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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal degradation of lignin-phenol-formaldehyde and phenol-formaldehyde resol resins: Structural changes, thermal stability, and kinetics
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Thermal degradation of lignin-phenol-formaldehyde and phenol-formaldehyde resol resins: Structural changes, thermal stability, and kinetics

机译:木质素-苯酚-甲醛和苯酚-甲醛甲阶酚醛树脂的热降解:结构变化,热稳定性和动力学

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摘要

Resol resins are used in many industrial applications as adhesives and coatings, but few studies have examined their thermal degradation. In this work, the thermal stability and thermal degradation kinetics of phenol-formaldehyde (PF) and lignin-phenol-formaldehyde (LPF) resol resins were studied using thermogravimetric analysis (TG) in air and nitrogen atmospheres in order to understand the steps of degradation and to improve their stabilities in industrial applications. The thermal stability of samples was estimated by measuring the degradation temperature (T _d), which was calculated according to the maximum reaction rate criterion. In addition, the ash content was determined at 800 °C in order to compare the thermal stability of the resol resin samples. The results indicate that 30 wt% ammonium lignin sulfonate (lignin derivative) as filler in the formulation of LPF resin improves the thermal stability in comparison with PF commercial resin. The activation energies of degradation of two resol resins show a difference in dependence on mass loss, which allows these resins to be distinguished. In addition, the structural changes of both resins during thermal degradation were studied by Fourier transform infrared spectroscopy (FTIR), with the results indicating that PF resin collapses at 300 °C whereas the LPF resin collapses at 500 °C.
机译:甲阶酚醛树脂在许多工业应用中用作粘合剂和涂料,但很少有研究检查它们的热降解性。在这项工作中,使用热重分析(TG)在空气和氮气气氛中研究了苯酚甲醛(PF)和木质素-苯酚甲醛(LPF)甲阶酚醛树脂的热稳定性和热降解动力学,以了解降解步骤。并提高其在工业应用中的稳定性。通过测量降解温度(T _d)估算样品的热稳定性,该降解温度是根据最大反应速率标准计算得出的。另外,灰分含量在800℃下测定,以便比较可熔酚醛树脂样品的热稳定性。结果表明,与PF市售树脂相比,在LPF树脂配方中30重量%的木质素磺酸铵(木质素衍生物)作为填充剂改善了热稳定性。两种甲阶酚醛树脂的降解活化能显示出与质量损失相关的差异,这使得可以区分这些树脂。此外,通过傅里叶变换红外光谱(FTIR)研究了两种树脂在热降解过程中的结构变化,结果表明PF树脂在300°C时塌陷,而LPF树脂在500°C时塌陷。

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