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磁场辅助光催化 TiO2 颗粒在膜表面的排列以增强用于水处理的膜抗污染性能。

Magnetic field assisted arrangement of photocatalytic TiO particles on membrane surface to enhance membrane antifouling performance for water treatment.

机构信息

College of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua 321004, PR China.

Zhejiang Keran Environ Shares-Tech Co.Ltd., 130 Binhe Road, Jinhua 321004, PR China.

出版信息

J Colloid Interface Sci. 2020 Jun 15;570:273-285. doi: 10.1016/j.jcis.2020.03.008. Epub 2020 Mar 4.

DOI:10.1016/j.jcis.2020.03.008
PMID:32163789
Abstract

Fabrication of membranes with high antifouling and self-cleaning ability is a long-term pursuit of research community. For this purpose, the current work proposed a strategy to use an external magnetic field to arrange the magnetic TiO@Ni particles (MNPs) onto the polymeric polyether sulfone (PES) membrane surface. The characterization results clearly indicated that the MNPs were successfully embedded onto the membrane surface instead of uniformly distributing into the membrane bulk. Because of this superficial distribution, the prepared composite membrane exhibited a flux of 871.2 ± 2.9 L·m·h·bar, which was 5 times flux of the pristine PES membrane. Meanwhile, it remained a rejection of 95.85% bovine serum albumin (BSA), which was also better than that of the pristine PES membrane. The cycle filtration experiments verified that the composite membrane possessed promoted antifouling ability for filtrating BSA, yeast extract fermentation (YEF), ammonium alginate (SA) and humic acid (HA) solutions. The antifouling mechanism was analyzed by the total interaction energies (ΔG), which were quantitatively evaluated by using the extended Derjaguin-Landau-Verwey-Overbeek (XDLVO) theory. Moreover, it was interestingly found that the composite membrane possessed a self-cleaning property under radiation of UV light and sunlight. The optimal membrane after self-cleaning presented flux recovery ratio (FRR) of 75.4%, 99.56%, 92.11% and 98.26% for BSA, YEF, SA and HA solutions, respectively. This work demonstrated a novel way to fabricate membranes with high antifouling and self-cleaning ability for water treatment.

摘要

制备具有高抗污染和自清洁能力的膜是研究界长期以来的追求。为此,本工作提出了一种策略,利用外部磁场将磁性 TiO@Ni 颗粒(MNPs)排列在聚合物聚醚砜(PES)膜表面。表征结果清楚地表明,MNPs 成功地嵌入到膜表面,而不是均匀地分布在膜体中。由于这种表面分布,所制备的复合膜表现出 871.2±2.9 L·m·h·bar 的通量,是原始 PES 膜通量的 5 倍。同时,它仍然保持着 95.85%的牛血清白蛋白(BSA)截留率,这也优于原始 PES 膜。循环过滤实验验证了该复合膜在过滤 BSA、酵母提取物发酵液(YEF)、铵藻酸盐(SA)和腐殖酸(HA)溶液时具有增强的抗污染能力。通过总相互作用能(ΔG)分析了抗污染机制,并通过扩展的 Derjaguin-Landau-Verwey-Overbeek(XDLVO)理论对其进行了定量评估。此外,有趣的是发现该复合膜在紫外光和阳光辐射下具有自清洁性能。经自清洁后的最佳膜对 BSA、YEF、SA 和 HA 溶液的通量恢复率(FRR)分别为 75.4%、99.56%、92.11%和 98.26%。这项工作为水处理中制备具有高抗污染和自清洁能力的膜提供了一种新方法。

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