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Optimisation of thin film composite nanofiltration membranes based on laminated nanofibrous and nonwoven supporting material

机译:基于层状纳米纤维和非织造布支撑材料的薄膜复合纳滤膜的优化

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摘要

The electrospun nanofibrous membranes are one of the emerging technologies for membrane filtration; however, the applications of nanofibrous membranes hindered by their low mechanical strength and lab-scale production method. This work describes the fabrication of composite membranes consisting of the following three-layer system: a nonwoven part as the supporting material, a nanofibrous scaffold as the porous layer, and an active barrier layer. The nonwoven part and the nanofibrous scaffold were laminated together to achieve the required mechanical strength and adhesion. Formation of the active barrier layer was carried out by optimising four parameters: the monomer solution concentration, the reaction time for monomer polymerisation, the drying time and the post-treatment temperature. At each step of the process, one of the optimum conditions, indicated by filtration performance and the investigation proceeded to the next step. The filtration performance of the fabricated thin film nanofibrous composite (TFNC) membranes was done by the dead-end cell. The TFNC membrane based on m-phenylenediamine monomers showed a high rejection (93.5%) of NaCl ions at a low flux. The flux performances of the piperazine monomer-based TFNC membranes showed high MgSO4 salt rejection (95.6 %) and flux at the same time.
机译:电纺纳米纤维膜是新兴的膜过滤技术之一。然而,纳米纤维膜的低机械强度和实验室规模的生产方法阻碍了其应用。这项工作描述了由以下三层系统组成的复合膜的制造:作为支撑材料的非织造部件,作为多孔层的纳米纤维支架和活性阻隔层。将非织造部件和纳米纤维支架层压在一起以获得所需的机械强度和粘合性。通过优化四个参数进行活性阻挡层的形成:单体溶液浓度,单体聚合反应时间,干燥时间和后处理温度。在该过程的每个步骤中,由过滤性能指示的最佳条件之一,然后进行下一步研究。制成的薄膜纳米纤维复合材料(TFNC)膜的过滤性能是通过死角池完成的。基于间苯二胺单体的TFNC膜在低通量下显示出高的NaCl离子截留率(93.5%)。哌嗪单体基TFNC膜的通量性能显示出较高的MgSO4脱盐率(95.6%)和通量。

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