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Electrospun Nylon6 Nanofibrous Membrane as SPE Adsorbent for the Enrichment and Determination of Three Estrogens in Environmental Water Samples

机译:电纺尼龙6纳米纤维膜作为SPE吸附剂,用于富集和测定环境水样品中的三种雌激素

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In this paper, electrospun Nylon6 nanofibrous membrane was firstly used as adsorbent for solid membrane extraction (SME). The membrane was arranged as a disk in a home-made device, three estrogens-estradiol (E2), ethinylestradiol (EE2) and estrone (E1) in environmental water were extracted and then determined by liquid chromatography–ultraviolet detector (LC–UV). The important parameters affecting extraction efficiency were completely studied and optimized. The experimental results showed that only 1.5 mg Nylon6 nanofibrous membrane could make the maximum sample loading volume up to 50 mL and the target analytes were adsorbed effectively. Under the optimized conditions, the limits of detection (LOD) for E2, EE2, E1 were up to 0.05, 0.08, 0.17 ng mL−1 respectively and the repeatabilities (RSD%) of intra-membrane and inter-membrane were below 6.0% about spiked samples. The proposed method was subsequently applied to studying water samples from river, rain, pond and tap. Satisfactory spiked recoveries in the range of 85.3–95.9% at 0.25 ng mL−1 spiked level for the three estrogens were obtained. A comparison with commercial nylon microporous membrane and octadecylsilica (ODS) cartridges was also carried out. All the results showed that electrospun Nylon6 nanofibrous membrane, as a new adsorbent material has great potential for the enrichment of steroid estrogens in the water samples with satisfactory recovery and repeatability.
机译:本文首先将电纺Nylon6纳米纤维膜用作固体膜萃取(SME)的吸附剂。将该膜布置成盘状放置在自制设备中,提取环境水中的三种雌激素-雌二醇(E2),乙炔雌二醇(EE2)和雌酮(E1),然后通过液相色谱-紫外检测器(LC-UV)测定。对影响萃取效率的重要参数进行了全面研究和优化。实验结果表明,只有1.5 mg的Nylon6纳米纤维膜可以使最大样品上样量达到50 mL,并且可以有效地吸附目标分析物。在最佳条件下,E2,EE2,E1的检出限(LOD)分别高达0.05、0.08、0.17 ng mL -1 ,膜内和膜的重复性(RSD%)掺入样品的膜间含量低于6.0%。所提出的方法随后被应用于研究河流,雨水,池塘和水龙头的水样。在三种雌激素的0.25 ng mL -1 加标水平下,加标回收率均在85.3–95.9%的范围内。还与商用尼龙微孔膜和十八烷基硅胶(ODS)滤芯进行了比较。所有结果表明,静电纺丝Nylon6纳米纤维膜作为一种新型吸附材料,具有丰富的水样中甾体雌激素富集的潜力,具有令人满意的回收率和可重复性。

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