聚乙烯
动力学
离子液体
乙烯
材料科学
化学工程
析因实验
离子键合
热分析
热的
高分子化学
因子分析
有机化学
化学
热力学
离子
催化作用
计算机科学
数学
物理
统计
量子力学
工程类
机器学习
作者
O. Gil-Castell,Ramón Jiménez-Robles,Alejandro Gálvez-Subiela,Gorka Marco-Velasco,Maria-Pilar Cumplido,Laia Martín-Pérez,Amparo Cháfer,J.D. Badía
出处
期刊:Polymers
[Multidisciplinary Digital Publishing Institute]
日期:2024-08-29
卷期号:16 (17): 2451-2451
标识
DOI:10.3390/polym16172451
摘要
Poly(ethylene terephthalate) (PET) waste accumulation poses significant environmental challenges due to its persistent nature and current management limitations. This study explores the effectiveness of imidazolium-based neoteric solvents [Emim][OAc] and [Bmim][OAc] as catalytic co-solvents in the glycolysis of PET with ethylene glycol (EG). Reaction thermal kinetics showed that both ionic liquids (ILs) significantly enhanced the depolymerization rate of PET compared to traditional methods. The use of [Emim][OAc] offered a lower activation energy of 88.69 kJ·mol−1, thus making the process more energy-efficient. The contribution of key process parameters, including temperature (T), plastic-to-ionic liquid (P/IL) mass ratio, and plastic-to-solvent (P/S) mass ratio, were evaluated by means of a factorial analysis and optimized to achieve the maximum PET conversion for both neoteric solvents. The relevance sequence for both ionic liquids involved the linear factors T and P/S, followed by the interaction factors T×P/S and T×P/IL, with P/IL being the less significant parameter. The optimal conditions, with a predicted conversion of 100%, involved a temperature of 190 °C, with a P/IL of 1:1 and a P/S of 1:2.5, regardless of the IL used as the catalytic co-solvent.
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