Aarsen Celine V, Liguori Anna, Mattsson Rebecca, Sipponen Mika H, Hakkarainen Minna
Department of Fibre and Polymer Technology, KTH Royal Institute of Technology, Teknikringen 58, 100 44 Stockholm, Sweden.
Department of Chemistry "G. Ciamician", University of Bologna, Via Selmi 2, 40126 Bologna, Italy.
Chem Rev. 2024 Jul 10;124(13):8473-8515. doi: 10.1021/acs.chemrev.4c00032. Epub 2024 Jun 27.
A powerful toolbox is needed to turn the linear plastic economy into circular. Development of materials designed for mechanical recycling, chemical recycling, and/or biodegradation in targeted end-of-life environment are all necessary puzzle pieces in this process. Polyesters, with reversible ester bonds, are already forerunners in plastic circularity: poly(ethylene terephthalate) (PET) is the most recycled plastic material suitable for mechanical and chemical recycling, while common aliphatic polyesters are biodegradable under favorable conditions, such as industrial compost. However, this circular design needs to be further tailored for different end-of-life options to enable chemical recycling under greener conditions and/or rapid enough biodegradation even under less favorable environmental conditions. Here, we discuss molecular design of the polyester chain targeting enhancement of circularity by incorporation of more easily hydrolyzable ester bonds, additional dynamic bonds, or degradation catalyzing functional groups as part of the polyester chain. The utilization of polyester circularity to design replacement materials for current volume plastics is also reviewed as well as embedment of green catalysts, such as enzymes in biodegradable polyester matrices to facilitate the degradation process.
要将线性塑料经济转变为循环经济,需要一个强大的工具包。开发在目标报废环境中适用于机械回收、化学回收和/或生物降解的材料,都是这一过程中必不可少的拼图碎片。具有可逆酯键的聚酯已经成为塑料循环利用的先驱:聚对苯二甲酸乙二酯(PET)是最适合机械回收和化学回收的可回收塑料材料,而常见的脂肪族聚酯在有利条件下(如工业堆肥)可生物降解。然而,这种循环设计需要针对不同的报废选项进一步调整,以实现更绿色条件下的化学回收,和/或即使在不太有利的环境条件下也能足够快速地生物降解。在此,我们讨论聚酯链的分子设计,通过引入更易水解的酯键、额外的动态键或作为聚酯链一部分的降解催化官能团来增强循环性。还综述了利用聚酯的循环性来设计替代当前大量使用的塑料的材料,以及在可生物降解聚酯基质中嵌入绿色催化剂(如酶)以促进降解过程。