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用于高负载量下银纳米粒子均匀浸渍的工程聚醚砜膜:高通量水渗透和生物污染预防。

Engineered polyethersulfone membrane for well-dispersed silver nanoparticle impregnation at high loading: high water permeate flux and biofouling prevention.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.

出版信息

Water Sci Technol. 2021 Jul;84(1):27-42. doi: 10.2166/wst.2021.218.

Abstract

We present a new method for impregnation of silver nanoparticles (Ag NPs) at high loading on polyethersulfone (PES) membrane's external surface, simultaneously retaining native membrane's porosity - to achieve a high water permeate flux without biofouling. This was possible by PES membrane's surface modification with acrylic acid (AA), finally leading to AA-Ag-PES membrane. AA-Ag-PES had a high (9.04%) Ag-NP loading selectively on membrane surface, as discrete, smaller (mean size: 20 nm) nanoparticles (NPs). In nonfunctionalized Ag-PES, aggregated (mean size: 70 nm) NPs, with lower Ag loading (0.73 wt.%) was obtained, with NP being present both on membrane surface and inside pores. Consequently, AA-Ag-PES could maintain similar water permeability and porosity (10,153.05 Lm hbar and 69.98%, respectively), as in native PES (11,368.74 Lm hbar and 68.86%, respectively); whereas both parameters dropped significantly for Ag-PES (4,869.66 Lm hbar and 49.02%, respectively). AA-Ag-PES also showed least flux reduction (7.7%) due to its anti-biofouling property and high flux recovery after usage and cleaning, compared to native PES and Ag-PES membrane's much higher flux reduction (54.29% and 36.7%, respectively). Hence, discrete NP impregnation, avoiding pore blockage, is key for achieving high water flux and anti-biofouling properties (in AA-Ag-PES), compared to non-functionalized Ag-PES, due to aggregated Ag-NPs inside its pores.

摘要

我们提出了一种在聚醚砜(PES)膜外表面上高负载浸渍银纳米粒子(Ag NPs)的新方法,同时保留了原始膜的多孔性-以实现高通量且无生物污染的水渗透。这是通过 PES 膜表面与丙烯酸(AA)的改性实现的,最终得到 AA-Ag-PES 膜。AA-Ag-PES 膜表面具有高(9.04%)Ag-NP 负载量,呈离散、较小(平均尺寸:20nm)的纳米颗粒(NPs)。在未功能化的 Ag-PES 中,获得了具有较低 Ag 负载量(0.73wt.%)的聚集(平均尺寸:70nm)的 NPs,这些 NPs 既存在于膜表面又存在于孔内。因此,AA-Ag-PES 可以保持与原始 PES 相似的水渗透性和孔隙率(分别为 10、153.05Lm hbar 和 69.98%;11、368.74Lm hbar 和 68.86%);而 Ag-PES 的这两个参数则明显下降(分别为 4、869.66Lm hbar 和 49.02%)。与原始 PES 和 Ag-PES 膜相比,AA-Ag-PES 由于具有抗生物污染性和在使用和清洁后具有较高的通量恢复能力,通量减少仅为 7.7%;而原始 PES 和 Ag-PES 膜的通量减少分别为 54.29%和 36.7%。因此,与未功能化的 Ag-PES 相比,通过避免孔堵塞进行离散的 NP 浸渍是实现高通量和抗生物污染特性(在 AA-Ag-PES 中)的关键,这是因为其孔内存在聚集的 Ag-NPs。

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