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Layer-by-layer surface modification of polyethersulfone membranes using polyelectrolytes and AgCl/TiO2 xerogels

机译:聚电解质和AgCl / TiO2干凝胶对聚醚砜膜的逐层表面改性

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摘要

In this study, the layer-by-layer (LbL) assembly method was employed to modify a commercial polyethersulfone (PES) membrane by successive adsorption of chitosan and alginate as cationic and anionic polyelectrolytes. To enhance anti-biofouling property, pure, PEG mixed and PEGylated AgCl/TiO2 xerogels were incorporated solely in the top layer of the LbL-modified membranes. Organic and biological foulings were addressed separately using alginate and Escherichia coli bacteria suspensions as the organic and biological model foulants, respectively. LbL-modifying the commercial PES membrane successively with chitosan and alginate polyelectrolyte multilayers prevented organic fouling extensively. In addition, we found that AgCl/TiO2-incorporated membranes show higher water permeability and improved resistance to biological fouling as compared to the PES membrane. Silver amounts in consecutively collected permeate samples were quantified by ICP-MS analysis to assess the stability of AgCl/TiO2-incorporated layers. Silver loss per filtration cycle followed an increasing trend initially, up to a filtration volume totaling 3000L/m2, leading to 4.2% reduction in the immobilized silver amount. After that, silver loss per filtration cycle stabilized at ~7.44μg/L, which extrapolates to ~265 days time-span for the remaining silver to be released at a filtration rate of ~1000L/m2 h. Antibacterial activity tests showed that AgCl/TiO2-incorporated layers do not permit bacterial growth on the membrane surface.
机译:在这项研究中,通过逐层吸附壳聚糖和藻酸盐作为阳离子和阴离子聚电解质,采用了逐层(LbL)组装方法来修饰商用聚醚砜(PES)膜。为了增强抗生物污垢性,将纯的,PEG混合的和PEG化的AgCl / TiO2干凝胶仅掺入LbL改性膜的顶层。使用藻酸盐和大肠杆菌细菌悬浮液分别作为有机和生物模型污垢剂分别处理有机和生物污垢。用壳聚糖和藻酸盐聚电解质多层相继对工业PES膜进行LbL修饰可广泛防止有机结垢。此外,我们发现,与PES膜相比,掺有AgCl / TiO2的膜表现出更高的透水性和更高的抗生物结垢性。通过ICP-MS分析量化连续收集的渗透液样品中的银量,以评估掺入AgCl / TiO2的层的稳定性。最初,每个过滤循环中的银损失都遵循增加趋势,直至过滤总量达到3000L / m2,从而使固定的银量减少了4.2%。此后,每个过滤周期的银损失稳定在〜7.44μg/ L,这可以推断到〜265天的时间跨度,以便以〜1000L / m2 h的过滤速率释放剩余的银。抗菌活性测试表明,掺有AgCl / TiO2的层不允许细菌在膜表面生长。

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