Cross‐Linked Chitosan/Cellulose Microspheres for Reusable Dye Adsorption and Post‐Desorption Photo‐Oxidative Treatment

Dye‐containing wastewater remains an important environmental concern because many synthetic dyes are persistent and potentially harmful to aquatic organisms and human health. In this work, a biomass‐based adsorbent was evaluated together with a separate post‐desorption photo‐oxidative treatment step. Cellulose (CL) and chitosan (CS) were used to prepare cross‐linked CS/CL (C‐CS/CL) microspheres for dye removal from water, with glutaraldehyde (GA) used to improve the structural stability of the microspheres. The synthesized C‐CS/CL microspheres exhibited improved mechanical stability and pH‐dependent dye adsorption, with preferential uptake of anionic dyes (acid blue 93 and acid black 1) and lower uptake of cationic dyes (methyl violet and methyl green). After adsorption, the dyes were eluted, allowing the C‐CS/CL microspheres to be reused for repeated dye removal. The dye‐containing eluate was subsequently subjected to UV/H 2 O 2 treatment, resulting in partial degradation of the model dyes. Overall, the C‐CS/CL microspheres enabled preferential adsorption and repeated reuse, while the separate UV/H 2 O 2 step provided subsequent treatment of the dye‐containing eluate.

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Publication Details

Journal
ChemPlusChem
Published
2026-09-29
DOI
https://doi.org/10.1002/cplu.70252
Primary Topic
Adsorption and biosorption for pollutant removal
Type
article
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article

Cross‐Linked Chitosan/Cellulose Microspheres for Reusable Dye Adsorption and Post‐Desorption Photo‐Oxidative Treatment

Jing‐Wen Chen, Jing Liu, Li Li, Chang‐Wei Xu et al.
ChemPlusChem
Adsorption and biosorption for pollutant removal
article

Cross‐Linked Chitosan/Cellulose Microspheres for Reusable Dye Adsorption and Post‐Desorption Photo‐Oxidative Treatment

Jing‐Wen Chen, Jing Liu, Li Li, Chang‐Wei Xu, Hong‐Yuan Wang, Jin Zeng, Shao‐Bo Li, Ran Chen, Yue‐Jie Li
article en

Abstract

Dye‐containing wastewater remains an important environmental concern because many synthetic dyes are persistent and potentially harmful to aquatic organisms and human health. In this work, a biomass‐based adsorbent was evaluated together with a separate post‐desorption photo‐oxidative treatment step. Cellulose (CL) and chitosan (CS) were used to prepare cross‐linked CS/CL (C‐CS/CL) microspheres for dye removal from water, with glutaraldehyde (GA) used to improve the structural stability of the microspheres. The synthesized C‐CS/CL microspheres exhibited improved mechanical stability and pH‐dependent dye adsorption, with preferential uptake of anionic dyes (acid blue 93 and acid black 1) and lower uptake of cationic dyes (methyl violet and methyl green). After adsorption, the dyes were eluted, allowing the C‐CS/CL microspheres to be reused for repeated dye removal. The dye‐containing eluate was subsequently subjected to UV/H 2 O 2 treatment, resulting in partial degradation of the model dyes. Overall, the C‐CS/CL microspheres enabled preferential adsorption and repeated reuse, while the separate UV/H 2 O 2 step provided subsequent treatment of the dye‐containing eluate.

ChemPlusChemVol. 91(10)
China Pharmaceutical University (CN), Ministry of Agriculture (CA), Ministry of Agriculture (TN)
Clean water and sanitation
Openalex Percentile: Top 21%
Adsorption and biosorption for pollutant removal
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Cross‐Linked Chitosan/Cellulose Microspheres for Reusable Dye Adsorption and Post‐Desorption Photo‐Oxidative Treatment — Jing‐Wen Chen, Jing Liu, et al. · ChemPlusChem (2026) | TGRS Research Map | TGRS