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Novel Protocol for Resole Phenol Formaldehyde Resins Synthesis with Tubular Reactor and Characterization

机译:具有管式反应器和表征的氧渗苯酚甲醛树脂合成的新型方案

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摘要

A novel strategy has been established, in the laboratory scale, for the generation of the popular thermosetting resin phenol formaldehyde (PF; resole), through a continuous process using a tubular reactor, which is usually developed in the commercial scale through a batch process. A refractive index technique is employed to evaluate the optimum residence time within the tubular reactor to obtain a commercial grade equivalent of PF resin. The unreacted free formaldehyde level has been found to be very low in the resole resin prepared by using the new route. The initial characterization of the resin has been done through Fourier transform infrared spectroscopy and gel permeation chromatography. The cure characteristics of the resin have been analyzed through differential scanning calorimetry. The degradation features of the cured resole are investigated using a thermo gravimetric analyzer and the fractured surfaces are analyzed through scanning electron microscopy. It has been confirmed that the adverse effects of a batch reactor process can be significantly reduced by adopting a continuous resin manufacturing process for PF resin which can be successfully extended to commercialization after optimization.
机译:在实验室规模中已经建立了一种新的策略,用于通过使用管状反应器的连续方法产生流行的热固性树脂酚醛甲醛(PF; resole),其通常通过批量过程在商业规模中开发。采用折射率技术来评估管状反应器内的最佳停留时间,以获得PF树脂的商业级等同物。已经发现未反应的游离甲醛水平在通过使用新途径制备的氧渗剂树脂中非常低。通过傅里叶变换红外光谱和凝胶渗透色谱法进行了树脂的初始表征。通过差示扫描量热法分析树脂的固化特性。使用热重量分析仪研究了固化块的降解特征,通过扫描电子显微镜分析裂缝表面。已经证实,通过采用用于PF树脂的连续树脂制造方法,可以显着降低批量反应器方法的不利影响,该PF树脂在优化后可以成功地扩展到商业化。

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