生物降解
异山梨酯
聚酯纤维
共聚酯
草酸盐
水解
草酸
二醇
材料科学
有机化学
聚合物
化学
化学工程
工程类
作者
Yue Wang,Kevin van der Maas,Daniel H. Weinland,Dio Trijnes,Robert‐Jan van Putten,Albert Tietema,John R. Parsons,Eva de Rijke,Gert‐Jan M. Gruter
标识
DOI:10.1021/acs.est.2c09699
摘要
-diol) oxalate (PISOX-diol) copolyesters was studied. We systematically investigated the effects of the composition on biodegradation at ambient temperature in soil for PISOX (co)polyesters. Results show that the lag phase of PISOX (co)polyester biodegradation varies from 0 to 7 weeks. All (co)polyesters undergo over 80% mineralization within 180 days (faster than the cellulose reference) except one composition with the cyclic codiol 1,4-cyclohexanedimethanol (CHDM). Their relatively fast degradability is independent of the type of noncyclic codiol and results from facile nonenzymatic hydrolysis of oxalate ester bonds (especially oxalate isosorbide bonds), which mostly hydrolyzed completely within 180 days. On the other hand, partially replacing oxalate with terephthalate units enhances the polymer's resistance to hydrolysis and its biodegradability in soil. Our study demonstrates the potential for tuning PISOX copolyester structures to design biodegradable plastics with improved thermal, mechanical, and barrier properties.
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