Dai Peng, Liang Mengke, Ma Xiaofeng, Luo Yanlong, He Ming, Gu Xiaoli, Gu Qun, Hussain Imtiaz, Luo Zhenyang
College of Science, Nanjing Forestry University, 159 Longpan Road, Nanjing 210037, P. R. China.
Institute of Polymer Materials, Nanjing Forestry University, 159 Longpan Road, Nanjing 210037, P. R. China.
ACS Omega. 2020 Dec 4;5(49):32084-32093. doi: 10.1021/acsomega.0c05146. eCollection 2020 Dec 15.
We prepared novel flame retardants with concurrent excellent smoke-suppression properties based on lignin biomass modified by functional groups containing N and P. Each lignin-based flame retardant (Lig) was quantitatively added to a fixed amount of epoxy resin (EP), to make a Lig/EP composite. The best flame retardancy was achieved by a Lig-F/EP composite with elevated P content, achieving a V-0 rating of the UL-94 test and exhibiting excellent smoke suppression, with substantial reduction of total heat release and smoke production (by 46.6 and 53%, respectively). In this work, we characterized the flame retardants and the retardant/EP composites, evaluated their performances, and proposed the mechanisms of flame retardancy and smoke suppression. The charring layer of the combustion residual was analyzed using SEM and Raman spectroscopy to support the proposed mechanisms. Our work provides a feasible method for lignin modification and applications of new lignin-based flame retardants.
我们基于含氮和磷官能团改性的木质素生物质制备了兼具优异抑烟性能的新型阻燃剂。将每种木质素基阻燃剂(Lig)定量添加到固定量的环氧树脂(EP)中,制成Lig/EP复合材料。含磷量较高的Lig-F/EP复合材料具有最佳的阻燃性能,在UL-94测试中达到V-0等级,并表现出优异的抑烟性能,总热释放和产烟量大幅降低(分别降低46.6%和53%)。在这项工作中,我们对阻燃剂和阻燃剂/EP复合材料进行了表征,评估了它们的性能,并提出了阻燃和抑烟机制。利用扫描电子显微镜(SEM)和拉曼光谱对燃烧残余物的炭化层进行了分析,以支持所提出的机制。我们的工作为木质素改性及新型木质素基阻燃剂的应用提供了一种可行的方法。