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◆ Environmental science and pollution research international2026-09-25

Chitosan-polyvinyl alcohol film supported copper nanoparticles: an efficient and reusable catalyst for the reduction of azo dyes and nitrophenol.

Neethu Das Pinnanath, Govind Raj Kovummal

原始摘要(英文原文)· Original abstract
This study reports the synthesis, characterization, and environmental application of a nanocatalytic system prepared by immobilizing copper nanoparticles on a compact film made from chitosan (CS) and polyvinyl alcohol (PVA) blend. The resulting dip catalyst, CuNPs@CS/PVA, was evaluated for the catalytic reduction of 4-nitrophenol (4-NP) and two organic dyes: Congo red (CR), an anionic dye, and methylene blue (MB), a cationic dye. The catalyst exhibits exceptional catalytic activity, as CuNPs@CS/PVA film efficiently mediated the reduction of CR, MB, and 4-NP, as well as their mixed-pollutant system, within 4 min. Furthermore, the structural design of catalyst film allows for easy, rapid retrieval from treated solutions. The catalyst retained more than 90% reduction efficiency for CR over eight consecutive cycles, while the recycling studies for MB and 4-NP also demonstrated high catalytic activity over the investigated cycles. These results demonstrate the mechanical stability and reusability of the CS/PVA-supported catalyst. Overall, the novelty of this work lies in achieving rapid pollutant reduction in complex, mixed-pollutant matrices using a highly recoverable and reusable dip catalyst system for environmental remediation.
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Chitosan-polyvinyl alcohol film supported copper nanoparticles: an efficient and reusable catalyst for the reduction of azo dyes and nitrophenol. — 科研速览 Science Skim