Vortex-assisted dispersive solid-phase extraction of tetracyclines in honey and eggs using green sulfonated carbon
Kraingkrai Ponhong1, Tammanoon Nilnit1, Pattarawarin Jantawalit1
1Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Mahasarakham University, Maha Sarakham, 44150, Thailand.
Abstract:
Residues of tetracycline antibiotics in animal-derived foods pose significant safety risks. This study developed a novel, environmentally friendly, and highly efficient method for the extraction and analysis of tetracyclines from food matrices. This approach utilized a sulfonated carbon (SC) adsorbent synthesized from a readily available and sustainable resource: spent coffee grounds via a facile, simple, and rapid ultrasound-assisted one-pot carbonization and sulfonation method. Comprehensive characterization using FTIR, SEM, TEM-EDX, XPS, BET, and zeta potential confirmed the formation of a porous carbonaceous structure functionalized with sulfonic acid groups favorable for antibiotic adsorption. The SC was applied as an effective sorbent in vortex-assisted dispersive solid-phase extraction coupled with HPLC-UV for the determination of four tetracyclines. The developed method demonstrated linearity of 10.0-500 µg L⁻¹ (R² > 0.9892), low limits of detection (5.0 µg L⁻¹), and satisfactory precision (RSD) < 11%. The method was successfully applied to honey and eggs, yielding recoveries between 74.3% and 119.4%. This approach effectively repurposes food waste into a high-performance analytical tool, offering a rapid, sustainable, and cost-effective solution for monitoring antibiotic residues in food systems.


