Novel Collagen-Chitosan Based Hydrogels Reinforced with Manganite as Potential Adsorbents of Pb2+ Ions

The contamination of water by Pb 2+ ions is a problem that requires an imminent solution. Design of hydrogels based on polymers as well as inorganic phases is an innovative alternative for the generation of matrices with adapted properties. This work proposes the synthesis of a novel composite hydro...

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Veröffentlicht in:Journal of polymers and the environment 2020-11, Vol.28 (11), p.2864-2879
Hauptverfasser: Claudio-Rizo, Jesús A., Burciaga-Montemayor, Nidia G., Cano-Salazar, Lucia F., Flores-Guía, Tirso E., Cabrera-Munguía, Denis A., Herrera-Guerrero, Adan, Soriano-Corral, Florentino
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Sprache:eng
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Zusammenfassung:The contamination of water by Pb 2+ ions is a problem that requires an imminent solution. Design of hydrogels based on polymers as well as inorganic phases is an innovative alternative for the generation of matrices with adapted properties. This work proposes the synthesis of a novel composite hydrogel based on collagen-polyurethane-chitosan reinforced with manganite; this inorganic phase increases the velocity of the adsorption process of the Pb 2+ ions. The effect of the concentration of manganite on the properties of composite hydrogels is studied. The results indicate that the composite reinforced with manganite presents an amorphous structure, improved mechanical properties and resistance to the both acidic and proteolytic degradation. The hydrogel with 35 wt% of manganite show a removal rate of Pb 2+ of 91 ± 6% at 24 h. These hydrogel composites could represent an efficient and sustainable alternative for the removal of Pb 2+ ions from contaminated water. Graphic Abstract
ISSN:1566-2543
1572-8919
DOI:10.1007/s10924-020-01822-8