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Thin film nanocomposite membrane with triple-layer structure for enhanced water flux and antibacterial capacity

机译:具有三层结构的薄膜纳米复合膜,用于增强水通量和抗菌能力

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摘要

Triple-layered thin film composite (TFC) forward osmosis (FO) membranes prepared on interlayer-based supports have overcome the limitations of conventional porous substrates due to the formation of ultrathin and highly selective polyamide (PA) layers. However, mitigating the internal concentration polarization (ICP) and biofouling of TFC membranes remain a great challenge. Herein, we designed a novel triple-layered thin film nanocomposite (TFN) FO membrane with incorporation of silver (Ag) decorated graphene oxide quantum dots (GOQD) into PA layer via interfacial polymerization on a carbon nanotube (CNT) interlayer-based polyether sul-fone substrate. By contrast with the TFC membranes, the newly developed G0O_D/Ag incorporated triple-layered TFN membrane (TFN-GOQ_D/Ag) exhibited a great alleviation for ICP accompanied with a prominently enhanced water flux of 65.8 L·m~(-2)·h~(-1) and decreased specific reverse salt flux of 1.4 g·m~(-2)·h~(-1) by employing 1 M NaCl solution as draw solution. Moreover, the TFN-GOQP/Ag membrane possessed prominent antibacterial activity against both E. coli (99.8%) and S. aureus (97.3%). Noteworthy, the obtained TFN membrane demonstrated a controlled release of Ag~+ along with long-term antibacterial potential and outstanding fouling resistance during the FO process. This work provides a new avenue to fabricate newly FO membranes with superior performance for water cleaning treatment.
机译:在中间层的载体上制备的三层薄膜复合(TFC)前渗透(FO)膜由于形成超薄和高选择聚酰胺(PA)层而克服了常规多孔基材的局限性。然而,减轻了TFC膜的内部浓度极化(ICP)和生物污染仍然是一个很大的挑战。在此,我们设计了一种新的三层薄膜纳米复合材料(TFN)膜,其通过碳纳米管(CNT)中间层基聚醚SUL上的界面聚合掺入PA层中的银(Ag)装饰的石墨烯氧化物量子点(GOQD)。 - 对衬底。相反,与TFC膜形成对比,新开发的G0O_D / AG掺入的三层TFN膜(TFN-GOQ_D / AG)表现出对ICP的巨大缓解伴随着65.8 L·m〜(2)的突出增强的水通量· H〜(-1)并通过使用1M NaCl溶液作为汲取溶液,降低1.4g·m〜(-2)·h〜(-1)的特定逆盐通量。此外,TFN-GOQP / AG膜具有针对大肠杆菌(99.8%)和金黄色葡萄球菌(97.3%)的突出抗菌活性。值得注意的是,所获得的TFN膜展示了Ag〜+的控制释放以及在FO过程中的长期抗菌潜力和出色的污垢阻力。这项工作提供了新的途径,用于新的膜,具有卓越的水洗处理性能。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|145370.1-145370.11|共11页
  • 作者单位

    Shandong Key Laboratory of Water Pollution Control and Resource Reuse School of Environmental Science and Engineering Shandong University Qingdao 266237 Shandong PR China;

    Shandong Key Laboratory of Water Pollution Control and Resource Reuse School of Environmental Science and Engineering Shandong University Qingdao 266237 Shandong PR China;

    Water Resources Research Institute of Shandong Province Shandong Key Laboratory of Water Resources and Environment Jinan 250014 Shandong PR China;

    Shandong Key Laboratory of Water Pollution Control and Resource Reuse School of Environmental Science and Engineering Shandong University Qingdao 266237 Shandong PR China;

    Shandong Key Laboratory of Water Pollution Control and Resource Reuse School of Environmental Science and Engineering Shandong University Qingdao 266237 Shandong PR China;

    Shandong Key Laboratory of Water Pollution Control and Resource Reuse School of Environmental Science and Engineering Shandong University Qingdao 266237 Shandong PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Forward osmosis; Triple-layered structure; Thin film nanocomposite membrane; Permselectivity; Antibacterial property;

    机译:前进渗透;三层结构;薄膜纳米复合膜;PermSelectivity;抗菌性质;

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