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一种改良的凝聚-超滤工艺去除银纳米颗粒和缓解膜污染:褐藻糖胶的作用。

A modified coagulation-ultrafiltration process for silver nanoparticles removal and membrane fouling mitigation: The role of laminarin.

机构信息

School of Chemistry and Materials Science, Jiangsu Normal University, Xuzhou 221116, China.

School of Chemistry and Materials Science, Jiangsu Normal University, Xuzhou 221116, China.

出版信息

Int J Biol Macromol. 2021 Mar 1;172:241-249. doi: 10.1016/j.ijbiomac.2021.01.034. Epub 2021 Jan 14.

Abstract

Silver nanoparticles (AgNPs) in surface water are highly toxic to humans and difficult to remove due to their adsorption to humic acid (HA). In this study, laminarin (LA) was used as a coagulant aid in a coagulation-ultrafiltration (C-UF) system to improve AgNPs-HA removal efficiency. C-UF efficiency, membrane flux, and flocs properties were investigated to explore the AgNPs-HA removal mechanism and membrane fouling. Results showed that when poly aluminum chloride (PAC) was dosed with LA, AgNPs-HA removal was 10-15% higher than when using PAC alone. The C-UF system using only PAC improved the AgNPs-HA removal efficiency through increased coagulation but resulted in membrane fouling. LA application helped mitigate membrane fouling, and the highest normalized permeate flux and smallest resistance values (0.573 and 2.180 × 10 m, respectively) were achieved when 0.1 mg/L of LA was applied with 5 mg/L of PAC. The alleviating mechanism was related to flocs with large sizes and small fractal dimension (D) values, generating a cake layer with porous morphology. This cake layer was easily removed by flushing and backwashing, which resulted in minimal resistance and fouling of the UF membrane.

摘要

银纳米粒子(AgNPs)在地表水中对人类具有高度毒性,并且由于其与腐殖酸(HA)的吸附而难以去除。在这项研究中,褐藻糖胶(LA)被用作混凝-超滤(C-UF)系统中的助凝剂,以提高 AgNPs-HA 的去除效率。研究了 C-UF 效率、膜通量和絮体特性,以探讨 AgNPs-HA 的去除机制和膜污染。结果表明,当聚合氯化铝(PAC)投加 LA 时,AgNPs-HA 的去除率比单独使用 PAC 时提高了 10-15%。仅使用 PAC 的 C-UF 系统通过增强混凝作用提高了 AgNPs-HA 的去除效率,但导致了膜污染。LA 的应用有助于减轻膜污染,当投加 0.1mg/L 的 LA 和 5mg/L 的 PAC 时,归一化渗透通量最高(0.573),阻力值最小(2.180×10-3m)。缓解机制与大尺寸和小分形维数(D)值的絮体有关,生成具有多孔形态的滤饼层。该滤饼层易于通过冲洗和反冲洗去除,从而导致 UF 膜的阻力和污染最小化。

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