LAPSE:2023.1273
Published Article

LAPSE:2023.1273
Azithromycin Adsorption onto Different Soils
February 21, 2023
Abstract
The antibiotic azithromycin (AZM) is one of the most persistent in the environment, with potential to cause serious health and environmental problems. As some polluting discharges containing this antibiotic can reach the soil, it is clearly relevant determining the ability of soils with different characteristics to retain it. In this research, AZM adsorption and desorption were studied for a variety of soils, using batch-type experiments. The results show that, at low doses of antibiotic added (less than or equal to 50 µmol L−1), the adsorption always reached 100%, while when higher concentrations were added (between 200 and 600 µmol L−1) the highest adsorption corresponded to soils with higher pH values. Adsorption data were fitted to the Linear, Langmuir and Freundlich models, with the latter showing the best fit, in view of the determination coefficient. No desorption was detected, indicating that AZM is strongly adsorbed to the soils evaluated, suggesting that the risks of environmental problems due to this contaminant are minimized for these edaphic media. These results can be considered relevant with respect to risk assessment and possible programming of measures aimed at controlling environmental contamination by emerging contaminants, especially from the group of antibiotics, and in particular from AZM.
The antibiotic azithromycin (AZM) is one of the most persistent in the environment, with potential to cause serious health and environmental problems. As some polluting discharges containing this antibiotic can reach the soil, it is clearly relevant determining the ability of soils with different characteristics to retain it. In this research, AZM adsorption and desorption were studied for a variety of soils, using batch-type experiments. The results show that, at low doses of antibiotic added (less than or equal to 50 µmol L−1), the adsorption always reached 100%, while when higher concentrations were added (between 200 and 600 µmol L−1) the highest adsorption corresponded to soils with higher pH values. Adsorption data were fitted to the Linear, Langmuir and Freundlich models, with the latter showing the best fit, in view of the determination coefficient. No desorption was detected, indicating that AZM is strongly adsorbed to the soils evaluated, suggesting that the risks of environmental problems due to this contaminant are minimized for these edaphic media. These results can be considered relevant with respect to risk assessment and possible programming of measures aimed at controlling environmental contamination by emerging contaminants, especially from the group of antibiotics, and in particular from AZM.
Record ID
Keywords
Adsorption, antibiotic, desorption, emerging contaminants, environment
Subject
Suggested Citation
Cela-Dablanca R, Barreiro A, Rodríguez-López L, Pérez-Rodríguez P, Arias-Estévez M, Fernández-Sanjurjo MJ, Álvarez-Rodríguez E, Núñez-Delgado A. Azithromycin Adsorption onto Different Soils. (2023). LAPSE:2023.1273
Author Affiliations
Cela-Dablanca R: Department Soil Science and Agricultural Chemistry, Engineering Polytechnic School, Universidad Santiago de Compostela, 27002 Lugo, Spain [ORCID]
Barreiro A: Department Soil Science and Agricultural Chemistry, Engineering Polytechnic School, Universidad Santiago de Compostela, 27002 Lugo, Spain
Rodríguez-López L: Soil Science and Agricultural Chemistry, Faculty Sciences, University of Vigo, 32004 Ourense, Spain
Pérez-Rodríguez P: Soil Science and Agricultural Chemistry, Faculty Sciences, University of Vigo, 32004 Ourense, Spain
Arias-Estévez M: Soil Science and Agricultural Chemistry, Faculty Sciences, University of Vigo, 32004 Ourense, Spain [ORCID]
Fernández-Sanjurjo MJ: Department Soil Science and Agricultural Chemistry, Engineering Polytechnic School, Universidad Santiago de Compostela, 27002 Lugo, Spain [ORCID]
Álvarez-Rodríguez E: Department Soil Science and Agricultural Chemistry, Engineering Polytechnic School, Universidad Santiago de Compostela, 27002 Lugo, Spain [ORCID]
Núñez-Delgado A: Department Soil Science and Agricultural Chemistry, Engineering Polytechnic School, Universidad Santiago de Compostela, 27002 Lugo, Spain [ORCID]
Barreiro A: Department Soil Science and Agricultural Chemistry, Engineering Polytechnic School, Universidad Santiago de Compostela, 27002 Lugo, Spain
Rodríguez-López L: Soil Science and Agricultural Chemistry, Faculty Sciences, University of Vigo, 32004 Ourense, Spain
Pérez-Rodríguez P: Soil Science and Agricultural Chemistry, Faculty Sciences, University of Vigo, 32004 Ourense, Spain
Arias-Estévez M: Soil Science and Agricultural Chemistry, Faculty Sciences, University of Vigo, 32004 Ourense, Spain [ORCID]
Fernández-Sanjurjo MJ: Department Soil Science and Agricultural Chemistry, Engineering Polytechnic School, Universidad Santiago de Compostela, 27002 Lugo, Spain [ORCID]
Álvarez-Rodríguez E: Department Soil Science and Agricultural Chemistry, Engineering Polytechnic School, Universidad Santiago de Compostela, 27002 Lugo, Spain [ORCID]
Núñez-Delgado A: Department Soil Science and Agricultural Chemistry, Engineering Polytechnic School, Universidad Santiago de Compostela, 27002 Lugo, Spain [ORCID]
Journal Name
Processes
Volume
10
Issue
12
First Page
2565
Year
2022
Publication Date
2022-12-02
ISSN
2227-9717
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Original Submission
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PII: pr10122565, Publication Type: Journal Article
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LAPSE:2023.1273
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https://doi.org/10.3390/pr10122565
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