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Synthesis and characterization of novel polyurethanes based on aminolysis of poly(ethylene terephthalate) wastes, and evaluation of their thermal and mechanical properties

机译:基于聚对苯二甲酸乙二醇酯废物氨解的新型聚氨酯的合成,表征及热力学性能评价

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BACKGROUND: Much research is currently directed towards recycling post-consumer poly(ethylene terephthalate) (PET) products for both environmental and economic reasons. Aminolysis of PET wastes using different amines, such as allylamine, morpholine, hydrazine and polyamines, leads to different reaction products as diamides of terephthalic acid, which do not possess any potential for further chemical reactions. In the past, the use of ethanolamine has been investigated for the aminolytic degradation of PET waste in the presence of different simple chemicals such as sodium acetate as catalysts. The product obtained, bis(2-hydroxyethylene) terephthalamide (BHETA), has potential for further reactions to obtain useful products. Nevertheless, there has been no report on using recycled BHETA from PET to synthesize polyurethanes. RESULTS: In this research the product of aminolysis of PET waste, BHETA, was prepared. Then novel polyurethanes were synthesized based on the BHETA prepared, 1,4-butanedioi, ether-type polyol and various molar ratios of hexamethylene diisocyanate. To evaluate the effect of BHETA, the properties of the polyurethanes without and with BHETA were compared. Fourier transform infrared spectra, thermal transitions, degradation, swelling ratio and chemical resistance of the synthesized polyurethanes were investigated. Also, the polyurethanes were applied as adhesives on various substrates. Comparison of the maximum bond strength of the synthesized polyurethane to that of commercial adhesives shows an about 2.2-fold increase. CONCLUSION: It is possible to synthesize new polyurethanes with interesting properties using BHETA as an aminolysis product of PET waste. These kinds of materials have potential for many applications, such as adhesives and coatings.
机译:背景技术:由于环境和经济原因,目前许多研究针对回收消费后的聚对苯二甲酸乙二酯(PET)产品。使用不同的胺(例如烯丙胺,吗啉,肼和多胺)对PET废料进行氨解会产生不同的反应产物,即对苯二甲酸二酰胺,它们不具有进一步化学反应的潜力。过去,已经研究了在不同的简单化学物质(例如乙酸钠)作为催化剂存在下,乙醇胺用于PET废物的氨解降解的方法。所获得的产物双(2-羟基乙烯)对苯二甲酰胺(BHETA)具有进一步反应的潜力,以获得有用的产物。然而,还没有关于使用PET的再生BHETA合成聚氨酯的报道。结果:在这项研究中,制备了PET废料的氨解产物BHETA。然后,基于所制备的BHETA,1,4-丁二碘,醚型多元醇和六亚甲基二异氰酸酯的各种摩尔比,合成了新型聚氨酯。为了评估BHETA的效果,比较了不使用BHETA和使用BHETA的聚氨酯的性能。研究了合成聚氨酯的傅立叶变换红外光谱,热转变,降解,溶胀率和耐化学性。同样,聚氨酯作为粘合剂施加在各种基材上。合成聚氨酯与商业粘合剂的最大粘结强度的比较显示出约2.2倍的增加。结论:使用BHETA作为PET废料的氨解产物可以合成具有有趣特性的新型聚氨酯。这些材料对于许多应用具有潜力,例如粘合剂和涂料。

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