Vieira Fernanda R, Gama Nuno V, Evtuguin Dmitry V, Amorim Carlos O, Amaral Vitor S, Pinto Paula C O R, Barros-Timmons Ana
CICECO-Institute of Materials and Department of Chemistry, Campus de Santiago, University of Aveiro, 3810-193 Aveiro, Portugal.
CICECO-Institute of Materials and Department of Physics, University of Aveiro, 3810-193 Aveiro, Portugal.
Polymers (Basel). 2023 Feb 21;15(5):1074. doi: 10.3390/polym15051074.
Rigid polyurethane foams (RPUFs) were synthesized using exclusively lignin-based polyol (LBP) obtained via the oxyalkylation of kraft lignin with propylene carbonate (PC). Using the design of experiments methodology combined with statistical analysis, the formulations were optimized to obtain a bio-based RPUF with low thermal conductivity and low apparent density to be used as a lightweight insulating material. The thermo-mechanical properties of the ensuing foams were compared with those of a commercial RPUF and a RPUF (RPUF-conv) produced using a conventional polyol. The bio-based RPUF obtained using the optimized formulation exhibited low thermal conductivity (0.0289 W/m·K), low density (33.2 kg/m), and reasonable cell morphology. Although the bio-based RPUF has slightly lower thermo-oxidative stability and mechanical properties than RPUF-conv, it is still suitable for thermal insulation applications. In addition, the fire resistance of this bio-based foam has been improved, with its average heat release rate (HRR) reduced by 18.5% and its burn time extended by 25% compared to RPUF-conv. Overall, this bio-based RPUF has shown potential to replace petroleum-based RPUF as an insulating material. This is the first report regarding the use of 100% unpurified LBP obtained via the oxyalkylation of LignoBoost kraft lignin in the production of RPUFs.
硬质聚氨酯泡沫塑料(RPUFs)是仅使用通过硫酸盐木质素与碳酸丙烯酯(PC)进行氧烷基化反应得到的木质素基多元醇(LBP)合成的。采用实验设计方法并结合统计分析,对配方进行了优化,以获得具有低导热率和低表观密度的生物基RPUF,用作轻质绝缘材料。将所得泡沫的热机械性能与市售RPUF以及使用传统多元醇生产的RPUF(RPUF-conv)的热机械性能进行了比较。使用优化配方获得的生物基RPUF表现出低导热率(0.0289W/m·K)、低密度(33.2kg/m³)和合理的泡孔形态。尽管生物基RPUF的热氧化稳定性和机械性能略低于RPUF-conv,但它仍适用于隔热应用。此外,这种生物基泡沫的耐火性得到了改善,与RPUF-conv相比,其平均热释放速率(HRR)降低了18.5%,燃烧时间延长了25%。总体而言,这种生物基RPUF已显示出替代石油基RPUF作为绝缘材料的潜力。这是关于在RPUFs生产中使用通过LignoBoost硫酸盐木质素氧烷基化获得的100%未纯化LBP的首次报道。