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Microwave-assisted cationic polymerization of palm olein and their urea inclusion products

机译:微波辅助阳离子聚合的棕榈油蛋白及其尿素包裹产物

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Cationic polymerization is affected by the relative amount of unsaturated bond (C=C) in the compound. The enrichment of an unsaturated triglyceride fraction from oils may be performed using urea inclusion techniques. In this study, palm olein was enriched-unsaturated fraction using urea-methanol system. The palm olein and its urea-inclusion products were cationic polymerized with ethereal boron trifluoride catalyst and followed by irradiation using a commercial microwave (microwave-assisted). The microwave irradiated products were cured at 110 °C for 24 hours. Fatty acid composition of the palm olein and its urea-inclusion products were analyzed by gas chromatography. Iodine numbers, functional groups, and ultraviolet absorption spectra of all palm olein origin, urea inclusion products and polymerization products were analyzed using titrimetric, ultraviolet spectrophotometric, and Fourier Transform infrared spectrophotometric methods. Differential scanning calorimetric (DSC) was used to observe the thermal characteristics of the polymer. Urea-inclusion process increased the unsaturated fatty acid components as indicated by the increased iodine number, intensity of alkene band absorptions in the infrared spectra, and the absorbance of the ultraviolet spectra. The polymer formation is converting the C=C group to C-C, which is indicated by the opposite of the urea inclusion process. The curing process results in reformation of new C=C bonds that were similar to that of the urea inclusion process. The DSC thermogram curve shows that the enrichment process improves the thermal stability of the polymer formed.
机译:阳离子聚合受化合物中不饱和键(C = C)的相对量的影响。可以使用尿素包裹技术进行来自油的不饱和甘油三酯级分的富集。在该研究中,使用脲甲醇系统富集 - 不饱和级分富集。棕榈油蛋白及其尿素夹杂物产物用醚硼三氟化物催化剂阳离子聚合,然后使用商业微波(微波辅助)照射。将微波辐照产物在110℃下固化24小时。通过气相色谱分析棕榈油蛋白及其尿素夹杂物产品的脂肪酸组成。使用滴定,紫外分光光度法和傅立叶变换红外分光光度法分析所有棕榈油素来源,尿素包裹产物和聚合产物的碘,官能团和紫外线吸收光谱。差分扫描量热(DSC)用于观察聚合物的热特性。尿素夹杂物过程如通过增加的碘数,红外光谱中的烯烃带吸收强度和紫外线光谱的吸光度,增加不饱和脂肪酸组分。聚合物形成将C = C组转化为C-C,其与尿素包裹方法的相反表明。固化过程导致新的C = C键的改性,类似于尿素纳入过程的键。 DSC热图曲线表明,富集过程改善了所形成的聚合物的热稳定性。

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