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Synthesis and Characterization of Bio-Oil Phenol Formaldehyde Resin Used to Fabricate Phenolic Based Materials

机译:用于制备酚醛基材料的生物油酚醛树脂的合成与表征

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In this study, bio-oil from the fast pyrolysis of renewable biomass was used as the raw material to synthesize bio-oil phenol formaldehyde (BPF) resin—a desirable resin for fabricating phenolic-based material. During the synthesis process, paraformaldehyde was used to achieve the requirement of high solid content and low viscosity. The properties of BPF resins were tested. Results indicated that BPF resin with the bio-oil addition of 20% had good performance on oxygen index and bending strength, indicating that adding bio-oil could modify the fire resistance and brittleness of PF resin. The thermal curing behavior and heat resistance of BPF resins were investigated by differential scanning calorimetry (DSC) and thermal gravimetric analysis (TGA). Results showed that adding bio-oil had an impact on curing characteristics and thermal degradation process of PF resin, but the influence was insignificant when the addition was relatively low. The chemical structure and surface characteristics of BPF resins were determined by Fourier transform infrared (FTIR) spectroscopy and scanning electron microscopy (SEM). The analysis demonstrated that adding bio-oil in the amount of 20% was able to improve the crosslinking degree and form more hydrocarbon chains in PF resin.
机译:在这项研究中,可再生生物质快速热解产生的生物油被用作合成生物油酚醛树脂(BPF)的原料,而BPF树脂是制造酚基材料的理想树脂。在合成过程中,多聚甲醛用于达到高固含量和低粘度的要求。测试了BPF树脂的性能。结果表明,生物油添加量为20%的BPF树脂具有良好的氧指数和抗弯强度性能,表明生物油的添加可以改变PF树脂的耐火性和脆性。通过差示扫描量热法(DSC)和热重分析(TGA)研究了BPF树脂的热固化行为和耐热性。结果表明,添加生物油对PF树脂的固化特性和热降解过程有影响,但添加量相对较低时影响不明显。通过傅立叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)确定BPF树脂的化学结构和表面特性。分析表明,以20%的量添加生物油能够改善PF树脂的交联度并形成更多的烃链。

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