Climate & Environmentarticle2026-08-05

Magnetically modified orange peel powder: A sustainable and recoverable adsorbent for enhanced removal of Rhodamine B

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Abstract

Orange peel powder (OPP) has been widely explored for dye adsorption; however, its limited adsorption capacity and poor separation efficiency restrict its practical applicability. In this study, magnetic Fe 3 O 4 nanoparticles were successfully integrated with OPP through a green synthesis approach, yielding a mesoporous composite (OPP‑ Fe 3 O 4 ), which was evaluated for the removal of Rhodamine B (RhB) dye. Comprehensive characterization confirmed the successful formation of the mesoporous OPP‑Fe 3 O 4 structure. Adsorption experiments revealed a high removal efficiency of 93.5% under optimized conditions. The adsorption behavior aligned most closely with the Freundlich isotherm and the pseudo‑second‑order kinetic model, indicating a heterogeneous adsorption surface and a mechanism dominated by chemisorption. Thermodynamic analysis further verified that the adsorption process is both spontaneous and exothermic. The maximum adsorption capacity (q max ) was determined to be 61.087 mg g −1 . Additionally, the mesoporous OPP‑Fe 3 O 4 composite exhibited excellent durability and recyclability, maintaining high adsorption efficiency over five consecutive adsorption-desorption cycles. The optimized adsorption performance is attributed to the strong interaction, increased surface area, porous architecture, and the presence of additional reactive centers generated through the synergistic interaction between OPP and Fe 3 O 4 , all of which collectively improve adsorption efficiency. Overall, this study demonstrates a green and effective synthesis route for magnetically modified orange peel powder, producing a mesoporous, high‑surface‑area material with strong adsorption capability and excellent recyclability for next‑generation environmental applications.

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View paper (DOI)Open access versionOpenAlexNext MaterialsPublished 2026-08-05

Authors: Muhammad Mohsin Ali Khan, Muhammad Farooq Khan, Ahmed Ismail, Muhammad Zahid

Institutions: King Fahd University of Petroleum and Minerals, Sichuan University of Arts and Science, University of Peshawar