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Alkaline hydrolysis of PVC-coated PET fibers for simultaneous recycling of PET and PVC

机译:涂有PVC的PET纤维的碱性水解,可同时回收PET和PVC

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Polyvinyl chloride (PVC)-coated poly(ethylene terephthalate) (PET) woven fibers are one of the hardest-to-recycle polymeric materials. Herein we investigate the possibility of recycling both PVC and PET through alkaline hydrolysis of PET. The coated woven fabrics were treated with NaOH, hydrolyzing the PET fibers into water-soluble sodium terephthalate, while the PVC could be removed by filtration. The PET fibers were completely hydrolyzed between 120 and 180 degrees C in the presence of 1 M NaOH solution, quantitatively yielding terephthalic acid. A minimum PVC dechlorination rate of 1% was simultaneously achieved at 120 degrees C. Furthermore, no alkaline hydrolysis of the plasticizer contained in the PVC, di(2-ethylhexyl)phthalate, was observed. Thus, the possibility of simultaneously recycling PET and PVC from PVC-coated woven fabrics was demonstrated. Kinetic analyses of PET hydrolysis and PVC dechlorination revealed that the simultaneously occurring reaction processes did not affect the progress of each other. Thus, the absence of interactions between PET, PVC, or their degradation products enables the design of a simplified recycling process without considering the interactions between the materials derived from coated woven fabrics.
机译:涂有聚氯乙烯(PVC)的聚对苯二甲酸乙二醇酯(PET)机织纤维是最难回收的聚合材料之一。在这里,我们研究了通过PET的碱水解同时回收PVC和PET的可能性。用NaOH处理涂覆的织物,将PET纤维水解成水溶性对苯二甲酸钠,而PVC可以通过过滤除去。在1 M NaOH溶液存在下,PET纤维在120至180摄氏度之间完全水解,定量生成对苯二甲酸。在120℃下同时实现最小的PVC脱氯率为1%。此外,未观察到PVC中所含的增塑剂二(2-乙基己基)邻苯二甲酸酯的碱性水解。因此,证明了同时从涂覆有PVC的织物中回收PET和PVC的可能性。 PET水解和PVC脱氯的动力学分析表明,同时发生的反应过程不会相互影响。因此,PET,PVC或其降解产物之间不存在相互作用,可以简化回收过程的设计,而无需考虑由涂层机织织物衍生的材料之间的相互作用。

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