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Enhanced Fouling Resistance and Antimicrobial Property of Ultrafiltration Membranes Via Polyelectrolyte-Assisted Silver Phosphate Nanoparticle Immobilization

机译:通过聚电解质辅助银磷酸纳米粒子固定增强超滤膜的污垢抗性和抗微生物性能

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摘要

Ultrafiltration (UF) is a low-pressure membrane that yields higher permeate flux and saves significant operating costs compared to high-pressure membranes; however, studies addressing the combined improvement of anti-organic and biofouling properties of UF membranes are lacking. This study investigated the fouling resistance and antimicrobial property of a UF membrane via silver phosphate nanoparticle (AgPNP) embedded polyelectrolyte (PE) functionalization. Negatively charged polyacrylic acid (PAA) and positively charged polyallylamine hydrochloride (PAH) were deposited on the membrane using a fluidic layer-by-layer assembly technique. AgPNPs were immobilized within the crosslinked “bilayers” (BL) of PAH/PAA. The effectiveness of AgPNP immobilization was confirmed by microprofile measurements on membrane surfaces using a solid contact Ag micro-ion-selective electrode. Upon stable and uniform BL formation on the membrane surface, the permeate flux was governed by a combined effect of PAH/PAA-derived hydrophilicity and surface/pore coverage by the BLs “tightening” of the membrane. When fouled by a model organic foulant (humic acid), the functionalized membrane exhibited a lower flux decline and a greater flux recovery due to the electrostatic repulsion imparted by PAA when compared to the unmodified membrane. The functionalization rendered antimicrobial property, as indicated by fewer attachments of bacteria that initiate the formation of biofilms leading to biofouling.
机译:超滤(UF)是低压膜,其产生更高的渗透磁通量,并与高压膜相比,节省了显着的运行成本;然而,缺乏解决UF膜的抗有机和生物污垢性能的组合改善的研究。本研究研究了通过银磷酸银纳米粒子(AGPNP)嵌入聚电解质(PE)官能化的UF膜的污垢抗性和抗微生物性能。使用流体层 - 逐层组装技术沉积带负电的聚丙烯酸(PAA)和带正电荷的聚烯丙酰胺盐酸盐(PAH)。将agpnps固定在pAh / paa的交联的“双层”(Bl)内。使用固体接触Ag微离子选择电极对膜表面上的微型抗体测量来证实AGPNP固定的有效性。在膜表面上的稳定和均匀的BL形成时,渗透助焊剂通过PAH / PAA衍生亲水性和表面/孔隙覆盖的组合效应来控制膜的BLS“拧紧”。当由模型有机污垢(腐殖酸)污染时,官能化膜由于未经修改的膜而施加的静电排斥,官能化膜表现出较低的助焊剂下降和更大的助焊剂。官能化使抗微生物性质具有较少的细菌附件所表明的,其引发生物膜形成导致生物污染的形成。

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