Chemical reaction intumescent flame retardant cotton fabric with flame retardancy and UV resistance prepared from phytic acid, tannic acid and diethylenetriamine
International Journal of Clothing Science and Technology
ISSN: 0955-6222
Article publication date: 20 April 2022
Issue publication date: 2 August 2022
Abstract
Purpose
In this study, an eco-friendly cotton fabric (CF) treatment method was proposed to induce anti-ultraviolet and flame retardant properties, and a new application of tannic acid (TA) and phytic acid (PA) in ultraviolet protection and flame retardant fabric was put forward.
Design/methodology/approach
By combining diethylenetriamine, PA and TA on CF, a chemical reaction intumescent flame retardant CF with anti-ultraviolet and anti-flame retardance was developed.
Findings
The flame retardant and ultraviolet resistance of CF were characterized by LOI, vertical combustion, cone calorimetry and ultraviolet resistance testing. SEM, XPS, FTIR and other tests were used to analyze the chemical composition, surface morphology and residual carbon after combustion of the CF, and it was confirmed that the modified CF has good ultraviolet resistance and flame retardant performance.
Originality/value
In this study, an eco-friendly CF treatment method was proposed to induce anti-ultraviolet and flame retardant properties, and a new application of TA and PA in ultraviolet protection and flame retardant fabric was put forward.
Keywords
Acknowledgements
The authors appreciate the financial support from the Key Research and Development Plan of Hubei Province (2020BCB068).
Ethical Standards: This article does not contain any studies with human participants or animals performed by any of the authors.
Conflict of interest: The authors declare that they have no conflicts of interest to declare.
Citation
Zhou, X., Yin, Y., Huang, Z., Fu, L., Wang, L., Chen, S. and Wang, H. (2022), "Chemical reaction intumescent flame retardant cotton fabric with flame retardancy and UV resistance prepared from phytic acid, tannic acid and diethylenetriamine", International Journal of Clothing Science and Technology, Vol. 34 No. 5, pp. 716-731. https://doi.org/10.1108/IJCST-09-2021-0134
Publisher
:Emerald Publishing Limited
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