School of Materials Science and Engineering, Changzhou University, Changzhou 213164, China.
Unipower Hydrogen Membrane Materials (Jiangsu) Research Institute Co., Ltd., China.
Int J Biol Macromol. 2024 Jul;273(Pt 2):132826. doi: 10.1016/j.ijbiomac.2024.132826. Epub 2024 May 31.
Using bio-based plasticizers derived from biomass resources to replace traditional phthalates can avoid the biotoxicity and non-biodegradability caused by the migration of plasticizers during the application of plastics. In this study, L-lactic acid and levulinic acid were employed as the major biomass monomer to successfully fabricate L-lactic acid-based plasticizers (LBL-n, n = 1.0, 1.5, 2.0, 2.5) containing a diverse number of lactate groups. The plasticizing mechanism was explained, manifesting that L-lactic acid-based plasticizers containing a substantial number of lactate groups could effectively improve the flexibility of poly (lactic acid) (PLA), and the elongation at break was 590 %-750 %. Compared to LBL-1.5 plasticized-PLA films, the tensile strength and modulus of ketonized-LBL-1.5 (KLBL-1.5) plasticized-PLA films increased to 59 % and 163 %, indicating the ketal functionality of plasticizers enhanced the strength of PLA. Meanwhile, the increment of lactate groups and the introduction of the ketal group in the plasticizer increased the crystallization, migration, and volatilization stability of plasticized-PLA films and also kept their outstanding optical transparency. Besides, the biodegradability of KLBL-1.5 was investigated by active soil and Tenebrio molitor experiments, and its degradation products were characterized. The findings indicated that KLBL-1.5 was fully decomposed. Taken together, this paper offers new promise for developing high-efficiency and biodegradable plasticizers.
使用源自生物质资源的生物基增塑剂替代传统邻苯二甲酸酯可以避免增塑剂在塑料应用过程中迁移所带来的生物毒性和不可生物降解性。在本研究中,L-乳酸和乙酰丙酸被用作主要的生物质单体,成功地制备了含有不同数量乳酸基团的 L-乳酸基增塑剂(LBL-n,n=1.0、1.5、2.0、2.5)。解释了增塑机理,表明含有大量乳酸基团的 L-乳酸基增塑剂可以有效地提高聚乳酸(PLA)的柔韧性,断裂伸长率为 590%-750%。与 LBL-1.5 增塑 PLA 薄膜相比,酮化 LBL-1.5(KLBL-1.5)增塑 PLA 薄膜的拉伸强度和模量分别提高到 59%和 163%,表明增塑剂的酮基官能团增强了 PLA 的强度。同时,增塑剂中乳酸基团的增加和酮基的引入提高了增塑 PLA 薄膜的结晶性、迁移性和挥发性稳定性,并保持了其出色的光学透明度。此外,通过活性土壤和黄粉虫实验研究了 KLBL-1.5 的生物降解性,并对其降解产物进行了表征。结果表明 KLBL-1.5 完全降解。综上所述,本文为开发高效、可生物降解的增塑剂提供了新的前景。