Preparation of a novel lignin-based flame retardant for epoxy resin

A renewable and eco-friendly lignin-based flame retardant was prepared to improve the flame retardant performance of epoxy resin (EP) by green and convenient one-step reaction of Ammonium Polyphosphate (APP), Melamine (MEL) and Al-lignin. Thermal and flame retardant properties test results showed th...

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Veröffentlicht in:Materials chemistry and physics 2021-02, Vol.259, p.124101, Article 124101
Hauptverfasser: Liang, Dingxiang, Zhu, Xiaojun, Dai, Peng, Lu, Xinyu, Guo, Haoquan, Que, Han, Wang, Dandan, He, Tao, Xu, Chaozhong, Robin, Hossain Mahmud, Luo, Zhenyang, Gu, Xiaoli
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Sprache:eng
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Zusammenfassung:A renewable and eco-friendly lignin-based flame retardant was prepared to improve the flame retardant performance of epoxy resin (EP) by green and convenient one-step reaction of Ammonium Polyphosphate (APP), Melamine (MEL) and Al-lignin. Thermal and flame retardant properties test results showed that the properties of epoxy resin were significantly improved after adding 20% of flame retardant. Its carbon residue increased by 15.3 wt % and limit oxygen index value increased from 26.7% to 36.1%. In addition, it also showed excellent smoke suppression effect and low heat release rate. Its total smoke production (TSP) was 9.9 m2 and total heat release (THR) rate was 53.1 MJ/m2. In contrast, the TSP and THR of EP were much higher than 9.9 m2 and 53.1 MJ/m2, respectively. Kinetic analysis showed that the conversion rate ranging from 0.05 to 0.85 corresponded to activation energy between 97.83 kJ mol−1 and 327.45 kJ mol−1. Flame retardant mechanism showed that the performance of this renewable and eco-friendly lignin-based flame retardant was excellent in fire suppression and smoke suppression. [Display omitted] •A renewable and eco-friendly lignin-based flame retardant was prepared.•The flame retardant had better smoke suppression effect.•A flame retardant mechanism of a lignin-based flame retardant was proposed.
ISSN:0254-0584
1879-3312
DOI:10.1016/j.matchemphys.2020.124101