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◆ Biomass Conversion and Biorefinery2026-01-26· Adsorption

Duckweed-derived magnetic adsorbent for efficient removal of methylene blue

Kelly Wong Kai Seng, Alvin Lim Teik Zheng, Kate Jeffrey, Tan Toh Hii, Eric Lim Teik Chung, Jacqueline Lease, Yoshito Andou

原始摘要(英文原文)· Original abstract
Low-cost and easily recoverable adsorbents are urgently needed for efficient treatment of dye-contaminated wastewater. In this study, a green magnetic duckweed-derived adsorbent (MDW) was synthesized via co-precipitation of Fe3O4 nanoparticles (NPs) onto dried duckweed using ascorbic acid (AA) as a reducing agent. The MDW exhibited a maximum methylene blue (MB) adsorption capacity of 78.59 mg/g under optimal conditions of pH 10, 50 mg/L initial MB concentration, 10 mg adsorbent dosage, and 60 min contact time, achieving a removal efficiency of 85.27%. Kinetic analysis showed that adsorption followed the pseudo-second-order (PSO) model (R² > 0.999), while equilibrium data were best described by the Temkin isotherm model, indicating heterogeneous surface interactions. Thermodynamic analysis revealed an exothermic and spontaneous process with negative ΔG° values across the temperature range of 298–318 K. The MDW retained over 69% of its initial removal efficiency after five regeneration cycles, confirming good reusability. Cost analysis estimated the synthesis cost at approximately RM 29.51/kg, highlighting economic feasibility. These findings demonstrate that MDW is a sustainable, low-cost, and magnetically recoverable adsorbent with strong potential for scalable wastewater treatment applications. MDW achieved 78.59 mg/g MB adsorption capacity with easy retrieval using magnet. Retained over 69% efficiency after five regeneration cycle. MDW was produced at RM 29.51/kg using ascorbic acid as reducing agent.
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Duckweed-derived magnetic adsorbent for efficient removal of methylene blue — 科研速览 Science Skim