Sorption, desorption, and leaching of S-metolachlor in two soils amended with maize stover

S-metolachlor is widely used across various crops for its effectiveness as a grass herbicide and is considered pivotal, particularly amidst multiple cases of resistance in weed biotypes of the Poaceae family. In no-till systems, the presence of surface residues can modify herbicide retention, release, and mobility. This study evaluated the influence of maize stover on the behavior of S-metolachlor in two contrasting soils from Paraná, Brazil: a clayey Oxisol and a sandy Ultisol. Maize stover was applied at rates ranging from 0 to 1% (0 to 20 t w/w). Sorption and desorption were determined using the batch equilibrium method, and leaching was assessed in PVC columns under simulated rainfall (60 mm). Herbicide quantification was performed by high-performance liquid chromatography. Maize stover significantly altered soil chemical attributes (pH, C, P, and K), resulting in increased S-metolachlor sorption. Freundlich sorption coefficients (K fs ) ranged from 3.24 to 5.98 mg (1−1/n) L 1/n kg − 1 in the Oxisol and from 1.48 to 2.61 mg (1−1/n) L 1/n kg − 1 in the Ultisol. Maximum sorption was observed at the 1% residue rate, reaching approximately 64% in the Oxisol and 37% in the Ultisol. In the absence of maize stover, more than 70% of the herbicide remained within the 0–5 cm soil layer. In the Oxisol, 9–30% of the applied herbicide was retained in the stover layer across application rates ranging from 5 to 20 t ha⁻¹, with greater accumulation in the surface soil. S-metolachlor was detected in the leachate at lower residue rates. These findings demonstrate that maize stover enhances S-metolachlor retention, reduces leaching potential, and may improve herbicide persistence and efficacy while mitigating environmental risks.

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Journal
Discover Soil.
Published
2026-10-06
DOI
https://doi.org/10.1007/s44378-026-00333-7
Primary Topic
Pesticide and Herbicide Environmental Studies
Type
article
Field-Weighted Citation Impact
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article

Sorption, desorption, and leaching of S-metolachlor in two soils amended with maize stover

Daniel Valadão Silva, Maura Gabriela da Silva Brochado, Alessandro da Costa Lima, Michelangelo Müzell Trezzi et al.
Discover Soil.
Pesticide and Herbicide Environmental Studies
article

Sorption, desorption, and leaching of S-metolachlor in two soils amended with maize stover

Daniel Valadão Silva, Maura Gabriela da Silva Brochado, Alessandro da Costa Lima, Michelangelo Müzell Trezzi, Kássio Ferreira Mendes, Ana Carolina Pereira Paiva, Grazielle Rodrigues Araújo, Maiara Pinheiro da Silva Borges, Vicente Bezerra Pontes Junior
article en

Abstract

S-metolachlor is widely used across various crops for its effectiveness as a grass herbicide and is considered pivotal, particularly amidst multiple cases of resistance in weed biotypes of the Poaceae family. In no-till systems, the presence of surface residues can modify herbicide retention, release, and mobility. This study evaluated the influence of maize stover on the behavior of S-metolachlor in two contrasting soils from Paraná, Brazil: a clayey Oxisol and a sandy Ultisol. Maize stover was applied at rates ranging from 0 to 1% (0 to 20 t w/w). Sorption and desorption were determined using the batch equilibrium method, and leaching was assessed in PVC columns under simulated rainfall (60 mm). Herbicide quantification was performed by high-performance liquid chromatography. Maize stover significantly altered soil chemical attributes (pH, C, P, and K), resulting in increased S-metolachlor sorption. Freundlich sorption coefficients (K fs ) ranged from 3.24 to 5.98 mg (1−1/n) L 1/n kg − 1 in the Oxisol and from 1.48 to 2.61 mg (1−1/n) L 1/n kg − 1 in the Ultisol. Maximum sorption was observed at the 1% residue rate, reaching approximately 64% in the Oxisol and 37% in the Ultisol. In the absence of maize stover, more than 70% of the herbicide remained within the 0–5 cm soil layer. In the Oxisol, 9–30% of the applied herbicide was retained in the stover layer across application rates ranging from 5 to 20 t ha⁻¹, with greater accumulation in the surface soil. S-metolachlor was detected in the leachate at lower residue rates. These findings demonstrate that maize stover enhances S-metolachlor retention, reduces leaching potential, and may improve herbicide persistence and efficacy while mitigating environmental risks.

Discover Soil.Vol. 3(1)
Universidade Tecnológica Federal do Paraná (BR), Universidade Federal de Viçosa (BR), Universidade de São Paulo (BR), Universidade Federal Rural do Semi-Árido (BR)
Conselho Nacional de Desenvolvimento Científico e Tecnológico, Universidade Tecnológica Federal do Paraná
Life on land, Zero hunger, Responsible consumption and production
Openalex Percentile: Top 24%
Pesticide and Herbicide Environmental Studies
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