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Biogenic silver nanocomposite TFC nanofiltration membrane with antifouling properties.

机译:具有防污性能的生物银纳米复合TFC纳滤膜。

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摘要

Biofouling is still a major obstacle hindering wider application of thin-film composite (TFC) nanofiltration membranes in the water industry. One of the practical strategies to reduce biofouling is to develop novel antibiofouling membrane materials. Well-dispersed biogenic silver nanoparticles with a diameter of ~6 nm (Bio-Ag0-6) were first immobilized in the selective layer of TFC nanofiltration membranes. Different dosages of Bio-Ag0-6 were added in the aqueous solution during the interfacial polymerization of tetraethylenepentamine and 1,3,5-benzenetricarbonyl trichloride (TMC). Improved properties of Bio-Ag0-6 /TFC membranes were systematically investigated. When the concentration of Bio-Ag0-6 increased from 0 to 0.05 wt.% in aqueous solution, the water flux of TFC membranes increased from 7.31 to 13.76 Lm−2 h−1 while maintaining the rejection of Na2SO4 at a relatively high level. The addition of Bio-Ag0-6 also enhanced the hydrophilicity of Bio-Ag0-6/TFC membranes in comparison with the bare TFC membranes. All Bio-Ag0-6/TFC membranes exhibited an obvious antibacterial ability to inhibit the growth of Pseudomonas aeruginosa. Moreover, the Bio-Ag0-6/TFC membranes showed the property of a low silver leaching rate in both the static immersion and the filtration systems. It demonstrated that the embedded Bio-Ag0-6 in TFC membrane via interfacial polymerization improved the performance of the TFC nanofiltration membrane.
机译:生物污染仍然是阻碍薄膜复合(TFC)纳滤膜在水工业中广泛应用的主要障碍。减少生物污染的实用策略之一是开发新型的抗生物污染膜材料。首先将直径约6 nm的分散良好的生物银纳米颗粒(Bio-Ag0-6)固定在TFC纳滤膜的选择性层中。在四亚乙基五胺和1,3,5-苯三羰基三氯化物(TMC)的界面聚合过程中,将不同剂量的Bio-Ag0-6添加到水溶液中。系统地研究了Bio-Ag0-6 / TFC膜的改进性能。当水溶液中Bio-Ag0-6的浓度从0增加到0.05 wt。%时,TFC膜的水通量从7.31增加到13.76 Lm-2 h-1,同时保持较高的Na2SO4截留率。与裸露的TFC膜相比,添加Bio-Ag0-6还可增强Bio-Ag0-6 / TFC膜的亲水性。所有Bio-Ag0-6 / TFC膜均表现出明显的抑制铜绿假单胞菌生长的抗菌能力。此外,Bio-Ag0-6 / TFC膜在静态浸没和过滤系统中均显示出低银浸出率的特性。这表明通过界面聚合将生物-Ag0-6嵌入TFC膜中可以改善TFC纳滤膜的性能。

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