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September 16, 202531 citations

Toxic crystal violet dye removal by novel, eco-friendly seablite biochar-ferrite composite: adsorption isotherm, kinetics, and artificial neural network.

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DMDisha MehtaPDPragnesh N. DaveVKVished Kumar

Key Points

  • FCOB achieved over 95% removal of Crystal Violet from water, highlighting its efficiency in dye treatment.
  • Maximal adsorption capacity was 325.5 mg g-1, based on Langmuir isotherm modeling at optimal conditions.
  • Kinetic analysis indicated the chemical nature of adsorption best described by the pseudo-second-order model.
  • FCOB retained >275 mg g-1 after five regeneration cycles, demonstrating excellent reusability for wastewater treatment.

Abstract

Rising water demand has intensified pollution and created an urgent need for efficient treatment methods. Adsorption is a green and low-cost approach, yet conventional adsorbents often face sustainability and regeneration challenges. In this study, a novel adsorbent was developed by pyrolyzing Suaeda monoica leaf powder (LP) into biochar (BC300), followed by base treatment and coprecipitation with NiCuZnFe2O4 spinel to form a ferrite-biochar composite (FCOB). FCOB effectively removed Crystal Violet (CV) dye from aqueous solution. FE-SEM images revealed a layered morphology, while FTIR analysis confirmed multiple adsorption mechanisms, including hydrogen bonding, electrostatic attraction, surface complexation, and pore filling for CV adsorption. Optimization studies showed maximum CV removal at pH 8 with a 30 mg FCOB dose, maintaining >95% removal up to 200 mg L-1 dye concentration. For higher concentrations, 150, 250 mg L-1, the equilibrium time was 120 min. The Langmuir model indicated monolayer adsorption with a maximum capacity (q max) of 325.5 mg g-1 at 30 °C, whereas the Dubinin-Radushkevich (D-R) model (E 275 mg g-1 capacity after five regeneration cycles, demonstrating good reusability. Artificial neural network (ANN) modeling reliably predicted adsorption performance (R 2 > 0.99) using pH, dye concentration, dose, time, and temperature as inputs. These findings highlight FCOB as an economical, eco-friendly, and scalable adsorbent for dye removal from wastewater.

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Cite This Study

Mehta et al. (2025) studied this question.

synapsesocial.com/papers/68d44f8331b076d99fa56f8bhttps://doi.org/10.1039/d5ra04604a
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