Environmental availability of sulfamethoxazole and its acetylated metabolite added to soils via sludge compost or bovine manure - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Science of the Total Environment Année : 2019

Environmental availability of sulfamethoxazole and its acetylated metabolite added to soils via sludge compost or bovine manure

Résumé

The fate of antibiotics and their metabolites in soils after application of organic waste depends on their environmental availability, which depends on the quality and biodegradability of the added exogenous organic matter (EOM). This study aimed at better understanding the fate of sulfamethoxazole (SMX) and N‑acetyl‑sulfamethoxazole (AcSMX) metabolite added to soils via sludge compost or cow manure application, during a 28-day incubation. Experimental results obtained for mineralized, extractable, and non-extractable fractions as well as EOM mineralization were used to couple SMX and AcSMX dynamics to the EOM evolution using the COP-Soil model. According to various mechanisms of extraction, CaCl2, EDTA and cyclodextrin solutions extracted contrasted available fractions (31–96% on day 0), resulting in different sets of parameter values in the model. CaCl2 extraction was the best method to assess the sulfonamide availability, leading to low relative root mean squared errors and best simulations of SMX and AcSMX dynamics. The decrease of SMX and AcSMX availability over time went with the formation of non-extractable residues, mostly of physicochemical origin. Using the COP-Soil model, the co-metabolism was assumed to be responsible for the formation of biogenic non-extractable residues and the low mineralization of SMX and AcSMX.
Fichier non déposé

Dates et versions

hal-01873084 , version 1 (12-09-2018)

Identifiants

Citer

Anais Goulas, Nicolas Sertillanges, Khaled Brimo, Patricia Garnier, Valerie Bergheaud, et al.. Environmental availability of sulfamethoxazole and its acetylated metabolite added to soils via sludge compost or bovine manure. Science of the Total Environment, 2019, 651 (1), pp.506-515. ⟨10.1016/j.scitotenv.2018.09.100⟩. ⟨hal-01873084⟩
73 Consultations
0 Téléchargements

Altmetric

Partager

Gmail Facebook X LinkedIn More