Multistage nanofiltration membranes with adsorptive substrate for enhanced removal of emerging organic pollutants

IF 8.8 1区 工程技术 Q1 ENGINEERING, CHEMICAL Journal of Membrane Science Pub Date : 2025-06-01 Epub Date: 2025-04-10 DOI:10.1016/j.memsci.2025.124095
Yaoli Guo , Lei Jiang , Shengchao Zhao , Sabrine Ghazouani , Yanyan Liu , Shushan Yuan , Shengchao Wei , Shuangmei Xue , Yingfei Hou , Zhouyou Wang , Idris Okeowo , Q. Jason Niu , Pengrui Jin , Bart Van der Bruggen
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Abstract

Nanofiltration (NF) membranes, characterized by a molecular weight (MW) cut-off above 350 Da, demonstrate excellent water permeance and efficient rejection of large molecules. However, these membranes are inadequate for the removal of emerging organic pollutants (EOPs) around or below 300 Da. The presence of these EOPs is an increasing public concern due to their potential chronic health impacts and ecological disruptions, even at trace levels. In this study, we report a three-dimensional Kevlar hydrogel modified with polyaniline (PANI) nanofibers, which serves as the support membrane for creating multistage NF membranes with adsorptive substrate. These membranes feature an ultrathin polyamide active layer with a uniform distribution of pore size. Furthermore, the doping/dedoping chemistry of polyaniline endows the NF membrane with a tunable charge, allowing for improved selective [adsorption and small organic molecule separation from pharmaceutical and municipal wastewater. The prepared NF membranes have high adsorption capacity, enabling selective and fast molecular separation, and exhibit excellent dynamic processing capacity. The NF adsorption membrane achieves over 95 % removal of various EOPs (such as Methyl Orange, Bisphenol A, Tramadol) far exceeding the around 50 % rejection of commercial NF membranes and offers double the water permeance. Efficient EOPs capture through combined adsorption and NF rejection offers a strategy for preparing high-performance NF membranes for precise separation.

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多级纳滤膜与吸附底物加强去除新出现的有机污染物
纳滤(NF)膜的特点是分子量(MW)截止在350 Da以上,具有优异的透水性和对大分子的有效过滤。然而,这些膜不足以去除300 Da左右或以下的新出现的有机污染物(EOPs)。由于其潜在的慢性健康影响和生态破坏,即使是微量水平,这些EOPs的存在也日益引起公众的关注。在这项研究中,我们报道了一种用聚苯胺(PANI)纳米纤维修饰的三维凯夫拉尔水凝胶,作为具有吸附底物的多级纳滤膜的支撑膜。这些膜具有超薄聚酰胺活性层,孔径分布均匀。此外,聚苯胺的掺杂/脱掺杂化学性质使纳滤膜具有可调节的电荷,从而提高了对制药和城市废水的选择性吸附和小有机分子分离。制备的纳滤膜具有较高的吸附能力,可实现选择性和快速的分子分离,并具有良好的动态处理能力。纳滤吸附膜对各种EOPs(如甲基橙、双酚A、曲马多)的去除率超过95%,远远超过商用纳滤膜约50%的去除率,并提供两倍的透水性。通过联合吸附和滤膜拒绝高效捕获EOPs,为制备高性能滤膜进行精确分离提供了策略。
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来源期刊
Journal of Membrane Science
Journal of Membrane Science 工程技术-高分子科学
CiteScore
17.10
自引率
17.90%
发文量
1031
审稿时长
2.5 months
期刊介绍: The Journal of Membrane Science is a publication that focuses on membrane systems and is aimed at academic and industrial chemists, chemical engineers, materials scientists, and membranologists. It publishes original research and reviews on various aspects of membrane transport, membrane formation/structure, fouling, module/process design, and processes/applications. The journal primarily focuses on the structure, function, and performance of non-biological membranes but also includes papers that relate to biological membranes. The Journal of Membrane Science publishes Full Text Papers, State-of-the-Art Reviews, Letters to the Editor, and Perspectives.
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