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微流控气液界面在从空气样品中提取目标苯丙胺及其前体中的应用。

Application of a Microfluidic Gas-to-Liquid Interface for Extraction of Target Amphetamines and Precursors from Air Samples.

作者信息

Collins Michael, Gel Murat, Lennard Chris, Spikmans Val, Forbes Shari, Anderson Alisha

机构信息

School of Science, Western Sydney University, Penrith 2751, Australia.

CSIRO Manufacturing, Clayton VIC 3168, Australia.

出版信息

Micromachines (Basel). 2020 Mar 17;11(3):315. doi: 10.3390/mi11030315.

Abstract

The investigation of clandestine laboratories poses serious hazards for first responders, emergency services, investigators and the surrounding public due to the risk of exposure to volatile organic compounds (VOCs) used in the manufacture of illicit substances. A novel gas sampling interface using open microfluidic channels that enables the extraction of VOCs out of the gas phase and into a liquid, where it can be analysed by conventional detection systems, has recently been developed. This paper investigates the efficiency and effectiveness of such a gas-to-liquid (GTL) extraction system for the extraction of amphetamine-type substances (ATS) and their precursors from the vapour phase. The GTL interface was evaluated across a range of different ATS and their precursors (methamphetamine, dimethylamphetamine, N-formylmethamphetamine, benzaldehyde, phenyl-2-propanone, ephedrine and pseudoephedrine) at concentrations ranging between 10 and 32 mg m. These gas samples were produced by a gas generation system directly in Tedlar bags and gas canisters for controlled volume sampling. When using gas sampled from Tedlar bags, four of the seven compounds were able to be extracted by the GTL interface, with the majority of the VOCs having extraction yields between 0.005% and 4.5%, in line with the results from an initial study. When samples were taken from gas canisters, only benzaldehyde was able to be detected, with extraction efficiencies between 0.2% and 0.4%. A custom-built mount for the GTL interface helped to automate the extraction process, with the aim of increasing extraction efficiency or reducing variability. However, the extraction efficiency did not improve when using this accessory, but the procedure did become more efficient. The results from the study indicated that the GTL interface could be employed for the collection of gaseous ATS and incorporated into mobile detection systems for onsite collection and analysis of volatile compounds related to ATS manufacture.

摘要

由于在非法物质制造过程中存在接触挥发性有机化合物(VOCs)的风险,对秘密实验室的调查给急救人员、应急服务人员、调查人员及周边公众带来了严重危害。最近开发了一种新型气体采样接口,该接口使用开放微流通道,能够将VOCs从气相中萃取到液相中,然后通过传统检测系统进行分析。本文研究了这种气液(GTL)萃取系统从气相中萃取苯丙胺类物质(ATS)及其前体的效率和效果。在浓度范围为10至32 mg/m的一系列不同ATS及其前体(甲基苯丙胺、二甲基苯丙胺、N-甲酰基甲基苯丙胺、苯甲醛、苯基-2-丙酮、麻黄碱和伪麻黄碱)中对GTL接口进行了评估。这些气体样品由气体发生系统直接在泰德拉袋和气体罐中产生,用于控制体积采样。当使用从泰德拉袋中采集的气体时,七种化合物中的四种能够被GTL接口萃取,大多数VOCs的萃取产率在0.005%至4.5%之间,这与初步研究结果一致。当从气体罐中采集样品时,仅检测到苯甲醛,萃取效率在0.2%至0.4%之间。为GTL接口定制的支架有助于实现萃取过程的自动化,目的是提高萃取效率或降低变异性。然而,使用该附件时萃取效率并未提高,但该程序确实变得更高效。研究结果表明,GTL接口可用于收集气态ATS,并纳入移动检测系统,用于现场收集和分析与ATS制造相关的挥发性化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2400/7142577/a6878c7cebe1/micromachines-11-00315-g001.jpg

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