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Development of Polyethersulfone (PES)/Silver Nanoparticles (AgNPs)/Polyethylene Glycol (PEG) Nanofiltration Membrane

机译:聚醚砜(PES)/银纳米颗粒(AgNP)/聚乙二醇(PEG)纳米过滤膜的研制

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Nanofiltration is a membrane-based separation process that has been used widely in the separation and purification fields for various applications such as dye desalting, applications of water softening, pharmaceuticals and wastewater treatment. In this research, polyethersulfone (PES), polyethylene glycol (PEG), Pluronic F108 and silver nanoparticles (AgNPs) nanofiltration membrane was prepared using casting solution technique with N-methyl-2-pyrrolidone (NMP) was used as a solvent. The effects of Pluronic F108 and silver nanoparticles (AgNPs) concentrations in the casting solutions on the membrane performance/properties were also studied. The membrane pure water permeation (PWP) and salt rejection tests were carried out for membrane performance analysis. Scanning electron microscopy (SEM) was used for the membrane morphology characterization. Fourier transform infrared spectroscopy was utilized to identify functional groups in the membrane. Membrane with 2.0 wt.% of Pluronic F108 and 0.05 wt.% of AgNPs showed the best performances for both PWP (40.89 L/m~2h) as well as permeation flux of salts solution of NaCl (43.95 L/m~2h), Na_2SO_4 (21.16 L/m~2h), MgCl_2 (26.46 L/m~2h) and MgSO_4 (20.41 L/m~2h). All fabricated membranes with different formulation of dope composition obtained high salts rejection in the range of 79% to 91%. SEM images showed addition of AgNPs has improved fabricated membrane morphology with higher pore density and larger macro-void structure.
机译:纳滤是一种基于膜的分离过程,其在分离和净化领域中被广泛用于各种应用,例如染料脱盐,水软化,药物和废水处理的应用。在该研究中,使用使用N-甲基-2-吡咯烷酮(NMP)的浇铸溶液技术制备聚醚砜(PE),聚乙二醇(PEG),聚乙二醇(PPEG),PLUTONIC F108和银纳米颗粒(AGNPS)纳米颗粒(AGNP)纳米滤膜。还研究了Pluronic F108和银纳米颗粒(AgNP)浓度对膜性能/性能浇铸溶液中的效果。对膜性能分析进行膜纯净水渗透(PWP)和盐排斥试验。扫描电子显微镜(SEM)用于膜形态表征。使用傅里叶变换红外光谱法识别膜中的官能团。 2.0重量%的膜。Pluronic F108和0.05重量%的%。agnps%的agnps均为PWP(40.89L / m〜2H)的最佳性能,以及NaCl的盐溶液的渗透通量(43.95L / m〜2h), Na_2SO_4(21.16 L / m〜2H),MgCl_2(26.46L / m〜2H)和MgSO_4(20.41L / m〜2H)。所有具有不同配方的掺杂组合物的制造膜在79%至91%的范围内得到高盐排斥。 SEM图像显示AgNPS的添加具有改善的制造膜形态,具有较高的孔密度和更大的宏观空隙结构。

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