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March 7, 2026Separation and Purification Technology4 citationsOpen Access

Adsorption columns for the removal of hazardous hexavalent chromium, arsenite and fluoride ions from aqueous media by novel N, P - doped graphene oxide/chitosan composites

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KMKonstantinos N. MaroulasATAthanasia K. TolkouPEPavlos Efthymiopoulos

Key Points

  • The research aims to explore the effectiveness of P,N co-doped graphene oxide/chitosan composites in removing hazardous ions from wastewater.
  • Developed composite beads using chitosan and P,N co-doped graphene oxide.
  • Characterized materials with SEM, N2 porosimetry, XRD, and FTIR.
  • Conducted batch and column adsorption studies under various conditions.
  • Assessed kinetic models and thermodynamics for adsorption processes.
  • Cs/P,N-GO beads removed 1.47 mg/g of As(III), 128.55 mg/g of Cr(VI), and 127.76 mg/g of F− at pH 3.
  • Adsorption kinetics fit pseudo-second-order and intra-particle diffusion models indicating chemisorption.
  • Toth and Freundlich isotherm models provided the best fit for adsorption data.
  • Beads maintained ~90% performance after 10 cycles of use.

Abstract

Heavy metal and fluoride contamination in wastewater is a major concern for both people and the environment. This has necessitated the use of effective and sustainable removal technologies. Adsorption is the most prevalent technology because of its flexibility, simplicity, and cost-effectiveness. This study suggests the application of chitosan (Cs) and phosphorous‑nitrogen (P,N) co-doped graphene oxide (GO) composite beads for the removal of Cr(VI), As(III) and F − , evaluating it both in batch and column studies. The materials were characterized using Scanning Electron Microscopy (SEM), N 2 porosimetry, X-ray Diffraction (XRD), and Fourier Transform Infrared Spectroscopy (FTIR), while also testing their mechanical properties, swelling and stability over a wide range of pH. The adsorption evaluation showed that Cs/P,N-GO can effectively remove up to 1.47 mg/g, 128.55 mg/g and 127.76 mg/g of As(III), Cr(VI) and F − , respectively, at pH 3 using 0.5 g/L of the beads. The kinetic data were described well by pseudo-second-order (PSO) and intra-particle diffusion (IPD) models, indicating chemisorption and intra-particle diffusion, while Toth and Freundlich fit the isothermal data better. Thermodynamic data showed that the process was endothermic and spontaneous. Lastly, reusability studies revealed that the beads can be used for up to 10 cycles, with a ~ 10% loss in their initial performance for all 3 studied ions. • P,N co-doped GO/Chitosan beads were evaluated for Cr(VI), As(III) and F − removal. • Cs/P,N-GO beads showed good reusability and stability. • Extensive column studies under various conditions were performed. • Cs/P,N-GO performance was evaluated towards coexisting ions and real wastewater.

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Cite This Study

Maroulas et al. (2026) studied this question.

synapsesocial.com/papers/69abc2855af8044f7a4ec2fbhttps://doi.org/10.1016/j.seppur.2026.137465
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