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生物基氮磷高分子阻燃剂在胶合板中的原位聚合及阻燃机理

In Situ Polymerization and Flame Retardant Mechanism of Bio-Based Nitrogen and Phosphorus Macromolecular Flame Retardant in Plywood.

作者信息

Yang Guochao, Zhang Qiuhui

机构信息

MOE Key Laboratory of Wooden Material Science and Application, Beijing Forestry University, No. 35, Tsinghua East Road, Haidian District, Beijing, 100083, P. R. China.

出版信息

Macromol Rapid Commun. 2022 Apr;43(8):e2200018. doi: 10.1002/marc.202200018. Epub 2022 Mar 7.

Abstract

To improve the flame retardant performance of plywood and reduce the reagent loss and moisture absorption of the flame retardant, a bio-based supramolecular flame retardant is prepared by vacuum-pressure impregnation and high-temperature in situ polymerization in plywood. The best value of bonding strength appears at 170 °C, and the limiting oxygen index (LOI) of 170BF-B plywood is 42.3%. After hot pressing, the moisture absorption rate of the 170BF-B veneer is only 18.51%, while the loss resistance rate achieves 83.45%. Its residue at 700 °C is 91.36% higher than that of poplar veneer. In the combustion process, the peak value of heat release rate (PHRR) and heat release rate (HRR) of 170BF-B plywood are only 10.69% and 37.11% of that of untreated plywood. After combustion, an intumescent flame retardant layer exhibits a graphitization trend. In the flame retardant layer, there are not only functional groups, such as P═O, PO , POC decomposed by flame retardant but also characteristic functional groups of wood fiber, like C═O, CH, etc. The prepolymer BF-B, which is composed of phytic acid, urea, and dicyandiamide polymerized with chitosan or lignocellulose to form a supramolecular flame retardant connected with POC and PON functional groups, thus improving the flame retardant and anti-loss property by in situ polymerization.

摘要

为提高胶合板的阻燃性能,减少阻燃剂的试剂损失和吸湿性,通过真空压力浸渍和胶合板高温原位聚合制备了一种生物基超分子阻燃剂。胶合强度的最佳值出现在170℃,170BF - B胶合板的极限氧指数(LOI)为42.3%。热压后,170BF - B单板的吸湿率仅为18.51%,而抗流失率达到83.45%。其在700℃时的残炭率比杨木单板高91.36%。在燃烧过程中,170BF - B胶合板的热释放速率峰值(PHRR)和热释放速率(HRR)仅为未处理胶合板的10.69%和37.11%。燃烧后,膨胀型阻燃层呈现石墨化趋势。在阻燃层中,不仅有阻燃剂分解产生的官能团,如P═O、PO 、POC,还有木纤维的特征官能团,如C═O、CH等。由植酸、尿素和双氰胺与壳聚糖或木质纤维素聚合而成的预聚物BF - B形成了与POC和PON官能团相连的超分子阻燃剂,从而通过原位聚合提高了阻燃和抗流失性能。

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