1 Department of Chemistry, School of physical sciences, Federal University of Technology Akure, Nigeria.
2 Department of Process and Life Science Engineering, Lund University, Sweden.
3 Department of Environmental Science, University of New Haven, West Haven, Connecticut, USA.
4 Department of Agricultural Engineering, Federal University of Technology Akure, Ondo state, Nigeria.
GSC Biological and Pharmaceutical Sciences, 2026, 36(01), 001-008
Article DOI: 10.30574/gscbps.2026.36.1.0237
Received on 10 May 2026; revised on 29 June 2026; accepted on 01 July 2026
Arsenic contamination of water poses a significant threat to public health and the environment, particularly in developing regions. This study investigated the effectiveness of Fenton’s reagent–pretreated plantain pseudo-stem (PPS) as a low-cost and sustainable biosorbent for the removal of arsenic from aqueous solutions. The plantain pseudo-stem was chemically modified using Fenton’s reagent to enhance its surface characteristics and adsorption performance. Batch adsorption experiments were conducted to evaluate the effects of adsorbent dosage, contact time, pH, and initial arsenic concentration on arsenic (III) removal. Arsenic trichloride was used to prepare synthetic contaminated water, and residual arsenic concentrations were quantified using atomic absorption spectroscopy. The results showed that arsenic removal efficiency increased with increasing adsorbent dosage and was strongly influenced by solution pH, with maximum adsorption occurring under alkaline conditions. Rapid adsorption was observed within the first few minutes of contact, indicating high affinity between arsenic species and the modified biosorbent surface. The Fenton’s reagent pretreatment significantly improved arsenic uptake compared to untreated PPS, demonstrating the effectiveness of surface modification. Fenton’s reagent–pretreated plantain pseudostem proved to be an efficient, eco-friendly, and economically viable adsorbent for arsenic removal from contaminated water. The study highlights the potential of agricultural waste–derived materials for sustainable water treatment applications and provides a foundation for further optimisation and scale-up studies.
Adsorbent; Contact Time; Dosage; pH; Concentration
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Taiwo Mary Oriyomi, Uzoma Eucharia Ibeanu, Adeyemi Abejoye, Oluwatobi Abimbola and Olubunmi Oluyemi Obaseki. Removal of arsenic from contaminated water using Fenton’s reagent–modified plantain pseudo-stem. GSC Biological and Pharmaceutical Sciences, 2026, 36(01), 001-008. Article DOI: https://doi.org/10.30574/gscbps.2026.36.1.0237.