Novel PA/PVDF hollow fiber nanofiltration membrane with high permeability and Ca2+/antibiotics selectivity for drinking water purification

Yuanhui Tang , Jihao Zhu , Huifang Yu , Fanchen Zhang , Song Hu , Hedi Chen , Chunhui Zhang , Huanhuan Wu , Lixin Yu , Xiaolin Wang , Haihui Wang , Li Ding , Yakai Lin
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Abstract

Emerging contaminants, including antibiotics, threaten water safety and public health. To remove these contaminants while retaining beneficial minerals in water, such as calcium (Ca), a novel thin-film composite nanofiltration (NF) membrane was manufactured through polymerization of a barrier layer composed of polypiperazine amide onto polyvinylidene fluoride (PVDF) hollow fiber (HF) substrate. The pore size of the PVDF surface was refined by introducing poly(vinylpyrrolidone) via a thermally induced phase separation method. Then piperazine (PIP) and trimesoyl chloride were selected to synthesize the NF membrane by interfacial polymerization with NaHCO3 as an additive. The influence of PIP concentration on the membrane morphology and separation performance was investigated. The optimized HF NF membrane (NF3) exhibited high water permeability (8.08 ​L/(m2 ​h ​bar)) due to its strong hydrophilicity. It also demonstrated a molecular weight cut-off of 378 ​Da and an enhanced negative surface charge (−43.96 ​mV), which was beneficial for the exclusion of antibiotics and passage of Ca2+. The high tetracycline rejection (98.9 ​%) enabled the NF3 membrane to achieve superior Ca2+/antibiotic selectivity (37.27) compared with most commercially available NF membranes. This study offers novel insights into tailoring the mineral/micropollutant selectivity of HF NF membranes for drinking water purification.

Abstract Image

具有高渗透性和 Ca2+/抗生素选择性的新型 PA/PVDF 中空纤维纳滤膜用于饮用水净化
包括抗生素在内的新兴污染物威胁着水安全和公众健康。为了在去除这些污染物的同时保留水中的有益矿物质,如钙(Ca),通过在聚偏二氟乙烯(PVDF)中空纤维(HF)基材上聚合由聚哌嗪酰胺组成的阻挡层,制造出了一种新型薄膜复合纳滤(NF)膜。通过热诱导相分离法引入聚乙烯吡咯烷酮,细化了 PVDF 表面的孔径。然后选择哌嗪(PIP)和三甲基甲酰氯,以 NaHCO3 为添加剂,通过界面聚合合成 NF 膜。研究了 PIP 浓度对膜形态和分离性能的影响。优化后的 HF NF 膜(NF3)由于具有较强的亲水性,因此具有较高的透水性(8.08 L/(m2 h bar))。它还显示出 378 Da 的分子量截止值和增强的负表面电荷(-43.96 mV),这有利于抗生素的排除和 Ca2+ 的通过。与大多数市售 NF 膜相比,NF3 膜对四环素的高排斥率(98.9%)使其具有更高的 Ca2+/抗生素选择性(37.27)。这项研究为定制用于饮用水净化的高频 NF 膜的矿物质/微污染物选择性提供了新的见解。
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CiteScore
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