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通过熔喷工艺简便制备用于高效油水分离的疏水性聚乳酸/聚丁二酸丁二醇酯微纳纤维织物

Facile Preparation of Hydrophobic PLA/PBE Micro-Nanofiber Fabrics via the Melt-Blown Process for High-Efficacy Oil/Water Separation.

作者信息

Li Han, Zhang Heng, Hu Jun-Jie, Wang Guo-Feng, Cui Jing-Qiang, Zhang Yi-Feng, Zhen Qi

机构信息

School of Textile, Zhongyuan University of Technology, Zhengzhou 451191, China.

Henan Key Laboratory of Medical Polymer Materials Technology and Application, No. 1 Yangze Road, Xinxiang 453400, China.

出版信息

Polymers (Basel). 2022 Apr 20;14(9):1667. doi: 10.3390/polym14091667.

Abstract

Polylactic acid (PLA) micro-nanofiber fabrics with a large specific surface area and excellent biodegradability are commonly used in oil/water separation; however, challenges remain due to their poor mechanical properties. Herein, a thermoplastic polylactic acid/propylene-based elastomer (PLA/PBE) polymer was prepared by blending PLA with PBE. Then, PLA/PBE micro-nanofiber fabrics were successfully prepared using a melt-blown process. The results show that the PLA/PBE micro-nanofiber fabric has a three-dimensional porous structure, improving the thermal stability and fluidity of the PLA/PBE blended polymers. The PLA/PBE micro-nanofiber fabric demonstrated a significantly reduced average fiber diameter and an enhanced breaking strength. Moreover, the water contact angle of the prepared samples is 134°, which suggests a hydrophobic capacity. The oil absorption rate of the fabric can reach 10.34, demonstrating excellent oil/water separation performance. The successful preparation of PLA/PBE micro-nanofiber fabrics using our new method paves the way for the large-scale production of promising candidates for high-efficacy oil/water separation applications.

摘要

聚乳酸(PLA)微纳纤维织物具有大比表面积和优异的生物降解性,常用于油/水分离;然而,由于其机械性能较差,仍存在挑战。在此,通过将PLA与基于丙烯的弹性体(PBE)共混制备了一种热塑性聚乳酸/丙烯基弹性体(PLA/PBE)聚合物。然后,采用熔喷工艺成功制备了PLA/PBE微纳纤维织物。结果表明,PLA/PBE微纳纤维织物具有三维多孔结构,提高了PLA/PBE共混聚合物的热稳定性和流动性。PLA/PBE微纳纤维织物的平均纤维直径显著减小,断裂强度增强。此外,制备样品的水接触角为134°,表明具有疏水能力。该织物的吸油率可达10.34,显示出优异的油/水分离性能。使用我们的新方法成功制备PLA/PBE微纳纤维织物,为大规模生产用于高效油/水分离应用的有前景的候选材料铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a650/9104379/5ecefd4f7145/polymers-14-01667-g001.jpg

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