University of Liverpool, Department of Electrical Engineering and Electronics, Liverpool, L69 3GJ, United Kingdom.
J Breath Res. 2018 Jan 17;12(2):027106. doi: 10.1088/1752-7163/aa95dd.
On-site chemical sensing of compounds associated with security and terrorist attacks is of worldwide interest. Other related bio-monitoring topics include identification of individuals posing a threat from illicit drugs, explosive manufacturing, as well as searching for victims of human trafficking and collapsed buildings. The current status of field analytical technologies is directed towards the detection and identification of vapours and volatile organic compounds (VOCs). Some VOCs are associated with exhaled breath, where research is moving from individual breath testing (volatilome) to cell breath (microbiome) and most recently to crowd breath metabolites (exposome). In this paper, an overview of field-deployable chemical screening technologies (both stand-alone and those with portable characteristics) is given with application to early detection and monitoring of human exposome in security operations. On-site systems employed in exhaled breath analysis, i.e. mass spectrometry (MS), optical spectroscopy and chemical sensors are reviewed. Categories of VOCs of interest include (a) VOCs in human breath associated with exposure to threat compounds, and (b) VOCs characteristic of, and associated with, human body odour (e.g. breath, sweat). The latter are relevant to human trafficking scenarios. New technological approaches in miniaturised detection and screening systems are also presented (e.g. non-scanning digital light processing linear ion trap MS (DLP-LIT-MS), nanoparticles, mid-infrared photo-acoustic spectroscopy and hyphenated technologies). Finally, the outlook for rapid and precise, real-time field detection of threat traces in exhaled breath is revealed and discussed.
现场检测与安全和恐怖袭击相关的化合物的化学传感器具有全球性的意义。其他相关的生物监测主题包括识别来自非法药物、爆炸物制造以及寻找人口贩卖和建筑物倒塌受害者的威胁个体。目前的现场分析技术的现状是针对蒸气和挥发性有机化合物(VOC)的检测和识别。一些 VOC 与呼出的呼吸有关,研究正在从个体呼吸测试(挥发组学)转移到细胞呼吸(微生物组学),最近又转移到人群呼吸代谢物(暴露组学)。本文概述了现场可部署的化学筛选技术(独立式和便携式),并应用于安全操作中的人体暴露组学的早期检测和监测。本文综述了呼气分析中使用的现场系统,即质谱(MS)、光谱和化学传感器。感兴趣的 VOC 类别包括:(a) 与人接触威胁化合物有关的人呼吸中的 VOC;(b) 与人身体气味有关的 VOC(例如呼吸、汗水)。后者与人口贩卖情况有关。还介绍了微型化检测和筛选系统中的新技术方法(例如非扫描数字光处理线性离子阱 MS(DLP-LIT-MS)、纳米粒子、中红外光声光谱和联用技术)。最后,揭示并讨论了快速、精确、实时现场检测呼气中威胁痕迹的前景。