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碳纳米管辅助固相微萃取法用于提取火灾残骸样品中的汽油。

Carbon nanotubes-assisted solid-phase microextraction for the extraction of gasoline in fire debris samples.

机构信息

Department of Forensic Science, College of Criminal Justice, Sam Houston State University, 1003 Blwers Blvd., Huntsville, TX 77340, United States.

Department of Forensic Science, College of Criminal Justice, Sam Houston State University, 1003 Blwers Blvd., Huntsville, TX 77340, United States.

出版信息

J Chromatogr A. 2023 Jul 19;1701:464063. doi: 10.1016/j.chroma.2023.464063. Epub 2023 May 9.

DOI:10.1016/j.chroma.2023.464063
PMID:37201431
Abstract

Gasoline is one of the most encountered ignitable liquids (IL) in fire debris analysis. The extraction of gasoline from fire debris samples presents challenges due to the complicated nature of multicomponent mixtures. This research work proposed a novel carbon nanotube-assisted solid phase microextraction (CNT-SPME) fiber coupled with gas chromatography and mass spectrometry (GC/MS) to determine gasoline residues for fire debris analysis. The CNT-SPME fiber was prepared by a sequential coating of polydopamine, epoxy, and CNTs on a stainless-steel wire. The extraction capabilities of the CNT-SPME fiber for gasoline and its major aromatic groups (xylenes, alkylbenzenes, indanes, and naphthalenes) from neat and spiked samples were promising, with linear dynamic ranges of 0.4-12.5 and 3.1-12.5 µg 20-mL headspace vial, respectively. The average relative standard deviations and accuracies for all concentration ranges in this work were lower than 15%. The relative recovery of the CNT-SPME fiber for all aromatic groups ranged from 28 ± 3% to 59 ± 2%. Additionally, the CNT-SPME fiber showed a higher selectivity for the naphthalenes group in gasoline, as indicated by the experimental outcome using a pulsed thermal desorption process of the extracts. We envision the nanomaterial-based SPME offers promising opportunities for extracting and detecting other ILs to support fire investigation.

摘要

汽油是火灾残骸分析中最常见的可燃液体(IL)之一。由于多组分混合物的复杂性,从火灾残骸样品中提取汽油存在挑战。本研究工作提出了一种新型的碳纳米管辅助固相微萃取(CNT-SPME)纤维,结合气相色谱和质谱(GC/MS),用于确定火灾残骸分析中的汽油残留物。CNT-SPME 纤维通过在不锈钢丝上顺序涂覆多巴胺、环氧树脂和 CNT 来制备。CNT-SPME 纤维对汽油及其主要芳烃(二甲苯、烷基苯、茚满和萘)的萃取能力令人满意,在纯样品和加标样品中的线性动态范围分别为 0.4-12.5 和 3.1-12.5 μg/20-mL 顶空瓶。本工作中所有浓度范围内的平均相对标准偏差和准确度均低于 15%。对于所有芳烃组,CNT-SPME 纤维的相对回收率在 28±3%至 59±2%之间。此外,通过使用提取物的脉冲热解吸过程,CNT-SPME 纤维对汽油中的萘烷组表现出更高的选择性。我们设想基于纳米材料的 SPME 为提取和检测其他 IL 提供了有前途的机会,以支持火灾调查。

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