Green Flame-Retardant Composites Based on PP/TiO2/Lignin Obtained by Melt-Mixing Extrusion

材料科学 木质素 抗弯强度 复合材料 挤压 阻燃剂 锥形量热计 纤维素 极限抗拉强度 环境友好型 热解 化学工程 烧焦 有机化学 化学 生物 工程类 生态学
作者
Marlene Andrade-Guel,Christian Javier,Carlos Alberto Ávila‐Orta,Marissa Pérez-Álvarez,Gregorio Cadenas‐Pliego,Pamela Yahaira Reyes-Rodríguez,Leopoldo J. Ríos-González
出处
期刊:Polymers [MDPI AG]
卷期号:14 (7): 1300-1300 被引量:26
标识
DOI:10.3390/polym14071300
摘要

Nowadays, highly flammable and harmful plastic materials are used in many daily applications. To prevent burning of materials, other harmful molecules or materials that are not environmentally friendly are added to plastics. To overcome this environmental issue, new materials have been investigated. Lignin, an industrial by-product, is an abundant biopolymer that can be used in fire safety plastics; it is considered a renewable and readily available resource. In this work, PP–TiO2/lignin composites were obtained with TiO2/lignin mixtures through the melt extrusion process, with different weight percentages of nanoparticles (10, 20, 25, and 30 wt.%). The PP–TiO2/lignin composites were characterized by XRD, FTIR, TGA, and SEM. Furthermore, cone calorimetry tests and the mechanical properties were evaluated. Cone calorimetry tests revealed that the introduction of 25 wt.% TiO2–lignin to the PP matrix reduced the peak of heat release rate (PHRR) and total heat release (THR) by 34.37% and 35.45%, respectively. The flame retardancy index (FRI) values of the composites were greater than 1.0 and were classified as good; the highest value of 1.93 was obtained in the PP-30 sample. The tensile tests demonstrated that the flexural modulus of the composites increased gradually with increasing lignin and TiO2 content, and the flexural strength decreased slightly. The use of lignin in PP composites can be an excellent alternative to synthesize new materials with improved flame-retardant properties and which is friendly to the environment.
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