Department of Preventive Medicine, School of Public Health, Wuhan University, Wuhan 430071, PR China.
Department of Preventive Medicine, School of Public Health, Wuhan University, Wuhan 430071, PR China.
J Hazard Mater. 2022 May 15;430:128494. doi: 10.1016/j.jhazmat.2022.128494. Epub 2022 Feb 16.
Perfluoroalkyl and polyfluoroalkyl substances (PFASs) are a family of emerging contaminants which are widely present in environment. In this work, novel UiO-66-F/polyacrylonitrile (UiO-66-F/PAN) hybrid nanofibers were firstly prepared via blend electrospinning or in-situ growth method for the pipette-tip solid phase extraction of PFASs. Characterizations demonstrate the as-synthesized UiO-66-F/PAN nanofibers have good chemical and thermal stability, possess large surface area (248 m²/g) and mesoporous framework structure. Several extraction factors including the amount of adsorbent, pH and ionic strength of sample solution, extraction time and eluent were investigated and the optimum conditions are 20 mg of the selected sorbent, adjusting to pH 5 and adding 4% w/v NaCl to sample solution, extraction for 12 min (3 min × 4). The good adsorption affinity of UiO-66-F/PAN for PFASs can be attributed to the extensive adsorption sites and multiple interactions including hydrophobic interaction, hydrogen bonding and F-F interaction. Low limit of detection (0.008-0.076 µg/L), limit of quantification (0.010-0.163 µg/L) and recoveries (70.84-113.57%) for 9 PFASs with relative standard deviations < 15% were achieved. When applied in the analysis of target PFASs in lake water, tap water, beverage, and shrimp muscle samples, this method could achieve robust and accurate results with sufficient sensitivity for nine PFASs.
全氟烷基和多氟烷基物质 (PFASs) 是一类新兴的污染物,广泛存在于环境中。本工作中,首次通过共混静电纺丝或原位生长法制备了新型 UiO-66-F/聚丙烯腈 (UiO-66-F/PAN) 杂化纳米纤维,用于 PFASs 的微量固相萃取。表征结果表明,所合成的 UiO-66-F/PAN 纳米纤维具有良好的化学和热稳定性,比表面积大 (248 m²/g),具有介孔骨架结构。考察了萃取过程中的几个影响因素,包括吸附剂用量、样品溶液 pH 值和离子强度、萃取时间和洗脱液等,优化条件为:吸附剂用量 20 mg,调节 pH 值至 5,向样品溶液中加入 4% w/v NaCl,萃取 12 min(3 min×4)。UiO-66-F/PAN 对 PFASs 具有良好的吸附亲和力,这归因于其广泛的吸附位点和多种相互作用,包括疏水相互作用、氢键和 F-F 相互作用。该方法对 9 种 PFASs 的检测限为 0.008-0.076 µg/L,定量限为 0.010-0.163 µg/L,回收率为 70.84%-113.57%,相对标准偏差均小于 15%。该方法应用于湖水、自来水、饮料和虾肌肉样品中目标 PFASs 的分析,结果准确可靠,灵敏度高。