Natural lignocellulosic biomass structure inspired CNF/Lignin/PBAT composite film with thermoplastic, antibacterial and UV-blocking abilities

木质素 生物量(生态学) 复合数 热塑性塑料 木质纤维素生物量 阻塞(统计) 材料科学 制浆造纸工业 化学 复合材料 有机化学 计算机科学 生物 农学 计算机网络 工程类
作者
Jia−Hua Chen,Xinyi Chen,Baoquan Zhang,He Li,Xinjian Li,Linping Zhang,Zhen Zhang,Ying Zhou,Wanhui Jin,Xia He,Hongchen Liu
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:271: 132498-132498
标识
DOI:10.1016/j.ijbiomac.2024.132498
摘要

The development of a thermoplastic, biodegradable composite material to replace conventional polymers derived from petroleum was the main area of concentration. Herein, a method for preparing antibacterial, UV-blocking and degradable CNF/Lignin/PBAT composite films (CLP) using cellulose nanofibrils (CNFs), lignin, and Poly (butylene adipate-terephthalate) (PBAT) as raw materials by solution casting method was described. With the adding of PBAT, the thermal stability, thermoplastic, mechanical properties were enhanced by improving the compatibility between components. The maximum tensile strength of CLP could reach 189.72 MPa, which increased 25.5 % compared to CNF/Lignin film. The average initial decomposition temperature could reach 321 °C, which much higher than that of CNF and lignin. At the same time, it holds good heat-sealing performance made it suitable for practical use. Meanwhile, the composite films had excellent UV resistance and could block over 95 % of UV light. The antibacterial results indicated that the films had a good inhibitory effect on E. coli and S. aureus, with a maximum inhibitory ring diameter of 5.56 and 6.36 mm. In addition, the composite film also had excellent barrier capability to liquid and gas. The prepared film had potential to produce flexible packing, industrial compositing and biomedical fields.
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