Robinson Elizabeth L, Sisco Edward, Staymates Matthew E, Lawrence Jeffrey A
National Institute of Standards and Technology, Materials Measurement Science Division, Gaithersburg, MD, USA.
Anal Methods. 2018 Jan 14;10(2):204-213. doi: 10.1039/C7AY02694C. Epub 2017 Dec 4.
Trace explosives detection, a crucial component of many security screening environments, commonly employs wipe-sampling. Since collection of an explosive residue is necessary for detection, it is important to have a thorough understanding of the parameters that affect the efficiency of collection. Current wipe-sampling evaluation techniques for explosive particles have their limits: manual sampling (with fingers or a wand) is limited in its ability to isolate a single parameter and the TL-slip/peel tester is limited to a linear sample path. A new wipe-sampling instrument, utilizing a commercial off-the-shelf (COTS) 3D printer repurposed for its XYZ stage, was developed to address these limitations. This system allowed, for the first time, automated two-dimensional wipe-sampling patterns to be studied while keeping the force and speed of collection constant for the length of the sampling path. This new instrument is not only capable of investigating the same parameters as current technology (wipe materials, test surfaces, forces of collection, and linear sample patterns), it has added capabilities to investigate additional parameters such as directional wipe patterns (i.e. "L" and "U" shapes, square, and serpentine) and allowing for multiple lines to be sampled during a single collection without the need for adjustments by the user. In this work, parametric studies were completed using 1,3,5-trinitroperhydro-1,3,5-triazine (RDX) and the COTS 3D printer for wipe-sampling to establish collection efficiencies for numerous scenarios. Trace explosives detection in field screening environments could be greatly improved with the ability to comprehensively investigate how a wide range of parameters individually affect collection by wipe-sampling. A screener who knows how to properly interrogate any given surface will be much more efficient at detecting trace explosives.
痕量爆炸物检测是许多安全筛查环境的关键组成部分,通常采用擦拭采样。由于检测需要收集爆炸物残留物,因此全面了解影响收集效率的参数非常重要。目前用于爆炸物颗粒的擦拭采样评估技术存在局限性:手动采样(用手指或采样棒)在分离单个参数方面能力有限,而TL滑/剥测试仪仅限于线性采样路径。为了解决这些局限性,开发了一种新的擦拭采样仪器,它利用一台现成的(COTS)3D打印机,将其重新用于XYZ平台。该系统首次实现了对二维自动擦拭采样模式的研究,同时在采样路径长度内保持收集力和速度恒定。这种新仪器不仅能够研究与当前技术相同的参数(擦拭材料、测试表面、收集力和线性采样模式),还增加了研究其他参数的能力,如定向擦拭模式(即“L”形和“U”形、方形和蛇形),并允许在一次收集过程中对多条线进行采样,而无需用户进行调整。在这项工作中,使用1,3,5-三硝基全氢-1,3,5-三嗪(RDX)和用于擦拭采样的现成3D打印机完成了参数研究,以确定多种情况下的收集效率。通过全面研究各种参数如何分别影响擦拭采样的收集效果,现场筛查环境中的痕量爆炸物检测可以得到极大改善。一个知道如何正确检测任何给定表面的筛查人员在检测痕量爆炸物时会更加高效。