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基于煤基碳点的多功能聚乳酸膜用于高效分离水包油乳液和染料。

Multifunctional poly(lactic acid) membrane assisted by coal-based carbon dots for efficient separation of oil-in-water emulsions and dyes.

作者信息

Ma Yumiao, Zhen Weijun, Shao Tengfei, Jilili Yikelamu, Niu Qingqing

机构信息

State Key Laboratory of Chemistry and Utilization of Carbon Based Energy Resources, Key Laboratory of Oil and Gas Fine Chemicals, Ministry of Education and Xinjiang Uygur Autonomous Region, School of Chemical Engineering and Technology, Xinjiang University, Urumqi 830017, Xinjiang, China; College of Chemical and Environmental Engineering, Xinjiang Institute of Engineering, Urumqi 830023, Xinjiang, China.

State Key Laboratory of Chemistry and Utilization of Carbon Based Energy Resources, Key Laboratory of Oil and Gas Fine Chemicals, Ministry of Education and Xinjiang Uygur Autonomous Region, School of Chemical Engineering and Technology, Xinjiang University, Urumqi 830017, Xinjiang, China.

出版信息

Int J Biol Macromol. 2025 May;309(Pt 1):142755. doi: 10.1016/j.ijbiomac.2025.142755. Epub 2025 Apr 1.

Abstract

Superhydrophilic separation membranes have broad application prospects in oil-water separation and wastewater purification. However, the accumulation of pollutants on the membrane surface and the secondary environmental pollution caused by waste membranes remain inevitable challenges. In this study, a superhydrophilic self-cleaning multifunctional membrane was fabricated by hydrolytic co-deposition of carbon dots, tetrabutyl titanate (TBT), and tannic acid on the surface of a degradable poly(lactic acid) (PLA) membrane for efficient separation of dye/oil/water emulsions. The results indicate that the superhydrophilic crosslinking network is formed on the surface of PLA-based membranes through co-deposition of TA-based coating, enabling the multifunctional membrane to possess a stable and ultra-strong oleophobic hydrophilic layer. As a result, the membrane exhibits strong underwater oil resistance and excellent performance in the separation of oil-in-water emulsions (rejection rate > 99%). More importantly, the surface of the superhydrophilic crosslinking network is negatively charged, which facilitates the selective removal of positively charged organic soluble substances in water through electrostatic adsorption. For instance, the removal rate of cationic dye MB and amphoteric dye RhB can reach as high as 99.93%. Additionally, with the catalysis of TiO, the organic pollutants on the membrane surface can be decomposed under UV irradiation, indicating the ideal self-cleaning property of the multifunctional membrane. This novel strategy for constructing a multifunctional surface deposition layer is expected to provide broader prospects for the application of superhydrophilic membranes in oil-water separation and wastewater purification.

摘要

超亲水分离膜在油水分离和废水净化方面具有广阔的应用前景。然而,膜表面污染物的积累以及废弃膜造成的二次环境污染仍然是不可避免的挑战。在本研究中,通过在可降解聚乳酸(PLA)膜表面水解共沉积碳点、钛酸四丁酯(TBT)和单宁酸,制备了一种超亲水自清洁多功能膜,用于高效分离染料/油/水乳液。结果表明,通过基于TA的涂层共沉积,在PLA基膜表面形成了超亲水交联网络,使多功能膜具有稳定且超强的疏油亲水层。因此,该膜表现出很强的水下耐油性和在水包油乳液分离方面的优异性能(截留率>99%)。更重要的是,超亲水交联网络的表面带负电荷,这有利于通过静电吸附选择性去除水中带正电荷的有机可溶物。例如,阳离子染料MB和两性染料RhB的去除率可达99.93%。此外,在TiO的催化下,膜表面的有机污染物在紫外光照射下可被分解,表明该多功能膜具有理想的自清洁性能。这种构建多功能表面沉积层的新策略有望为超亲水膜在油水分离和废水净化中的应用提供更广阔的前景。

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