Premium
Sorption of the Veterinary Antimicrobials Sulfadimethoxine and Ormetoprim in Soil
Author(s) -
Sanders S. M.,
Srivastava P.,
Feng Y.,
Dane J. H.,
Basile J.,
Barnett M. O.
Publication year - 2008
Publication title -
journal of environmental quality
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.888
H-Index - 171
eISSN - 1537-2537
pISSN - 0047-2425
DOI - 10.2134/jeq2007.0215
Subject(s) - sorption , soil water , environmental chemistry , chemistry , freundlich equation , organic matter , sulfadimethoxine , chromatography , adsorption , environmental science , soil science , organic chemistry
Currently, limited research on the fate of antimicrobials in the environment exists, once they are discharged in human and animal wastes. Sorption of two antimicrobials, sulfadimethoxine (SDM) and ormetoprim (OMP), was investigated in two soils and sand using a series of batch experiments. Because OMP and SDM are often administered in combination, their sorption was also investigated in combination as co‐solutes. The rate of SDM and OMP sorption was rapid over the first few hours of the experiments, which then slowed considerably after 16 to 68 h. OMP sorption was enhanced at high concentrations when in combination with SDM, with linear sorption coefficients ranging from 1.3 to 58.3 L·kg −1 in the single solute experiments and 4.96 to 89.7 L·kg −1 in the co‐solute experiments. Sorption of OMP as a single solute seems to provide a better fit with the Freundlich equation, which became more linear ( n approached 1) when SDM was present. Overall, SDM sorbed less than OMP in the two soils and sand. SDM linear sorption coefficients ranged from 0.4 to 25.8 L·kg −1 as a single solute and 2.5 to 22.1 L·kg −1 as a co‐solute. Sorption of SDM becomes more nonlinear ( n < 1) when SDM is present in combination with OMP. Overall, sorption of both antimicrobials increased in the selected soils and sand as the organic matter, clay content, and cation exchange capacity increased. These experiments indicate relatively low sorption of SDM and OMP in natural soils, making them a potential threat to surface and ground water.