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吸附膜涂层被动采样器用于爆炸物蒸气检测 第 A 部分:材料优化及与分析技术的集成。

Sorbent Film-Coated Passive Samplers for Explosives Vapour Detection Part A: Materials Optimisation and Integration with Analytical Technologies.

机构信息

King's Forensics, School of Population Health & Environmental Sciences, Faculty of Life Sciences & Medicine, King's College London, London, SE1 9NH, United Kingdom.

Threat Mitigation Technologies, Metropolitan Police Service, 113 Grove Park, London, SE5 8LE, United Kingdom.

出版信息

Sci Rep. 2018 Apr 11;8(1):5815. doi: 10.1038/s41598-018-24244-y.

Abstract

A new thin-film passive sampler is presented as a low resource dependent and discrete continuous monitoring solution for explosives-related vapours. Using 15 mid-high vapour pressure explosives-related compounds as probes, combinations of four thermally stable substrates and six film-based sorbents were evaluated. Meta-aramid and phenylene oxide-based materials showed the best recoveries from small voids (~70%). Analysis was performed using liquid chromatography-high resolution accurate mass spectrometry which also enabled tentative identification of new targets from the acquired data. Preliminary uptake kinetics experiments revealed plateau concentrations on the device were reached between 3-5 days. Compounds used in improvised explosive devices, such as triacetone triperoxide, were detected within 1 hour and were stably retained by the sampler for up to 7 days. Sampler performance was consistent for 22 months after manufacture. Lastly, its direct integration with currently in-service explosives screening equipment including ion mobility spectrometry and thermal desorption mass spectrometry is presented. Following exposure to several open environments and targeted interferences, sampler performance was subsequently assessed and potential interferences identified. High-security building and area monitoring for concealed explosives using such cost-effective and discrete passive samplers can add extra assurance to search routines while minimising any additional burden on personnel or everyday site operation.

摘要

一种新型的薄膜型无源采样器作为一种低资源依赖性和离散连续监测解决方案,用于监测与爆炸物相关的蒸气。使用 15 种中高蒸气压与爆炸物相关的化合物作为探针,评估了 4 种热稳定基底和 6 种基于薄膜的吸附剂的组合。间位芳纶和氧化苯撑材料显示出从小空隙中(~70%)最佳的回收率。使用液相色谱-高分辨率精确质量质谱进行分析,该方法还能够根据所获得的数据对新目标进行初步鉴定。初步的吸收动力学实验表明,器件上的平台浓度在 3-5 天之间达到。在 1 小时内检测到简易爆炸装置中使用的化合物,如三丙酮三过氧化物,并被采样器稳定保留长达 7 天。在制造后 22 个月内,采样器的性能保持一致。最后,介绍了其与目前在役的爆炸物筛选设备(包括离子迁移谱和热解吸质谱)的直接集成。在暴露于几种开放环境和目标干扰物后,对采样器的性能进行了评估,并确定了潜在的干扰物。使用这种具有成本效益和离散性的无源采样器对高安全性建筑和区域进行隐蔽爆炸物监测,可以在减少人员或日常现场操作负担的同时,为搜索程序提供额外的保障。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5357/5895691/25c281c61da1/41598_2018_24244_Fig1_HTML.jpg

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