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Impacts of hydrophilic nanofillers on separation performance of thin film nanocomposite reverse osmosis membrane

机译:亲水性纳米填料对薄膜纳米复合反渗透膜分离性能的影响

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摘要

The membrane technology is still considered a costly method to produce potable water. In view of this, RO membrane with enhanced water permeability without trade-off in salt rejection is desirable as it could further reduce the cost for water desalination. In this study, thin film nanocomposite (TFN) membranes containing 0.05 or 0.10 w/v% hydrophilic nanofillers in polyamide layer were synthesized via interfacial polymerization of piperazine and trimesoyl chloride monomers. The resultant TFN membranes were characterized and compared with a control thin film composite (TFC) membrane. Results from the filtration experiments showed that TFN membranes exhibited higher water permeability, salt rejection and fouling resistance compared to that of the TFC membrane. Excessive amount of nanofillers incorporated in the membrane PA layer however negatively affected the cross-linking in the polymer matrix, thus deteriorating the membrane salt rejection. TFN membrane containing 0.05 w/v% of nanofillers showed better performances than the TFC membrane, recording a pure water flux of 11.2 L/m2∙he membsalt rejection of 95.4%, 97.3% and 97.5% against NaCl, Na2SO4 and MgSO4, respectively.
机译:膜技术仍被认为是生产饮用水的昂贵方法。鉴于此,具有透水性增强而又不损失盐分的折衷的RO膜是理想的,因为它可以进一步降低水脱盐的成本。在这项研究中,通过哌嗪和均苯三甲酰氯单体的界面聚合合成了聚酰胺层中包含0.05或0.10 w / v%亲水性纳米填料的薄膜纳米复合材料(TFN)膜。对所得的TFN膜进行表征,并与对照薄膜复合(TFC)膜进行比较。过滤实验的结果表明,与TFC膜相比,TFN膜具有更高的水渗透性,耐盐性和抗污性。然而,在膜PA层中掺入的纳米填料数量过多,会对聚合物基体中的交联产生负面影响,从而使膜盐的截留率恶化。含有0.05 w / v%纳米填料的TFN膜表现出比TFC膜更好的性能,记录的纯水通量为11.2 L / m2∙膜盐对NaCl,Na2SO4和MgSO4的截留率分别为95.4%,97.3%和97.5%。

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