Supramolecular purification of aromatic polyester monomers from chemical depolymerization†

Gavan W. Lienhart, Thomas Palisin, William Gross, Amelia Moll and James M. Eagan
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Abstract

The separation of poly(ethylene terephthalate) (PET) comonomers produced from the chemical recycling and depolymerization of PET is a critical step in realizing polyester material circularity. Various grades of PET (e.g., fiber, bottle, tire-cord) each require precise degrees of crystallinity which is controlled by the introduction of isomeric phthalates, comonomers which then contaminate secondary monomer streams. The use of supramolecular interactions as a method of extracting and separating these comonomers is herein described. The binding constants (Kb) between various-sized cyclodextrins with dimethyl terephthalate/dimethyl isophthalate and bis-2-hydroxyethyl terephthalate/bis-2-hydroxyethyl isophthalate are measured by fluorescence quenching and titration measurements. It is shown that beta-cyclodextrins most favorably bind the monomers (Kb up to 830 M−1) and that methyl ester comonomers bind more strongly than the glycolysis products. Competitive binding measurements between isomeric aromatic esters indicate alpha cyclodextrin binds dimethyl terephthalate (Kb = 328 M−1) 6-times more strongly than the dimethyl isophthalate isomer (Kb = 55 M−1). Crosslinking of the cyclodextrins with diisocyanate or perfluorinated bis-cyanobenzene moieties resulted in particles that could effectively remove the monomers from depolymerization solutions (up to 0.6 mmol of monomer per gram of particle). The results suggest supramolecular extraction and separation may be a scalable means of improving the purity and atom recovery of secondary recycled polyester feedstocks.

Abstract Image

从化学解聚中提纯芳香族聚酯单体的超分子技术†。
分离聚对苯二甲酸乙二醇酯(PET)化学回收和解聚过程中产生的共聚单体,是实现聚酯材料循环利用的关键步骤。各种等级的 PET(如纤维、瓶子、轮胎帘子线)都需要精确的结晶度,而结晶度是通过引入同分异构体邻苯二甲酸盐来控制的,这些共聚单体会污染二次单体流。本文介绍了利用超分子相互作用提取和分离这些共聚单体的方法。通过荧光淬灭和滴定法测量了不同大小的环糊精与对苯二甲酸二甲酯/间苯二甲酸二甲酯和对苯二甲酸二-2-羟乙基酯/间苯二甲酸二-2-羟乙基酯之间的结合常数(Kb)。结果表明,β-环糊精能最有效地结合单体(Kb 高达 830 M-1),而甲酯单体的结合力比乙二醇产物更强。芳香酯异构体之间的竞争性结合测量结果表明,α-环糊精与对苯二甲酸二甲酯的结合强度(Kb = 328 M-1)是与间苯二甲酸二甲酯异构体的结合强度(Kb = 55 M-1)的 6 倍。环糊精与二异氰酸酯或全氟双氰基苯分子交联后形成的微粒可有效地从解聚溶液中去除单体(每克微粒最多可去除 0.6 毫摩尔单体)。结果表明,超分子萃取和分离可能是提高二次回收聚酯原料纯度和原子回收率的一种可扩展手段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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