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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Electrospun nanofiber cloud for ultrafast solid phase micro-extraction of trace organics in water samples
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Electrospun nanofiber cloud for ultrafast solid phase micro-extraction of trace organics in water samples

机译:电纺纳米纤维云用于超快固体相微量提取水样中痕量有机物

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In order to achieve ultrafast solid phase micro-extraction (SPME) of trace organics in water samples, the robust polyimide/polyvinylpyrrolidone (PI/PVP) composite nanofiber was prepared by electrospinning. Unlike the nonwoven electrospun membrane bulk widely used for SPME, the hydrophilic PI/PVP nanofibers here can be easily dispersed into and recovered from water sample like a cloud, so nanofiber cloud SPME (NC-SPME) was proposed in this work. The extraction performance of the NC-SPME method was evaluated using phthalates and organochlorine pesticides as model analytes. The extracted analytes were then desorbed by acetone and eventually quantified by gas chromatography-mass spectrometry (GC-MS). The extraction equilibrium was reached in 30s for most of the phthalates and 2 min for organochlorine pesticides. While for bar-SPME, the equilibrium time was much longer than 2 h. At the extraction time of 5 min, the recoveries of phthalates and organochlorine pesticides were more than 34% and 52% by the NC-SPME method while they were less than 15% and 10% respectively by the bar-SPME method. In a word, the NC-SPME method presented significant advantages such as fast equilibrium and high recoveries compared to bar-SPME. For the phthalates analysis of real samples by NC-SPME, 5 mL of water sample was used for a 5-min extraction, linear range covered 1-2 orders of magnitude with correlation coefficients (r) higher than 0.99 and limits of detection (LODs) at ng/L levels for all of the tested water samples. This method will be useful for the rapid micro-extraction of other kinds of organics in water samples even biological fluid samples due to the stable composition, ultra-hydrophilic surface of PI/PVP nanofiber, and the biocompatible nature of PVP. (C) 2018 Elsevier B.V. All rights reserved.
机译:为了在水样中实现痕量有机物的超快固相微萃取(SPME),通过静电纺丝制备鲁棒聚酰亚胺/聚乙烯吡咯烷酮(PI / PVP)复合纳米纤维。与广泛用于SPME广泛用于SPME的非织造Electrom膜散装不同,这里的亲水性PI / PVP纳米纤维可以容易地分散在水样中并从水样中回收,因此在这项工作中提出了纳米纤维云SPME(NC-SPME)。使用邻苯二甲酸盐和有机氯农药作为模型分析评估NC-SPME方法的提取性能。然后通过丙酮解吸所提取的分析物,最终通过气相色谱 - 质谱(GC-MS)定量。对于大多数邻苯二甲酸盐和2分钟,达到萃取平衡以达到有机氯农药。对于Bar-SPME,均衡时间远高于2小时。在5分钟的提取时间下,通过NC-SPME方法的邻苯二甲酸酯和有机氯农药的回收率分别超过34%和52%,同时通过Bar-SPME方法分别小于15%和10%。总之,与酒吧-PME相比,NC-SPME方法呈现出显着的优点,例如快速平衡和高回收。对于通过NC-SPME的真实样品的邻苯二甲酸盐分析,5ml水样用于5分钟的提取,线性范围覆盖1-2级,具有高于0.99的相关系数(R)和检测限率(LOD )对于所有测试水样的Ng / L水平。该方法对于由于稳定的组成,PI / PVP纳米纤维的稳定组合物,超亲水表面和PVP的生物相容性性质而在水样中的其他种类物体的快速微萃取其他种类的物体甚至是生物流体样品的快速微萃取。 (c)2018年elestvier b.v.保留所有权利。

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