Related Experiment Video
Updated: May 24, 2025

Immobilization of Multi-biocatalysts in Alginate Beads for Cofactor Regeneration and Improved Reusability
Published on: April 22, 2016
Bioinspired chitosan/PVA beads cross-linked with LTH-doped bacterial cellulose hydrochar for high-efficiency removal
Elias Mosaffa1, Mina Oroujzadeh2, Nasim Amiri Ramsheh3
1Dr. K. C. Patel R & D Centre, Charotar University of Science and Technology (CHARUSAT), 388 421 Anand, Gujarat, India; P D Patel Institute of Applied Sciences, Charotar University of Science and Technology (CHARUSAT), 388 421 Anand, Gujarat, India.
Abstract:
This study presents the development of eco-friendly, bioinspired Chitosan (CS)/Polyvinyl alcohol (PVA) composite beads cross-linked with layered triple hydroxide (LTH) doped bacterial cellulose microfilament (BCM) Hydrochar as a highly efficient adsorbent for removing Vancomycin (VAN) and Azithromycin (AZM) from aqueous solutions. The composite beads were synthesized using a bioinspired approach that integrates 1D BCM Hydrochar and 2D LTH plates into a 3D hybrid structure, offering high porosity, diverse functional groups, and pH sensitivity. The adsorbents were characterized using FTIR, EDX, SEM, XRD, and zeta potential analysis. Optimal adsorption conditions, including 60 min of contact time, 0.133 g·L-1 dosage, and pH levels of 8 for VAN and 8.5 for AZM, achieved maximum adsorption capacities of 1845 mg·g-1 for AZM and 2182 mg·g-1 for VAN at a 500 mg·L-1 concentration. The adsorption mechanisms involved physisorption and chemisorption, influenced by surface heterogeneity and interactions. VAN exhibited stronger adsorption, while AZM displayed more uniform adsorption due to weaker interactions. The adsorbent retained high adsorption capacity across multiple regeneration cycles and demonstrated resilience in the presence of coexisting compounds, making it suitable for long-term wastewater treatment. This work highlights the promise of carbohydrate-derived, sustainable LTH@BCM char-CS/PVA composite beads as high-capacity adsorbents, offering an effective, eco-friendly solution for mitigating pharmaceutical pollutants in water.
More Related Videos
08:59A Freeze-Thawing Method to Prepare Chitosan-Polyvinyl alcohol Hydrogels Without Crosslinking Agents and Diflunisal Release Studies
Published on: January 14, 2020
08:30A Complete Method for Evaluating the Performance of Photocatalysts for the Degradation of Antibiotics in Environmental Remediation
Published on: October 6, 2022