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Electrospun Bilayer PAN/Chitosan Nanofiber Membranes Incorporated with Metal Oxide Nanoparticles for Heavy Metal Ion Adsorption

机译:Electromun双层平移/壳聚糖纳米纤维膜与金属氧化物纳米颗粒加入重金属离子吸附

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Bilayer nanofiber membranes with enhanced adsorption and mechanical properties were produced by combining a layer of polyacrylonitrile (PAN) functionalized with metal oxides (MO) of ZnO or TiO2 with a layer of chitosan (CS) via consecutive electrospinning. The adsorption properties of the bilayer PAN/MO–CS nanofiber membranes against lead (Pb(II)) and cadmium (Cd(II)) ions were investigated, including the effects of the solution pH, initial ion concentrations, and interaction time. The integration of a CS layer into PAN/MO nanofibers increased the adsorption capacity of lead by 102% and cadmium by 405%, compared to PAN/MO single layer. The nonlinear optimization method showed that the pseudo-second-order kinetic model and Langmuir isotherm equation better described the adsorption results. More importantly, the incorporation of a supportive CS nanofiber layer enhanced the tensile strength of PAN/MO–CS bilayer by approximately 68% compared to the PAN/MO single layer, owing to the strong interaction between the fibers at the interface of the two layers.
机译:通过连续的电刺刺激通过连续的电刺,通过将具有金属氧化物(Mo)官能化的聚丙烯腈(PAN)的聚丙烯腈(PAN)与连续的电刺,通过连续的电刺,通过将ZnO或TiO2官能化的聚丙烯腈(PAN)层组合,制备具有增强的吸附和机械性能的双层纳米纤维膜。研究了双层平移/ MO-CS纳米纤维膜的吸附性能(Pb(II))和镉(CD(II))离子,包括溶液pH,初始离子浓度和相互作用时间的影响。与PAN / MO单层相比,Cs层与PAN / MO纳米纤维的吸附容量增加了102%,镉的吸附容量将102%和镉的吸附能力通过405%。非线性优化方法表明,伪二阶动力学模型和Langmuir等温线方程更好地描述了吸附结果。更重要的是,由于两层界面处的纤维之间的强相互作用,掺入支持性CS纳米纤维层的掺入率提高了大约68%的平移/ mo-Cs双层的拉伸强度约68% 。

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