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Statistical Process Optimization of Functionalized PET Oligomer Nanocomposites from Off-Grade PET

机译:劣质PET功能化PET低聚物纳米复合材料的统计工艺优化

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摘要

Off-grade Polyethylene terephthalatc) (PET) of industrial manufacturers was partially depolymerized, using excess ethylene glycol (EG) in the presence of manganese acetate to synthesize PET oligomers. Influences of EG/PET molar ratio, reaction time, and catalyst concen trations and particle size of off-grade PET on yield of partial glycolysis reaction were investigated. The optimal conditions to synthesize PET oligomer (melting point of about 180°C) were obtained. Then, maleated PET as a compatibilizer for preparing PET nanocomposites was produced via reaction between maleic anhydride/phthalic anhydride (MA/PhA) composition and optimized PET oligomers. The combination of reaction time of 106 minutes and PhA/MA molar ratio of 0.85 gave the best results based on d-spacing and peak shift of nanocomposite samples. Hence, melt mixing of maleated PET with organoclay produced a good intercalation of layered silicate and good dispersion of clay in maleated PET matrix. Analysis of variance (ANOVA) was studied for both glycolyzed products and functionalized PET oligomers.
机译:工业制造商的劣等聚对苯二甲酸乙二醇酯(PET)在乙酸锰的存在下使用过量的乙二醇(EG)进行部分解聚,以合成PET低聚物。研究了EG / PET摩尔比,反应时间,催化剂浓度和不合格PET的粒径对部分糖酵解反应收率的影响。获得了合成PET低聚物的最佳条件(熔点约180℃)。然后,通过马来酸酐/邻苯二甲酸酐(MA / PhA)组合物与优化的PET低聚物之间的反应,制备了马来酸PET作为相容剂,用于制备PET纳米复合材料。反应时间为106分钟,PhA / MA摩尔比为0.85时,基于d-间隔和纳米复合材料样品的峰位移,可获得最佳结果。因此,马来酸化的PET与有机粘土的熔融混合产生了层状硅酸盐的良好插层以及粘土在马来化的PET基质中的良好分散。研究了糖基化产品和功能化PET低聚物的方差分析(ANOVA)。

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