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超快速同时选择性解聚异质聚对苯二甲酸乙二醇酯和聚碳酸酯流:迈向可行的工业化学回收。

Ultrafast Simultaneous and Selective Depolymerization of Heterogeneous Streams of Polyethylene Terephthalate and Polycarbonate: Towards Industrially Feasible Chemical Recycling.

机构信息

Sustainable Materials Lab, Department of Chemical Engineering, KU Leuven, Campus Kulak Kortrijk, Etienne Sabbelaan 53, 8500, Kortrijk, Belgium.

出版信息

ChemSusChem. 2022 Aug 5;15(15):e202200625. doi: 10.1002/cssc.202200625. Epub 2022 Jun 14.

Abstract

Mixed plastic waste-streams are a main obstacle to a more extensive implementation of polymer recycling. Separating mixed-plastic waste streams demands time and effort at collection or in the recycling plant, while many products consist of multiple polymers that cannot be readily separated. Chemical recycling could provide the key to overcome this issue by targeting specific chemical bonds, enabling selective depolymerization of a single polymer class in a mixture. This work explores the depolymerization of polycarbonate (PC) and polyethylene terephthalate (PET) in separate and in mixed streams. Selective depolymerization of mixed streams composed of PET and PC and one-step separation of their constituent monomers are carried out with outstanding energy efficiency through an inexpensive KOH-in-methanol hydrolysis (KMH) process developed for instantaneous PET hydrolysis. The activation energies for depolymerization of PC and PET pellets are 68.6 and 131.4 kJ mol , respectively. Randomly mixed streams are fully depolymerized within 2 min at 120 °C using 30 mL of depolymerization solution per gram of polymer. The separation of bisphenol A and terephthalic acid is demonstrated in a one-step separation process, yielding 98 and 97 % purity without any secondary reactions detected. Simultaneous depolymerization and selective one-step separation of monomers are also demonstrated for a PET/PC polymer blend prepared by solution casting, showing that this process also works for intimately mixed PET/PC mixtures.

摘要

混合塑料废料是更广泛实施聚合物回收的主要障碍。在收集或在回收工厂中分离混合塑料废料需要时间和精力,而许多产品由多种无法轻易分离的聚合物组成。化学回收可以通过针对特定化学键来提供解决这个问题的关键,从而实现混合物中单一聚合物类别的选择性解聚。这项工作探索了聚碳酸酯 (PC) 和聚对苯二甲酸乙二醇酯 (PET) 在单独和混合流中的解聚。通过开发用于瞬时 PET 水解的廉价 KOH-甲醇水解 (KMH) 工艺,对由 PET 和 PC 组成的混合流进行选择性解聚,并对其组成单体进行一步分离,以出色的能量效率进行。PC 和 PET 颗粒的解聚活化能分别为 68.6 和 131.4 kJ/mol。在 120°C 下,使用 30 毫升/克聚合物的解聚溶液,随机混合的流在 2 分钟内完全解聚。在一步分离过程中,证明了双酚 A 和对苯二甲酸的分离,纯度分别达到 98%和 97%,没有检测到任何副反应。还对通过溶液浇铸制备的 PET/PC 聚合物共混物进行了同时解聚和选择性一步分离单体的演示,表明该工艺也适用于紧密混合的 PET/PC 混合物。

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