulouse, CNRS, Castanet Tolosan, 31320 Toulouse

Country : France


Jean-Luc PROBST

Affiliation : Laboratoire Écologie fonctionnelle et Environnement, Université de Toulouse, CNRS, UPS, Toulouse INP, Campus ENSAT, Avenue de l’Agrobiopole, Castanet Tolosan, 31326 Toulouse – LTSER Zone Atelier Pyrénées—Garonne, Université de Toulouse, CNRS, Castanet Tolosan, 31320 Toulouse – LTER Bassin versant expérimental d'Auradé, IR OZCAR, Université de Toulouse, CNRS, Castanet Tolosan, 31320 Toulouse

Country : France


Julien TOURNEBIZE

Affiliation : Université Paris Saclay, INRAE, UR HYCAR, CS 10030, 92761 Antony

Country : France

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