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A superhydrophilic bilayer structure of a nylon 6 nanofiber/cellulose membrane and its characterization as potential water filtration media

机译:尼龙6纳米纤维/纤维素膜的超硫酸双层结构及其表征作为潜在的水过滤介质

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A bilayer structure of a nylon 6 nanofibrous membrane on a cellulose membrane has been successfully developed for water filter application. The nylon 6 nanofibrous membrane was deposited on the cellulose membrane via the electrospinning technique. The bilayer membrane properties, including mechanical strength, wettability, porosity, and microfiltration performance (flux and rejection), were thoroughly investigated. The membrane properties were studied using nylon 6 nanofibrous membranes having various fiber diameters and membrane thicknesses, which were obtained by adjusting the solution concentration and spinning time. The measurement of solution parameters, i.e. , viscosity, conductivity, and surface tension, showed a strong relationship between the solution concentration and these parameters, which later changed the fabricated fiber sizes. The FTIR spectra depicted complete solvent evaporation after the electrospinning process. Smaller nanofiber diameters could improve the mechanical strength of the membranes. The porosity test showed a strong relationship between the nanofiber diameter and the pore size and pore distribution of the membranes. The water contact angle measurement showed the significant influence of the cellulose membrane on increasing the hydrophilicity of the bilayer structure, which then improved the membrane flux. The particle rejection test, using PSL sizes of 308 and 450 nm, showed high rejection (above 98%) for all sample thickness variations. Overall, the bilayer structure of the nylon 6 nanofibers/cellulose membranes showed excellent and promising performance as water filter media.
机译:纤维素膜上的尼龙6纳米纤维膜的双层结构已成功开发用于过滤器施用。尼龙6纳米纤维膜通过静电纺丝技术沉积在纤维素膜上。彻底研究了双层膜性能,包括机械强度,润湿性,孔隙率和微滤性能(通量和排斥)。使用具有各种纤维直径和膜厚度的尼龙6纳米纤维膜研究膜性能,通过调节溶液浓度和旋转时间来获得。溶液参数的测量,即粘度,导电性和表面张力,在溶液浓度和这些参数之间表现出强烈的关系,后来改变了制造的纤维尺寸。 FTIR光谱描绘了静电纺丝过程后完全溶剂蒸发。较小的纳米纤维直径可以提高膜的机械强度。孔隙率测试显示纳米纤维直径与膜的孔径与膜的孔径和孔径分布之间的良好关系。水接触角测量表明纤维素膜对增加双层结构的亲水性的显着影响,这然后改善了膜通量。使用PSL尺寸为308和450nm的粒子排斥试验显示出所有样品厚度变化的高排出(高于98%)。总的来说,尼龙6纳米纤维/纤维素膜的双层结构显示出优异且有前途的性能作为水过滤介质。

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