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February 9, 2026SHILAP Revista de lepidopterología0 citationsOpen Access

Optimization of malachite green adsorption from aqueous solution onto Anchote peel based activated carbon using Box Behnken design

MTMeseret Dawit TeweldebrihanMGMikiyas Abewaa GnaroMBMirzi Betasolo

Key Points

  • The aim is to optimize the adsorption of malachite green from water using activated carbon from anchote peel.
  • Preparation of adsorbent from anchote peel via chemical and thermal activation.
  • Optimization using Box–Behnken design with four variables: pH, dye concentration, adsorbent dosage, and contact time.
  • Conducted 30 experimental runs based on the optimized parameters.
  • Achieved maximum dye removal efficiency of 99.07% at pH 9, 50 mg/L concentration, 1.5 g dosage, and 90 min contact time.
  • ANOVA showed strong agreement between predicted and actual adsorption values (R² = 0.9935 and 0.9917).

Abstract

Malachite green–contaminated wastewater discharged without proper treatment poses serious risks to human health and the environment. Therefore, this study evaluated the adsorptive removal of malachite green from aqueous solution using activated carbon derived from anchote peel. The adsorbent was prepared via chemical activation with phosphoric acid followed by thermal activation in the absence of oxidizing agents. Adsorption optimization was performed using the Box–Behnken design of response surface methodology with four variables: pH (3, 6, 9), initial dye concentration (50, 100, 150 mg/L), adsorbent dosage (0.5, 1.0, 1.5 g/100 mL), and contact time (30, 60, 90 min), resulting in 30 experimental runs. The maximum dye removal efficiency of 99.07% was achieved at pH 9, 50 mg/L initial concentration, 1.5 g/100 mL dosage, and 90 min contact time. ANOVA confirmed strong agreement between adjusted and predicted values (R² = 0.9935 and 0.9917) based on the quadratic regression model. These findings demonstrate that anchote peel–based activated carbon is an efficient adsorbent for malachite green removal, and its optimization using the Box–Behnken design provides a promising approach for large-scale treatment of dye-laden industrial wastewater

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Cite This Study

Teweldebrihan et al. (2026) studied this question.

synapsesocial.com/papers/69897983f0ec2af6756e7392https://doi.org/10.1051/epjconf/202635101010
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