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Studies on the effect of concentration of formaldehyde on the synthesis of resole-type epoxidized phenolic resin from renewable resource material

机译:甲醛浓度对可再生资源材料合成甲阶型环氧化酚醛树脂影响的研究

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摘要

Epoxidized cardanol/formaldehyde resins (ERCF) were synthesized by reacting resole type cardanol/formaldehyde resin and epichlorohydrin in basic medium at 120 °C. Resole-type phenolic resins were synthesized by reacting cardanol and formaldehyde (molar ratios 1:1.3, 1:1.5, 1:1.7, 1:1.9,and 1:2.1) in the presence of sodium hydroxide, as catalyst, at ?ve different temperatures ranging between 60 and 80 °C with an interval of 5°C for a maximum period of 6 h. A set of sam- ples were characterized by Fourier transform infrared and nuclear magnetic resonance spectroscopic analysis. The molec- ular size distribution of resole phenolics was studied by high-resolution gel permeation chromatography. Differential scanning calorimetry technique was used to investigate the curing behavior of the synthesized epoxy resins. Single-step mass loss in dynamic thermo gravimetric traces for the ERCF was observed.
机译:酚醛型腰果酚/甲醛树脂与环氧氯丙烷在120°C的碱性介质中反应合成了环氧腰果酚/甲醛树脂(ERCF)。甲酚醛型酚醛树脂是通过将腰果酚与甲醛(摩尔比为1:1.3、1:1.5、1:1.7、1:1.9和1:2.1)在作为催化剂的氢氧化钠存在下反应五次而合成的。温度范围为60至80°C,间隔为5°C,最长持续6 h。一组样品通过傅里叶变换红外光谱和核磁共振波谱分析进行了表征。通过高分辨率凝胶渗透色谱法研究了甲阶酚醛树脂的分子大小分布。用差示扫描量热技术研究了合成环氧树脂的固化行为。观察到ERCF的动态热重曲线中的一步质量损失。

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