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采用多壁碳纳米管作为新型涂层的固相微萃取-气相色谱-质谱法测定水样中超痕量香料的简单高效方法。

A simple and efficient Solid-Phase Microextraction - Gas Chromatography - Mass Spectrometry method for the determination of fragrance materials at ultra-trace levels in water samples using multi-walled carbon nanotubes as innovative coating.

机构信息

Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, Parco Area Delle Scienze 17/A, 43124, Parma, Italy; Center for Energy and Environment (CIDEA), University of Parma, Parco Area Delle Scienze 42, 43124, Parma, Italy.

Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, Parco Area Delle Scienze 17/A, 43124, Parma, Italy.

出版信息

Talanta. 2021 Mar 1;224:121891. doi: 10.1016/j.talanta.2020.121891. Epub 2020 Nov 13.

Abstract

The occurrence of emerging contaminants is becoming of increasing importance to assess the impact of anthropogenic activities onto the environment. The present study reports for the first time the development and validation of an efficient method for the simultaneous determination of fragrance materials in water samples based on the use of a novel multiwalled carbon nanotubes (MWCNTs)-based solid-phase microextraction coating. Helical MWCNTs were selected as adsorbent material due to their outstanding extraction performance. The multicriteria method of desirability functions allowed the optimization of the experimental conditions in terms of extraction time and extraction temperature. Validation proved the reliability of the method for the determination of the analytes at ultra-trace levels, obtaining detection limits in the 0.2-13 ng/L range, good precision, with relative standard deviations lower than 20% and recovery rates in the 80 ± 12%-111 ± 11%. Superior enrichment factors compared to commercial fibers were also calculated. Finally, applicability to real sample analysis was demonstrated.

摘要

新兴污染物的出现对于评估人为活动对环境的影响变得越来越重要。本研究首次报道了一种基于新型多壁碳纳米管(MWCNTs)固相微萃取涂层的同时测定水样中香料材料的高效方法的建立和验证。由于其出色的萃取性能,选择螺旋 MWCNTs 作为吸附材料。可取性函数的多标准方法允许根据萃取时间和萃取温度优化实验条件。验证证明了该方法在超痕量水平下测定分析物的可靠性,在 0.2-13ng/L 范围内获得检测限,具有良好的精密度,相对标准偏差低于 20%,回收率为 80±12%-111±11%。与商业纤维相比,还计算了较高的富集因子。最后,证明了该方法在实际样品分析中的适用性。

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