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基于回收PET瓶化学改性的阴离子交换膜

Anion Exchange Membranes Based on Chemical Modification of Recycled PET Bottles.

作者信息

Donnakatte Neelalochana Varun, Tomasino Eleonora, Di Maggio Rosa, Cotini Oscar, Scardi Paolo, Mammi Stefano, Ataollahi Narges

机构信息

Department of Civil, Environmental, and Mechanical Engineering, University of Trento, 38123 Trento, Italy.

Department of Chemical Sciences, University of Padova, Via Marzolo 1, 35131 Padova, Italy.

出版信息

ACS Appl Polym Mater. 2023 Aug 30;5(9):7548-7561. doi: 10.1021/acsapm.3c01391. eCollection 2023 Sep 8.

Abstract

This study presents an innovative and effective solution for recycling PET bottles as raw for producing anion exchange membranes (AEMs) for electrochemical applications. This approach reduces the demand for pristine materials, a key principle of the circular economy and sustainability. PET was subjected to chemical modification by introducing cationic functional groups followed by methylation and OH exchange process. The amination synthesis was optimized based on reaction time. The results indicate that ion exchange capacity, water uptake, and swelling ratio properties mainly depend on the degree of cationic functionalization. The optimized AEM exhibits ionic conductivity of 5.3 × 10 S·cm and alkaline stability of 432 h in 1 M KOH at 80 °C. The membrane properties before and after the alkaline treatment were investigated using Fourier-transform infrared spectroscopy, thermogravimetric analysis, and scanning electron microscopy analysis. Computational chemistry analysis was employed to gain further insights into the membrane degradation mechanisms and pathways under alkaline conditions. This research and its findings are a step toward using recycled materials in the field of AEM technology.

摘要

本研究提出了一种创新且有效的解决方案,即将聚对苯二甲酸乙二酯(PET)瓶回收作为生产用于电化学应用的阴离子交换膜(AEM)的原料。这种方法减少了对原始材料的需求,这是循环经济和可持续性的关键原则。通过引入阳离子官能团,随后进行甲基化和OH交换过程,对PET进行化学改性。基于反应时间对胺化合成进行了优化。结果表明,离子交换容量、吸水率和溶胀率性能主要取决于阳离子官能化程度。优化后的AEM在80°C的1 M KOH中表现出5.3×10 S·cm的离子电导率和432 h的碱稳定性。使用傅里叶变换红外光谱、热重分析和扫描电子显微镜分析研究了碱处理前后的膜性能。采用计算化学分析以进一步深入了解碱性条件下的膜降解机制和途径。这项研究及其发现是朝着在AEM技术领域使用回收材料迈出的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9d2/10496110/3e4043b32205/ap3c01391_0002.jpg

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