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优化的同时加压流体萃取和细胞内净化,以及多环芳烃(PAHs)、硝基-、羰基-、羟基-PAHs 在固体颗粒中的分析。

Optimized simultaneous pressurized fluid extraction and in-cell clean-up, and analysis of polycyclic aromatic hydrocarbons (PAHs), and nitro-, carbonyl-, hydroxy -PAHs in solid particles.

机构信息

Science and Engineering Faculty, Queensland University of Technology (QUT), GPO Box 2434, Brisbane, 4001, Queensland, Australia.

Central Analytical Research Facility (CARF), Institute for Future Environments, Queensland University of Technology (QUT), GPO Box 2434, Brisbane, 4001, Queensland, Australia.

出版信息

Anal Chim Acta. 2020 Aug 15;1125:19-28. doi: 10.1016/j.aca.2020.05.021. Epub 2020 May 23.

Abstract

The development, modification and optimization of analytical methods capable of simultaneous extraction and in-cell clean-up of extracts for subsequent determination of parent PAHs and their associated transformed nitro-PAHs (NPAH), carbonyl-PAHs (CPAH) and hydroxy-PAHs (HO-PAH) products (TPPs) is essential for reducing the time and cost of analysis. The aim of this study was to modify and optimize the pressurized fluid extraction (PFE) technique capable of simultaneous extraction and in-cell clean-up of PAHs and TPPs in urban dust standard reference material and road dust for GC-MS analyses. In this study, multivariate data analysis such as factor analysis (FA), and preference ranking organisation method for enrichment evaluation (PROMETHEE) and geometrical analysis for interactive aid (GAIA) were used to assess the performance of the methods. As the key outcome of the study, an optimized selective reaction monitoring (SRM) Triple Quadrupole (TQ) electron ionization (EI)-GC/MS for measuring PAHs and TPPs without derivatization of polar HO-PAHs was developed. The limits of detection (LOD) for parent PAHs, CPAHs, NPAHs and HO-PAHs using Shimadzu TQ were 1.0-5.0 pg, 1.0-5.0 pg, 1.0-50.0 pg, and 1.0-25.0 pg, respectively. The PROMETHEE-GAIA analysis of the results showed that a combination of 3% deactivated silica gel and activated alumina (2:1) as in-cell clean-up material, and sequential PFE extraction (200 °C ASE temperature, 9 min preheat time and 3 times extraction cycle) using 100% hexane followed by hexane/DCM (1:1) is the best condition for analytes extraction from road dust. An optimized, fast and reliable GC/MS method operated solely in electron ionization (EI) mode was developed for measuring all analytes. The outcomes of this study will contribute significantly to future research on PAHs and TPPs, thereby promoting a safe and sustainable environment.

摘要

开发、改进和优化能够同时提取和细胞内净化提取物,以便随后测定母体多环芳烃及其相关转化的硝基多环芳烃(NPAH)、羰基多环芳烃(CPAH)和羟基多环芳烃(HO-PAH)产物(TPPs)的分析方法对于降低分析时间和成本至关重要。本研究的目的是改进和优化能够同时提取和细胞内净化城市灰尘标准参考物质和道路灰尘中多环芳烃和 TPP 的加压流体萃取(PFE)技术,以便进行 GC-MS 分析。在本研究中,使用多元数据分析方法,如因子分析(FA)、偏好排序组织法富集评估(PROMETHEE)和几何分析互动辅助(GAIA),评估方法的性能。作为研究的关键结果,开发了一种优化的选择性反应监测(SRM)三重四极杆(TQ)电子电离(EI)-GC/MS 方法,用于测量多环芳烃和 TPP,而无需对极性 HO-PAHs 进行衍生化。使用岛津 TQ 测定母体多环芳烃、CPAH、NPAH 和 HO-PAH 的检出限(LOD)分别为 1.0-5.0 pg、1.0-5.0 pg、1.0-50.0 pg 和 1.0-25.0 pg。结果的 PROMETHEE-GAIA 分析表明,3%脱活硅胶和活性氧化铝(2:1)作为细胞内净化材料的组合,以及使用 100%正己烷随后正己烷/DCM(1:1)的顺序 PFE 提取(200°C ASE 温度、9 分钟预热时间和 3 次提取循环)是从道路灰尘中提取分析物的最佳条件。开发了一种优化、快速和可靠的 GC/MS 方法,仅在电子电离(EI)模式下运行,用于测量所有分析物。本研究的结果将对未来多环芳烃和 TPP 的研究做出重大贡献,从而促进安全和可持续的环境。

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