Bioproducts Discovery and Development Centre, Department of Plant Agriculture, Crop Science Building, University of Guelph, 50 Stone Road East, Guelph, Ontario, N1G 2W1, Canada.
School of Engineering, Thornbrough Building, University of Guelph, 50 Stone Road East, Guelph, Ontario, N1G 2W1, Canada.
Sci Rep. 2019 Nov 4;9(1):15971. doi: 10.1038/s41598-019-52039-2.
The flame retardancy of an engineering plastic, poly(butylene terephthalate) (PBT), with a biobased flame retardant (FR) made from phosphorylated linseed oil (PLO) and phosphorylated downstream corn oil (PCO) was studied. Different phosphorus moieties were incorporated into the vegetable oil backbone through a ring-opening reaction. The chemical structure of the phosphorylated oil was confirmed by Fourier-transform infrared (FTIR) and nuclear resonance magnetic (NMR) spectroscopy. It was found that the incorporation of only 7.5 wt% of PLO was sufficient to change the UL-94 fire class of PBT from non-rating to V-0. The flame-retardancy mechanism of the PBT/PLO blends was evaluated from TGA-FTIR analysis. The combined effects of the gas phase mechanism and the dripping tendency of the blends aided to retard the flame propagation effectively. As the synthesized PLO and PCO contained high free fatty acids, the acid-ester exchange reaction occurred in the blends to form oligomers during the ignition. As a result, the blend dripped immediately and the drips carried all the heat to prevent fire. This work suggests that this sustainable biobased FR could be a desirable alternative to halogen-based FRs for PBT and other engineering polymers to develop more environmentally friendly FR products for various future applications.
研究了一种基于生物的阻燃剂(FR)——磷酸化亚麻籽油(PLO)和磷酸化下游玉米油(PCO),对工程塑料聚对苯二甲酸丁二醇酯(PBT)的阻燃性能的影响。不同的磷基团通过开环反应被引入到植物油主链中。通过傅里叶变换红外(FTIR)和核磁共振(NMR)光谱证实了磷酸油的化学结构。结果发现,只需加入 7.5wt%的 PLO 就足以将 PBT 的 UL-94 防火等级从非评级提高到 V-0。通过 TGA-FTIR 分析评估了 PBT/PLO 共混物的阻燃机理。气相机制和共混物的滴落倾向的综合作用有效地阻碍了火焰的传播。由于合成的 PLO 和 PCO 含有较高的游离脂肪酸,在共混物中发生了酸-酯交换反应,在点火时形成了低聚物。结果,共混物立即滴落,滴落物带走了所有的热量,防止了火灾。这项工作表明,这种可持续的生物基 FR 可以作为 PBT 和其他工程聚合物中卤系 FR 的理想替代品,为各种未来的应用开发更环保的 FR 产品。