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采用 LC-HRMS 和 GC-HRMS 进行目标、可疑物筛选和非目标分析,对室内灰尘进行全面的化学特征描述。

Comprehensive chemical characterization of indoor dust by target, suspect screening and nontarget analysis using LC-HRMS and GC-HRMS.

机构信息

Man-Technology-Environment (MTM) Research Centre, Örebro University, SE-701 82 Örebro, Sweden.

Man-Technology-Environment (MTM) Research Centre, Örebro University, SE-701 82 Örebro, Sweden.

出版信息

Environ Pollut. 2021 May 1;276:116701. doi: 10.1016/j.envpol.2021.116701. Epub 2021 Feb 8.

Abstract

Since humans spend more than 90% of their time in indoor environments, indoor exposure can be an important non-dietary pathway to hazardous organic contaminants. It is thus important to characterize the chemical composition of indoor dust to assess the total contaminant exposure and estimate human health risks. The aim of this investigation was to perform a comprehensive chemical characterization of indoor dust. First, the robustness of an adopted extraction method using ultrasonication was evaluated for 85 target compounds. Thereafter, a workflow combining target analysis, suspect screening analysis (SSA) and nontarget analysis (NTA) was applied to dust samples from different indoor environments. Chemical analysis was performed using both gas chromatography and liquid chromatography coupled with high resolution mass spectrometry. Although suppressing matrix effects were prominent, target analysis enabled the quantification of organophosphate/brominated flame retardants (OPFRs/BFRs), liquid crystal monomers (LCMs), toluene diisocyanate, bisphenols, pesticides and tributyl citrate. The SSA confirmed the presence of OPFRs but also enabled the detection of polyethylene glycols (PEGs) and phthalates/parabens. The combination of hierarchical cluster analysis and scaled mass defect plots in the NTA workflow confirmed the presence of the above mentioned compounds, as well as detect other contaminants such as tetrabromobisphenol A, triclocarban, diclofenac and 3,5,6-trichloro-2-pyridinol, which were further confirmed using pure standards.

摘要

由于人类超过 90%的时间都在室内环境中度过,因此室内暴露可能是接触有害有机污染物的一个重要非饮食途径。因此,描述室内灰尘的化学成分以评估总污染物暴露和估计人类健康风险非常重要。本研究的目的是对室内灰尘进行全面的化学特性描述。首先,评估了超声提取方法对 85 种目标化合物的稳健性。此后,将结合目标分析、可疑筛选分析(SSA)和非目标分析(NTA)的工作流程应用于来自不同室内环境的灰尘样本。化学分析同时使用气相色谱和液相色谱与高分辨率质谱联用进行。虽然抑制基质效应非常重要,但目标分析能够定量分析有机磷/溴系阻燃剂(OPFRs/BFRs)、液晶单体(LCMs)、甲苯二异氰酸酯、双酚、农药和柠檬酸三丁酯。SSA 证实了 OPFRs 的存在,同时还能够检测到聚乙二醇(PEGs)和邻苯二甲酸酯/对羟基苯甲酸酯。在 NTA 工作流程中,层次聚类分析和比例质量缺陷图的组合证实了上述化合物的存在,同时还检测到其他污染物,如四溴双酚 A、三氯卡班、双氯芬酸和 3,5,6-三氯-2-吡啶醇,这些污染物进一步使用纯标准品进行了确认。

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