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Research Article Open access CC BY 4.0

Corn Stalk Biomass as an Efficient Biosorbent for Aqueous Cobalt (II) Ions Removal

Oboyi Matthew Echeofun, Luntsi John, Christian Faithdin Chukwudera, Bello Caleb Bambur, Abdulhakim Olatunji, Johnson Sandra Fanwi, Kabiru Danlami, Habu Nuhso Eunice

Asian Journal of Chemical Sciences · pp. 100–108 · Published 20 Aug 2025

10.9734/ajocs/2025/v15i4386

Abstract

This study investigates the adsorption behavior of cobalt(II) ions from aqueous solutions using carbon synthesized from corn-stalk powder as a low-cost and eco-friendly adsorbent. The effects of key operational parameters adsorbent dosage, solution pH, contact time, and initial metal ion concentration were systematically examined to determine their influence on adsorption efficiency and capacity. Results revealed that cobalt(II) adsorption decreased with increasing adsorbent dosage, with a maximum adsorption capacity of 132.13 mg/g observed at a dosage of 0.1 g. The adsorption process was found to be pH-dependent, with the optimal removal recorded at pH 9.1, yielding a capacity of 129.63 mg/g. Contact time significantly influenced adsorption, as the capacity increased with time and peaked at 60 minutes (146.05 mg/g), beyond which equilibrium was attained. Additionally, increasing the initial concentration of cobalt(II) ions led to higher adsorption capacity, with the highest value (202.68 mg/g) observed at 250 mg/L. These findings suggest that corn-stalk-derived carbon is an effective and sustainable adsorbent for removing cobalt(II) ions, and optimizing operational conditions can significantly enhance its performance in water treatment applications.

Adsorption cobalt(II) ions corn-stalk carbon contact time montmorillonite-silica nanocomposite pH water remediation sustainable nanomaterials

Cited by 1

Low-Cost Adsorbents for Water Treatment: A Sustainable Alternative for Pollutant Removal

L. Nishi, Anna Carla Ribeiro, C. Paraíso · Processes · 2025

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