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Thermal Characterization of Kraft Lignin Phenol-Formaldehyde Resin for Paper Impregnation

机译:牛皮纸浸渍木质素酚醛树脂的热表征

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摘要

Both kraft lignin phenol-formaldehyde (KLPF) and phenol-formaldehyde (PF) resins were synthesized and the curing kinetics of the resins was determined using thermal analysis data. The kinetic parameters were predicted using two popular model-free kinetic (MFK) methods: the advanced form of the Vyazovkin method and the Kissinger-Akahira-Sunose method. From the experimental and predicted values, the rate of kraft lignin phenol-formaldehyde curing was less compared to the phenol-formaldehyde resin. To increase the cure rate different cure additives were tried. Among these, only potassium carbonate (KC) showed a positive effect: An increase in additive concentration to 4% reduced the curing time to almost 50% as compared to pure KLPF resin at 160°C. Comparison of the predicted values from MFK calculations with isothermal experimental data showed that both MFK approaches were suitable to predict the curing characteristics.
机译:合成了牛皮纸木质素酚醛树脂(KLPF)和酚醛树脂(PF),并使用热分析数据确定了树脂的固化动力学。使用两种流行的无模型动力学(MFK)方法预测了动力学参数:Vyazovkin方法的高级形式和Kissinger-Akahira-Sunose方法。从实验值和预测值来看,牛皮纸浆木质素酚醛树脂的固化速率比酚醛树脂低。为了提高固化速度,尝试了不同的固化添加剂。其中,只有碳酸钾(KC)表现出积极的作用:与160℃的纯KLPF树脂相比,添加剂浓度增加到4%可使固化时间减少到几乎50%。 MFK计算的预测值与等温实验数据的比较表明,两种MFK方法均适用于预测固化特性。

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