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Fabrication of high flux and fouling resistant membrane: A unique hydrophilic blend of polyvinylidene fluoride/polyethylene glycol/polymethyl methacrylate

机译:高通量和污垢抗膜的制造:一种独特的聚偏二氟乙烯/聚乙二醇/聚甲基丙烯酸甲酯的亲水混合物

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摘要

To overcome the fouling issue of membrane, hydrophilic membrane fabrication is a rich research domain. In this study, hydrophilic membrane was fabricated by incorporating the hydrophilic polymer into dope solution. Polymethyl methacrylate (PMMA) was blended with polyvinylidene fluoride (PVDF) (12%), polyethylene glycol (PEG) (2%), and N,N dimethyl acetamide (DMAc) solution and membranes were prepared by non-solvent induced phase separation process (NIPS). The synthesized membranes were characterized for their surface and cross-sectional morphology, crystallinity, chemical composition, hydrophilicity, pore size, porosity, permeability, pollutant retention, and fouling resistance. The addition of only PEG to PVDF and PMMA to PVDF increased the porosity, pore size and hydrophilicity of the membrane. Whereas, a combination of both PEG (2%) and PMMA (1%) into PVDF further increased the hydrophilicity (contact angle 60 degrees) and porosity (90%) of the membrane. The maximum pure water flux (PWF) (565 LMH) was also recorded with PVDF-PEG-PMMA membrane without compromising the humic acid (HA) retention rate (80%). Moreover, flux recovery ratio of PVDFPEG-PMMA membrane was more than 80% with hydraulic flushing. The combination of PEG and PMMA proved to be very effective for improving the properties of PVDF membrane resulting in better flux and antifouling potential of the membrane.
机译:为了克服膜的污垢问题,亲水膜制造是富有的研究结构域。在该研究中,通过将亲水聚合物掺入掺杂溶液中来制造亲水膜。通过非溶剂诱导的相分离过程将聚乙二醇(PVDF)(12%),聚乙二醇(PVDF)(12%),聚乙二醇(PEG)(2%)(2%)和N,N二甲基乙酰胺(DMAC)溶液和膜混合(nips)。合成膜的特征在于它们的表面和横截面形态,结晶度,化学成分,亲水性,孔径,孔隙率,渗透性,污染物保留和污染物抗性。仅将PEG添加到PVDF和PMMA至PVDF增加孔隙率,孔径和膜的亲水性。然而,PEG(2%)和PMMA(1%)的组合进一步增加了膜的亲水性(接触角60度)和孔隙率(90%)。最大纯净水通量(PWF)(PWF)(565 LMH)还记录了PVDF-PEG-PMMA膜,而不会损害腐殖酸(HA)保留率(80%)。此外,PVDFPEG-PMMA膜的通量回收率大于80%,液压冲洗​​量大于80%。 PEG和PMMA的组合被证明对改善PVDF膜的性能非常有效,导致膜的更好的助焊剂和防污电位。

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