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用于消费后PET废料化学回收的加压碱性水解优化

Optimization of Pressurized Alkaline Hydrolysis for Chemical Recycling of Post-Consumer PET Waste.

作者信息

Amundarain Izotz, Asueta Asier, Leivar Jon, Santin Katrin, Arnaiz Sixto

机构信息

GAIKER Technology Centre, Basque Research and Technology Alliance (BRTA), Parque Tecnológico de Bizkaia, Edificio 202, 48170 Zamudio, Spain.

出版信息

Materials (Basel). 2024 May 29;17(11):2619. doi: 10.3390/ma17112619.

Abstract

Addressing the environmental impact of poly(ethylene terephthalate) (PET) disposal highlights the need for efficient recycling methods. Chemical recycling, specifically alkaline hydrolysis, presents a promising avenue for PET waste management by depolymerizing PET into its constituent monomers. This study focuses on optimizing the pressurized alkaline hydrolysis process for post-consumer PET residues obtained from packaging materials. Post-consumer PET packaging waste was chemically recycled by means of an alkaline hydrolysis reaction in a 2 L pressurized reactor under varying conditions of the NaOH/PET ratio and temperature. The reaction's progress was monitored by sampling the liquid phase hourly over a four-hour period. The obtained products were purified, with a focus on isolating terephthalic acid (TPA). Higher temperatures (150 °C) resulted in superior TPA yields (>95%) compared to lower temperatures (120 °C). The NaOH/PET ratio showed minimal influence on the TPA yield. The optimal conditions (T = 150 °C; NaOH:PET = 2) were identified based on TPA yield and reaction cost considerations. This study demonstrates the feasibility of pressurized alkaline hydrolysis for PET recycling, with optimized conditions yielding high TPA purity and efficiency.

摘要

解决聚对苯二甲酸乙二酯(PET)处置对环境的影响凸显了高效回收方法的必要性。化学回收,特别是碱性水解,通过将PET解聚为其组成单体,为PET废物管理提供了一条有前景的途径。本研究着重于优化从包装材料中获得的消费后PET残渣的加压碱性水解工艺。通过在2升加压反应器中,在不同的NaOH/PET比例和温度条件下进行碱性水解反应,对消费后PET包装废物进行化学回收。在四小时内每小时对液相进行取样,监测反应进程。对得到的产物进行纯化,重点是分离对苯二甲酸(TPA)。与较低温度(120°C)相比,较高温度(150°C)可获得更高的TPA产率(>95%)。NaOH/PET比例对TPA产率的影响最小。基于TPA产率和反应成本考虑,确定了最佳条件(T = 150°C;NaOH:PET = 2)。本研究证明了加压碱性水解用于PET回收的可行性,优化条件下可获得高TPA纯度和效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0075/11173775/95cda3057428/materials-17-02619-g001.jpg

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