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Chemical Recycling of Poly(ethylene terephthalate) (PET) by Hydrolysis and Glycolysis

机译:水解和糖酵解法对聚对苯二甲酸乙二酯(PET)进行化学回收

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摘要

In this paper we review an interesting method of PET recycling, i.e. chemical recycling; it is based on the concept of depolymerizing the condensation polymer through solvolytic chain cleavage into low molecular products which can be purified and reused as raw materials for the production of high-quality chemical products. In this work our attention is confined to the hydrolysis (neutral, acid and alkaline) and glycolysis processes of PET chemical recycling; operating conditions and mechanism of each method are reported and described. The neutral hydrolysis has an auto accelerating character; two kinetic models have been proposed: an half-order and a second order kinetic model. The acid hydrolysis could be explained by a modified shrinking core model under chemical reaction control and the alkaline hydrolysis by a first-order model with respect to hydroxide ion concentration. To describe glycolysis, two different kinetic models have been proposed where EG can act or not as internal catalyst. Further experimental and theoretical investigations are required to shed light on the promising processes of PET chemical recycling reviewed in this work.
机译:在本文中,我们回顾了一种有趣的PET回收方法,即化学回收;它基于通过溶剂解链裂解将缩聚物解聚为低分子产物的概念,可以将其纯化并重新用作生产高质量化学产品的原料。在这项工作中,我们的注意力仅限于PET化学循环的水解(中性,酸性和碱性)和糖酵解过程。报告并描述了每种方法的操作条件和机理。中性水解具有自加速特性。已经提出了两个动力学模型:半阶和二阶动力学模型。酸水解可以通过化学反应控制下的改进的收缩核模型来解释,而碱水解可以通过相对于氢氧根离子浓度的一阶模型来解释。为了描述糖酵解,已经提出了两种不同的动力学模型,其中EG可以充当或不充当内部催化剂。需要进行进一步的实验和理论研究,以阐明这项工作中所审查的有前途的PET化学回收工艺。

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