Valorization of Industrial Lignin as Biobased Carbon Source in Fire Retardant System for Polyamide 11 Blends

热重分析 烧焦 磷化氢 阻燃剂 聚酰胺 热稳定性 材料科学 锥形量热计 化学工程 热分解 可燃性 木质素 量热法 热解 高分子化学 有机化学 化学 复合材料 工程类 物理 热力学
作者
Neeraj Mandlekar,Aurélie Cayla,François Rault,Stéphane Giraud,Fabien Salaün,Jin-Ping Guan
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:11 (1): 180-180 被引量:25
标识
DOI:10.3390/polym11010180
摘要

In this study, two different types of industrial lignin (i.e., lignosulphonate lignin (LL) and kraft lignin (DL)) were exploited as charring agents with phosphorus-based flame retardants for polyamide 11 (PA11). The effect of lignins on the thermal stability and fire behavior of PA11 combined with phosphinate additives (namely, aluminum phosphinate (AlP) and zinc phosphinate (ZnP)) has been studied by thermogravimetric analysis (TGA), UL 94 vertical flame spread, and cone calorimetry tests. Various blends of flame retarded PA11 were prepared by melt process using a twin-screw extruder. Thermogravimetric analyses showed that the LL containing ternary blends are able to provide higher thermal stability, as well as a developed char residue. The decomposition of the phosphinates led to the formation of phosphate compounds in the condensed phase, which promotes the formation of a stable char. Flammability tests showed that LL/ZnP ternary blends were able to achieve self-extinction and V-1 classification; the other formulations showed a strong melt dripping and higher burning. In addition to this, cone calorimetry results showed that the most enhanced behavior was found when 10 wt % of LL and AlP were combined, which strongly reduced PHRR (−74%) and THR (−22%), due to the interaction between LL and AlP, which not only promotes char formation but also confers the stability to char in the condensed phase.
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