Yang Jizhen, Li Fan, Lu Guibin, Lu Yuanbin, Song Chuanbo, Zhou Rong, Wu Shaohua
College of Textiles & Clothing, Qingdao University, Qingdao 266000, China.
Shandong Xingguo Xinli Environmental Protection Co., Ltd., Zibo 255000, China.
Nanomaterials (Basel). 2022 Aug 3;12(15):2670. doi: 10.3390/nano12152670.
Crude oil spills seriously harm the ocean environment and endanger the health of various animals and plants. In the present study, a totally biodegradable polymer, poly(L-lactic acid) (PLLA), was employed to fabricate highly porous oil absorbent nanofibrous materials by using a combination of electrospinning technique and subsequent acetone treatment. We systematically investigated how the electrospinning parameters affected formation of the porous structure of PLLA nanofibers and demonstrated that PLLA nanofibers with decreased and uniform diameter and improved porosity could be rapidly prepared by adjusting solution parameters and spinning parameters. We also demonstrated that the acetone treatment could obviously enhance the pore diameter and specific surface area of as-optimized electrospun PLLA nanofibers. The acetone treatment could also improve the hydrophobic property of as-treated PLLA nanofiber membranes. All these led to a significant increase in oil absorption performance. Through our research, it was found that the oil absorption of PLLA nanofiber membrane increased by more than double after being treated with acetone and the oil retention rate was also improved slightly.
原油泄漏严重危害海洋环境,危及各种动植物的健康。在本研究中,采用一种完全可生物降解的聚合物聚(L-乳酸)(PLLA),通过静电纺丝技术与后续丙酮处理相结合的方法制备了高孔隙率的吸油纳米纤维材料。我们系统地研究了静电纺丝参数如何影响PLLA纳米纤维多孔结构的形成,并证明通过调整溶液参数和纺丝参数,可以快速制备出直径减小且均匀、孔隙率提高的PLLA纳米纤维。我们还证明,丙酮处理可以显著增大优化后的静电纺PLLA纳米纤维的孔径和比表面积。丙酮处理还可以改善处理后的PLLA纳米纤维膜的疏水性。所有这些都导致吸油性能显著提高。通过我们的研究发现,PLLA纳米纤维膜经丙酮处理后吸油率增加了一倍多,保油率也略有提高。