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通过拦截中间体实现聚对苯二甲酸乙二酯更高效的化学回收

More Efficient Chemical Recycling of Poly(Ethylene Terephthalate) by Intercepting Intermediates.

作者信息

Watson-Sanders Shelby, Dadmun Mark

机构信息

Chemistry Department, University of Tennessee, Knoxville, TN 37996, Tennessee, USA.

出版信息

ChemSusChem. 2024 Dec 6;17(23):e202301698. doi: 10.1002/cssc.202301698. Epub 2024 Nov 7.

DOI:10.1002/cssc.202301698
PMID:39363696
Abstract

The research presented in this paper offers insight into the availability of intermediates in the depolymerization of polyethylene terephthalate (PET) to be used as feedstock to create value-added products. Monitoring the dispersity, molecular weight, end groups, and crystallinity of reaction intermediates during the heterogeneous depolymerization of PET offers insight into the mechanism by which the polymer chains evolve during the reaction. Our results show dispersity decreases and crystallinity increases while the yield of insoluble PET remains high early in the reaction. Our interpretation of this data depicts a mechanism where chain scission targets amorphous tie chains between crystalline phases. Targeting the tie-chains lowers the M of the polymer without changing the amount of recovered polymer flake. Chain scission of tie-chains and isolating highly crystalline PET lowers the dispersity (Đ) of the polymer chains, as the size of the crystalline lamellae guides the molecular weight of the depolymerized oligomers. When sufficient end groups of PET chains are converted to alcohol groups, the PET flakes break apart into highly crystalline and less disperse polymer. Our results also demonstrate that the oligomeric depolymerization intermediates are readily repolymerized, offering new opportunities to chemically recycle PET more effectively and efficiently, from both an energy and purification standpoint.

摘要

本文所展示的研究深入探讨了聚对苯二甲酸乙二酯(PET)解聚过程中作为原料用于制造增值产品的中间体的可得性。在PET非均相解聚过程中监测反应中间体的分散度、分子量、端基和结晶度,有助于深入了解聚合物链在反应过程中的演变机制。我们的结果表明,在反应初期,分散度降低而结晶度增加,同时不溶性PET的产率仍然很高。我们对这些数据的解读描绘了一种机制,即断链作用于晶相之间的无定形连接链。针对连接链可降低聚合物的分子量,而不改变回收聚合物薄片的量。连接链的断链和分离高度结晶的PET可降低聚合物链的分散度(Đ),因为结晶片层的尺寸决定了解聚低聚物的分子量。当PET链的足够端基转化为醇基时,PET薄片会分解成高度结晶且分散度较小的聚合物。我们的结果还表明,低聚解聚中间体易于再聚合,从能量和纯化的角度来看,这为更有效且高效地化学回收PET提供了新机会。

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