Acid-activated chitosan-modified Iranian bentonite for adsorption of Cu(II) and Zn(II) from water; A green and sustainable water treatment approach.

Daftari, Sam; Salavati, Mojgan; Chamchali, Manoochehr Mortazavi · PLoS One · 2026

basic_science · Level V

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Abstract

This study evaluates the adsorption performance of an Iranian bentonite modified through two routes: activation with HNO3 followed by calcination at 500 °C yielding NWF adsorbent and activation with HCl followed by chitosan intercalation to obtain HWF adsorbent. Batch experiments assessed Cu2+ and Zn2+ removal from aqueous solutions under varying pH, contact time (5-45 min), sorbent dosage (10-150 mg), initial concentration (20-200 mg/L), and temperatures (20-45°C). Atomic Absorption Spectroscopy was used to evaluate heavy metal concentrations. Nonlinear isotherm fitting showed that the Langmuir model described the data well with high mass normalized capacities under the low-dose condition. Freundlich fits indicated favorable adsorption on heterogeneous surfaces. Kinetics followed the pseudo-second-order model (R² = 0.996-0.998), could be described by chemisorption and in case of NWF, faster uptake (higher k2) achieved. Optimal adsorption performance occurred at a pH of approximately 6-7, achieving equilibrium capacities (qe) as high as 99.0 mg/g and blank tests at pH ≥ 8 minimized contributions from metal hydroxide precipitation. Thermodynamic analysis has been carried out to confirm spontaneous and endothermic adsorption in temptatures ranged from 20-45°C. X-ray Diffraction, Fourier Transform Infrared Spectroscopy and Scanning Electron Microscopy corroborated successful modification and enhanced site accessibility. The results of this study showed that acid-activated and chitosan-modified bentonites are low-cost, effective, and sustainable sorbents for Cu2+ and Zn2+ removal from water, with practical relevance to wastewater treatment.

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