School of Materials Science & Engineering, Key Laboratory of Advanced Technologies of Materials (Ministry of Education), Southwest Jiaotong University, Chengdu 610031, China.
School of Materials Science & Engineering, Key Laboratory of Advanced Technologies of Materials (Ministry of Education), Southwest Jiaotong University, Chengdu 610031, China.
J Hazard Mater. 2021 Apr 5;407:124787. doi: 10.1016/j.jhazmat.2020.124787. Epub 2020 Dec 10.
The urgent needs for water protection are not only developing the highly efficient wastewater treatment technologies but also designing the eco-friendly materials. In this work, the eco-friendly composite fibers composed of poly(L-lactide) (PLLA), poly(D-lactide) (PDLA) and maghemite nanoparticles γ-FeO nanoparticles were fabricated through electrospinning technology. Through regulating the processing parameters and introducing additional annealing treatment, nanoscale porous structure and the stereocomplex crystallites (SCs) are simultaneously constructed in the composite electrospun fibers. Physicochemical performances measurements exhibited that the fiber membranes had excellent lipophilicity, good mechanical performances, and high hydrolysis resistance, and all of which endowed the fiber membranes with high oil adsorption capacities, and the maximum oil adsorption capacities achieved 148.9 g/g at 23 °C and 114.8 g/g at 60 °C. Further results showed that the fiber membranes had good oil/water separation ability. The gravity-driven oil flux was 6824.4 L/mh, and the water rejection ratio was nearly 100% during separating oil/water mixture. Specifically, the fiber membranes showed good stability during the cycling measurements. It is evidently confirmed that the composite PLLA-based fiber membranes with porous structure and SCs can be used in wastewater treatment, especially in some rigorous circumstances.
对水资源保护的迫切需求不仅在于开发高效的废水处理技术,还在于设计环保材料。在这项工作中,通过静电纺丝技术制备了由聚(L-丙交酯)(PLLA)、聚(D-丙交酯)(PDLA)和磁赤铁矿纳米粒子 γ-FeO 纳米粒子组成的环保复合纤维。通过调节加工参数并引入额外的退火处理,在复合电纺纤维中同时构建了纳米级多孔结构和立构复合物晶体(SCs)。物理化学性能测试表明,纤维膜具有优异的亲油性、良好的机械性能和高水解稳定性,所有这些都赋予了纤维膜高的吸油能力,在 23°C 时最大吸油能力达到 148.9 g/g,在 60°C 时最大吸油能力达到 114.8 g/g。进一步的结果表明,纤维膜具有良好的油水分离能力。在重力驱动下,油通量为 6824.4 L/mh,分离油水混合物时水的截留率接近 100%。具体而言,纤维膜在循环测量过程中表现出良好的稳定性。显然证实了具有多孔结构和 SCs 的基于 PLLA 的复合纤维膜可用于废水处理,特别是在一些苛刻的情况下。