仿聚己二酸丁二烯-对苯二甲酸酯的可生物降解柔性共聚酯木质素源芳烃。

IF 6.6 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
ChemSusChem Pub Date : 2025-10-16 DOI:10.1002/cssc.202501297
Tam T Nguyen, Maria Nelly Garcia Gonzalez, Jonas Engqvist, Jan Wahlberg, Gangjin Liu, Jing Liu, Patric Jannasch, Baozhong Zhang
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引用次数: 0

摘要

聚己二酸丁二烯共聚对苯二甲酸酯(PBAT)是一种重要的商用生物可降解柔性共聚聚酯,其生产依赖于化石基对苯二甲酸酯。在本研究中,以木质素为来源的芳香单体,即4-(2-羟基乙氧基)香草酸甲酯和4-(2-羟基乙氧基)苯甲酸甲酯、脂肪族己二酸二甲酯和1,4-丁二醇,合成了两个系列的模拟pbat的共聚聚酯。通过生命周期评价研究了单体合成过程中的温室气体排放,并对溶剂用量进行了评价。该共聚酯具有较高的热稳定性,并可通过改变芳烃-脂肪比来调节玻璃化转变温度和结晶度。90天的好氧生物降解实验表明,与基准聚合物PBAT相比,所获得的共聚酯具有相当甚至更快的生物降解率。与PBAT相比,所制得的无对苯二甲酸酯共聚酯薄膜的阻氧性得到了有效增强,表明其在软性食品包装中的应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lignin-Sourced Aromatics for Biodegradable Flexible Copolyesters Mimicking Poly(Butylene Adipate-co- Terephthalate).

Poly(butylene adipate-co-terephthalate) (PBAT) is an important commercial biodegradable flexible copolyester, which is dependent on the fossil-based terephthalates for production. In the present work, two series of PBAT-mimicking copolyesters are synthesized using lignin-sourced aromatic monomers, i.e., methyl 4-(2-hydroxyethoxy) vanillate and methyl 4-(2-hydroxyethoxy) benzoate, aliphatic dimethyl adipate, and 1,4-butanediol. The greenhouse gas emissions associated with the monomer synthesis are investigated by life cycle assessment, and the solvent usage is evaluated. The copolyesters show reasonably high thermal stability, and tunable glass transition temperature and crystallinity upon varying the aromatic-aliphatic ratio. Aerobic biodegradation experiments of the obtained copolyesters over 90 days show a comparable or even faster biodegradation rate compared to the benchmark polymer PBAT. The oxygen gas barrier of the obtained terephthalate-free copolyester films is effectively enhanced compared to that of PBAT, indicating their potential in flexible food packaging applications.

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来源期刊
ChemSusChem
ChemSusChem 化学-化学综合
CiteScore
15.80
自引率
4.80%
发文量
555
审稿时长
1.8 months
期刊介绍: ChemSusChem Impact Factor (2016): 7.226 Scope: Interdisciplinary journal Focuses on research at the interface of chemistry and sustainability Features the best research on sustainability and energy Areas Covered: Chemistry Materials Science Chemical Engineering Biotechnology
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