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Novel triangular silver nanoparticle modified membranes for enhanced antifouling performance

机译:新型三角银纳米粒子改性膜,增强了防污性能

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This study marks the first ever attempt at the successful fabrication of a novel reactive membrane to combat fouling through layer-by-layer (LBL) surface modification with polyelectrolyte (PE), followed by anisotropic triangular silver nanoparticles (TSNP). The morphology and the presence of TSNP on the membrane was confirmed by HR-TEM, FE-SEM and XPS. The charge density of the novel membrane (PE-TSNP) was increased 15.6 fold, as a result of the sharp-tip morphology of the TSNP forming tip-based “hot spots” on the membrane surface and high-atom-density active facets, which also enhanced the membrane hydrophilicity by 36%. Owing to these improved features, the novel membrane displayed remarkable antibacterial and anti-adhesion properties by achieving 100% bactericidal effect against high initial bacterial concentration (10 ~(7) CFU mL ~(?1) ). The membrane flux was improved by 31% while retaining a high flux recovery rate of 98.2% against biofouling. The membrane also mitigated organic and bio-organic fouling by maintaining high flux recovery rates of 96% and 95% respectively. As compared with a spherical silver nanoparticle modified membrane (PE-SSNP), the PE-TSNP membrane was 25.7% more hydrophilic and achieved 10% higher bacterial killing. Moreover, the novel membrane displayed 9.5%, 11.6%, and 14% higher flux recovery rates than that of the PE-SSNP membrane against biofouling, organic and bio-organic fouling respectively. Furthermore, the novel membrane retained a long-term biocidal capability of 93% even after 4 months of successive tests. ICP-MS revealed silver ion leaching of 4 μg L ~(?1) and the total silver loss of 14% from the PE-TSNP membrane after 14 days.
机译:这项研究标志着有史以来首次成功制造新型反应性膜的方法,该方法是先通过聚电解质(PE)进行层层(LBL)表面改性,再进行各向异性的三角银纳米颗粒(TSNP)来对抗结垢。 HR-TEM,FE-SEM和XPS证实了膜上TSNP的形态和存在。新型膜(PE-TSNP)的电荷密度增加了15.6倍,这是由于TSNP的尖端形态在膜表面上形成了基于尖端的“热点”和高原子密度的活性小平面,这也使膜的亲水性提高了36%。由于这些改进的特征,该新型膜通过针对高初始细菌浓度(10〜(7)CFU mL〜(?1))达到100%的杀菌作用,显示出显着的抗菌和抗粘着特性。膜通量提高了31%,同时保持了98.2%的高通量回收率,防止了生物污垢。该膜还通过分别保持96%和95%的高通量回收率来减轻有机物和生物有机物的结垢。与球形银纳米颗粒改性膜(PE-SSNP)相比,PE-TSNP膜的亲水性高25.7%,细菌杀灭率高10%。此外,与PE-SSNP膜相比,新型膜在生物污染,有机污染和生物有机污染方面的通量回收率分别高出9.5%,11.6%和14%。此外,即使在连续测试4个月后,这种新型膜仍具有93%的长期杀菌能力。 ICP-MS显示14天后,PE-TSNP膜浸出的银离子为4μgL〜(?1),银的总损失为14%。

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