解聚
单体
产量(工程)
聚合物
聚酯纤维
催化作用
化学
有机化学
化学工业
生化工程
人类健康
机制(生物学)
过程(计算)
可持续生产
生物塑料
废物管理
生物炼制
化学结构
反应机理
制浆造纸工业
材料科学
化工产品
有机催化
双重角色
作者
N Liu,Peng Du,Meng Yi,Gangqiang Zhang,Kaitao Zhang,Yu Pan
出处
期刊:Polymers
[Multidisciplinary Digital Publishing Institute]
日期:2026-05-22
卷期号:18 (11): 1267-1267
标识
DOI:10.3390/polym18111267
摘要
Plastics are indispensable to modern life, yet pose a double-edged sword as their escalating production threatens human health and ecosystems. This urgent reality drives intensive efforts to develop recycling technologies that convert waste plastics into valuable feedstocks. Herein, we develop an efficient organocatalytic strategy for the depolymerization and closed-loop chemical recycling of poly(butylene succinate) (PBS). The strong organic base TBD demonstrated the highest catalytic activity for the methanolysis depolymerization of PBS, achieving a yield of 93.1% under mild conditions (100 °C, 2 h). GC and MS analyses identified dimethyl succinate (DMS) and 1,4-butanediol (1,4-BDO) as the major products. Investigation into the depolymerization behavior and mechanism revealed that the process proceeds via random chain scission, facilitated by a dual hydrogen-bonding activation mechanism mediated by TBD. Closed-loop chemical recycling was achieved by repolymerizing the recovered monomers into PBS. The reproduced polymer exhibited properties comparable to commercial virgin PBS. Moreover, this strategy could be extended to other commercial polyester systems, establishing an eco-friendly and viable pathway for sustainable polymer recycling.
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