Towards a Molecular Level Understanding of the Sulfanilamide-Soil Organic Matter-Interaction
A. A. Ahmed, S. Thiele-Bruhn, P. Leinweber, O. K\"uhn

TL;DR
This study combines experimental sorption data with quantum chemical modeling to elucidate the molecular interactions of sulfanilamide with soil organic matter, revealing key interaction mechanisms and physical properties influencing sorption.
Contribution
It introduces an integrated experimental and theoretical approach to understand organic pollutant-soil interactions at the molecular level, advancing beyond previous purely empirical studies.
Findings
Sorption capacities increase with soil organic matter content.
Hydrogen bonding and π-π interactions are key in SAA-soil binding.
Physical properties like dipole moment influence SAA-SOM interactions.
Abstract
In-depth understanding of the sorption mechanisms of organic pollutants, like the antibiotic sulfanilamide (SAA), in soil requires a combined experimental and theoretical approach. Therefore, sorption experiments of SAA on well-characterized samples of soil size-fractions were combined with the modeling of SAA-soil-interaction via quantum chemical calculations. Freundlich unit capacities were determined in batch experiments and it was found that they increase with the soil organic matter (SOM) content according to the order fine silt > medium silt > clay > whole soil > coarse silt > sand. The calculated binding energies for mass-spectrometrically quantified sorption sites followed the order ionic species > peptides > carbohydrates > phenols and lignin monomers > lignin dimers > heterocyclic compounds > fatty acids > sterols > aromatic compounds > lipids, alkanes, and alkenes. SAA forms…
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