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Cellulose nanocrystal/silver (CNC/Ag) thin-film nanocomposite nanofiltration membranes with multifunctional properties

机译:纤维素纳米晶/银(CNC / AG)薄膜纳米复合纳米过滤膜,具有多功能性质

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摘要

The trade-off between membrane permeability and selectivity and membrane fouling, including both physical and bio-fouling, are major challenges that limit the practical application of nanofiltration (NF) membranes. In order to address these issues simultaneously, multifunctional membranes with maximized water permeability/salt selectivity and enhanced antifouling and antibacterial properties are desired. In this work, we prepare a novel multifunctional thin film nanocomposite (TFN) NF membrane by embedding cellulose nanocrystal/silver (CNC/Ag) nanocomposites into a polyamide layer. The CNC/Ag TFN NF membranes exhibit excellent properties by taking advantage of both CNCs, a highly hydrophilic, low-cost, bio-renewable, and environmentally friendly nanomaterial, and Ag nanoparticles, one of the most effective bactericidal materials. With the incorporation of only 0.01 wt% CNC/Ag nanocomposites, a high pure water permeability (25.4 L m(-2) h(-1) bar(-)) and a high rejection rate of Na2SO4 (99.1%) of the CNC/Ag TFN NF membrane can be achieved, respectively. Besides, the membrane also exhibits exceptional antifouling (flux recovery ratio reaches 92.6% for humic acid) and antibacterial performance (99.4% reduction of Escherichia coli viability). Ag+ leaching tests also demonstrate the good stability of Ag nanoparticles in the active thin-film layer of the CNC/Ag NF membranes. These findings have strong positive implications for the development of next-generation high performance NF membranes for water treatment.
机译:膜渗透性和选择性之间的折衷和膜污垢,包括物理和生物污染,是限制纳滤膜(NF)膜的实际应用的主要挑战。为了同时解决这些问题,需要具有最大化的水渗透性/盐选择性和增强的防污和抗菌性能的多功能膜。在这项工作中,通过将纤维素纳米晶/银(CNC / Ag)纳米复合材料嵌入聚酰胺层中,通过将纤维素纳米晶/银(CNC / AG)制备新的多功能薄膜纳米复合材料(TFN)NF膜。通过利用CNC,高亲水性,低成本,生物可再生和环保的纳米材料和Ag纳米颗粒,通过最有效的杀菌材料之一,CNC / Ag TFN NF膜表现出优异的性能。掺入仅0.01wt%CNC / Ag纳米复合材料,高纯净的水渗透率(25.4Lm(-2)H(-1)棒( - ))和Na 2 SO 4(99.1%)的高抑制率的CNC / Ag TFn NF膜可以分别实现。此外,膜还表现出异常的防污(助长率为腐殖酸的92.6%)和抗菌性能(减少大肠杆菌活力的99.4%)。 Ag +浸出试验还证明了CNC / Ag NF膜的活性薄膜层中Ag纳米颗粒的良好稳定性。这些发现对用于水处理的下一代高性能NF膜的发展具有强烈的积极影响。

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