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April 29, 2026Water0 citationsOpen Access

Comparative Study of Reusable Chitosan-Based Hydrogel Films for Removal of Sunset Yellow Dye from Water

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AOAna Paula OrchulhakAMAna Carolina MiottoAPAlexandre Tadeu Paulino

Key Points

  • This study investigates the effectiveness of chitosan-based hydrogels for removing Sunset Yellow dye from water.
  • Synthesized pure chitosan hydrogel and doped films using niobium oxide and activated carbon.
  • Assessed sorption capacity and recyclability of films for dye removal.
  • Applied adsorption kinetic models and thermodynamic analysis to evaluate performance.
  • Equilibrium reached in 240 min with adsorbed amounts of 18.58 to 18.79 mg g−1 at 30 °C.
  • Pseudo-first-order kinetic model best described the data, with optimal statistical criteria values.
  • Thermodynamic analysis indicated a spontaneous, exothermic process.
  • Electrostatic interactions and physisorption were identified with varying dopants.
  • Recycling tests showed 80% efficiency for all films after three cycles.

Abstract

Sunset Yellow is a water-soluble synthetic dye resistant to degradation and stable under various conditions, posing an environmental challenge. In the present study pure chitosan hydrogel (PCH) films were synthesized, followed by the assessment of sorption capacity and recyclability compared to chitosan-based films doped with niobium oxide (CHN) or activated carbon (CHC). The aim was to promote the application of sorption methods for Sunset Yellow dye using these films as a treatment option for the pollutant, with the analysis of the effectiveness of the method and its behavior using adsorption kinetic models and thermodynamic analysis. Equilibrium was reached at 240 min for all films tested, with the adsorbed amounts ranging from 18.58 to 18.79 mg g−1 at 30 °C, when the highest kinetic rate constants were observed. The pseudo-first-order kinetic model best described the experimental data, with the lowest Bayesian information criterion, Akaike information criterion, and mean absolute error values. Thermodynamic analysis indicated a spontaneous, exothermic process, with interactions ranging from electrostatic interactions in CHC and PCH to physisorption in CHN. Recycling tests showed 80% efficiency after the third cycle for all three films. These findings highlight the potential of chitosan-based films as an efficient option for removing Sunset Yellow dye from water, thus improving water quality and enhancing wastewater treatment.

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Cite This Study

Orchulhak et al. (2026) studied this question.

synapsesocial.com/papers/69f154c0879cb923c4944f49https://doi.org/10.3390/w18091024
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