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M. T. Hoang

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Open access Jul 2026

Removal of phosphate from activated biochar prepared from bentonite biochar composite: Kinetic, equilibrium, thermodynamic adsorption

Excess phosphorus threatens both aquatic ecosystems and human health. This study investigated the kinetic, equilibrium, and thermodynamic behavior of phosphate (PO43–) adsorption using a low-cost composite adsorbent synthesized from bentonite and rice-husk–derived activated carbon. Batch experiments examined the influence of initial PO43– concentration, temperatures, contact time, pH, and co-existing anions. The findings revealed that the PO43– adsorption onto synthesized material was best represented by Langmuir isotherm theory. Kinetic analyses showed that PO43– adsorption follows both pseudo-first and pseudo-second-order models, exhibiting strong correlation coefficients (R² = 0.99). The optimal pH for adsorption was identified as 7. The presence of co-existing anions such as CO32–, SO42–, and Cl⁻ notably decreased the efficiency of PO43– removal. The synthesis of material based on bentonite and biochar from rice husk demonstrates strong potential for PO43– removal and recovery from water.

T. T. Hoài, H. Nguyen, M. T. Hoang et al. · 0 citations