Key Laboratory of Polyoxometalate Science of the Ministry of Education, Faculty of Chemistry , Northeast Normal University , Changchun 130024 , PR China.
ACS Appl Mater Interfaces. 2019 May 8;11(18):16662-16673. doi: 10.1021/acsami.9b04326. Epub 2019 Apr 29.
Water contamination by emerging organic pollutants, such as pharmaceuticals and personal care products (PPCPs), is becoming more and more serious. Porous aromatic frameworks (PAFs) are considered as promising adsorbents to remove the PPCPs. To overcome the limitation of PAFs in their powder forms for large-scale applications, herein, we proposed a strategy to covalently anchor PAFs onto electrospun polymer fiber membranes. Polyaniline (PANI) played the role of aromatic seed layer, which was coated on the electrospun polyacrylonitrile (PAN) fiber membrane first. Then, PAF-45 modification was in situ synthesized in the presence of the PANI-coated electrospun PAN fiber membrane. This study could make the PAF-based materials be handled more easily and improve the surface area of electrospun fiber membrane. The obtained composite adsorbent (PAF-45-PP FM) was applied for the adsorption of three PPCPs: ibuprofen (IBPF), chloroxylenol (CLXN), and N, N-diethyl-meta-toluamide (DEET), which exhibited high adsorption capacity and good recycling ability. According to the Langmuir model, the maximum adsorption capacities of PAF-45-PP FM toward IBPF, CLXN and DEET were 613.50, 429.18, and 384.61 mg/g, respectively. In addition, after ten adsorption-desorption cycles, the adsorption capacities toward the three PPCPs decreased slightly. Through an adsorption comparison test, the adsorption capacity of PAF-45-PP FM almost attributed to the loading PAF-45. The adsorption mechanism analysis illustrated that there were pore capture, hydrophobic interaction and π-π interaction between PPCPs and PAF-45-PP FM. Therefore, the PAF-45-PP FM can be potential adsorbents to purify water contaminated with PPCPs.
新兴有机污染物(如药品和个人护理产品(PPCPs))对水的污染越来越严重。多孔芳香框架(PAFs)被认为是去除 PPCPs 的有前途的吸附剂。为了克服 PAF 粉末形式在大规模应用中的局限性,本文提出了一种将 PAF 共价锚定到静电纺聚合物纤维膜上的策略。聚苯胺(PANI)作为芳环种子层,首先涂覆在静电纺聚丙腈(PAN)纤维膜上。然后,在存在涂覆有 PANI 的静电纺 PAN 纤维膜的情况下,原位合成了 PAF-45 修饰物。这项研究可以使基于 PAF 的材料更容易处理,并提高静电纺纤维膜的表面积。所得复合吸附剂(PAF-45-PP FM)用于吸附三种 PPCPs:布洛芬(IBPF)、氯二甲苯酚(CLXN)和 N,N-二乙基间甲苯酰胺(DEET),其表现出高吸附容量和良好的可回收性。根据朗缪尔模型,PAF-45-PP FM 对 IBPF、CLXN 和 DEET 的最大吸附容量分别为 613.50、429.18 和 384.61mg/g。此外,经过十次吸附-解吸循环后,三种 PPCPs 的吸附容量略有下降。通过吸附对比试验,PAF-45-PP FM 的吸附容量几乎归因于负载的 PAF-45。吸附机理分析表明,PPCPs 与 PAF-45-PP FM 之间存在孔捕获、疏水相互作用和π-π相互作用。因此,PAF-45-PP FM 可以作为净化 PPCPs 污染水的潜在吸附剂。