An eco-friendly, highly efficient, and transparent coating derived from guar gum and citric acid for flame retardant treatment of cotton fabrics

A highly efficient, bio-ecofriendly, and transparent flame retardant (FR) for cotton fabric was developed and deposited onto the cellulose skeletal structure of cotton fabric through a one-pot sol-gel process. The flame retardant functional coating is composed of ammonium polyphosphate (APP), guar g...

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Veröffentlicht in:International journal of biological macromolecules 2023-12, Vol.253 (Part 7), p.127506-127506, Article 127506
Hauptverfasser: Kalali, Ehsan Naderi, Abdel-Mohsen, A.M., Shabestari, Marjan Entezar, Pop-Georgievski, O., Stary, Zdenek, Abdel-Rahman, Rasha M., Zhao, Chengshou, Wang, Xin, Esmaeili, Nima, Lotfian, Saeid, Petrus, Josef
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Sprache:eng
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Zusammenfassung:A highly efficient, bio-ecofriendly, and transparent flame retardant (FR) for cotton fabric was developed and deposited onto the cellulose skeletal structure of cotton fabric through a one-pot sol-gel process. The flame retardant functional coating is composed of ammonium polyphosphate (APP), guar gum (GG), citric acid (CA), and a negligible amount of catalyst. Cotton fabrics were impregnated with different concentrations of ammonium polyphosphate and guar gum, with citric acid as a crosslinking agent. The overall crosslinking and grafting process was proven by FTIR and XPS. Based on the results, the designed coating exhibits over 90 % transmittance in the visible region. A 15 g/m2 flame-retardant coating induces excellent flame retardant efficiency at ultra-low flame-retardant concentrations of less than 6.25 wt%. Only a 5.25 wt% flame retardant concentration demonstrated condensed phase action, which resulted in 58.5 % and 73.6 % reductions in the pHRR and THR, respectively. Moreover, the limiting oxygen index (LOI) value showed a 74 % increase. The mechanical performance of FR coated cotton fibers was slightly reduced. •A transparent flame retardant coating made of bio-based and eco-friendly mass was developed for cotton fabrics.•Only a 5.25 wt% flame retardant coating loading resulted in 58.5 % and 73.6 % reductions in the pHRR and THR, respectively.•The designed coating exhibited over 90 % transmittance in the visible region.
ISSN:0141-8130
1879-0003
1879-0003
DOI:10.1016/j.ijbiomac.2023.127506