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Self-intumescent polyelectrolyte for flame retardant poly (lactic acid) nonwovens.

Authors :
Wang, Xingguo
Wang, Wenjia
Wang, Shuheng
Yang, Yufan
Li, Hongfei
Sun, Jun
Gu, Xiaoyu
Zhang, Sheng
Source :
Journal of Cleaner Production. Feb2021, Vol. 282, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

The demand for eco-friendly poly (lactic acid) (PLA) nonwovens grows at a high rate in the past several decades, however, only a little attention has been received for flame retardant PLA nonwoven fabrics. In this work, a novel halogen-free self-intumescent polyelectrolyte tris (hydroxymethyl)-aminomethane polyphosphate (APTris) was synthesized by reacting ammonium polyphosphate with tris (hydroxymethyl) aminomethane, and was then used to improve the fire resistance of PLA nonwovens via a dip-nip process. The flammability characterization indicated the limiting oxygen index value was increased to 30.0% from 18.3%, and the damaged area in the vertical burning test was reduced by about 87.0% by the presence of APTris. The cone calorimeter test results revealed that the peak heat release rate and total heat release of the treated sample were decreased by 41.0% and 28.2% respectively compared with that of the control PLA nonwoven sample. The char residue was increased to 12.3 from 1.7 wt % at 800 °C. It is suggested that the dense char barrier formed at the presence of APTris prevents heat, smoke, and gas transfer, and hence enhance thermal dilatability and flame retardancy of PLA nonwovens. This simple sustainable halogen-free treatment has great potential to produce cleaner commercialized flame-retardant PLA nonwovens. Image 1 • An intumescent polyelectrolyte (APTris) was prepared by ion exchange reaction. • The APTris significantly improved the flame retardancy of PLA nonwovens. • The molten droplet of treated PLA nonwovens was reduced. • The APTris was carbonized to form compact protective layer during combustion. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09596526
Volume :
282
Database :
Academic Search Index
Journal :
Journal of Cleaner Production
Publication Type :
Academic Journal
Accession number :
147855955
Full Text :
https://doi.org/10.1016/j.jclepro.2020.124497