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A micro gas preconcentrator with improved performance for pollution monitoring and explosives detection

机译:微型气体预浓缩器,具有改进的性能,可用于污染监测和爆炸物检测

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This paper presents the optimization of a micro gas preconcentrator based on a micro-channel in porous and non-porous silicon filled with an adequate adsorbent. This micro gas preconcentrator is both applicable in the fields of atmospheric pollution monitoring (Volatil organic compounds—VOCs) and explosives detection (nitroaromatic compounds). Different designs of micro-devices and adsorbent materials have been investigated since these two parameters are of importance in the performances of the micro-device. The optimization of the device and its operation were driven by its future application in outdoor environments. Parameters such as the preconcentration factor, cycle time and the influence of the humidity were considered along the optimization process. As a result of this study, a preconcentrator with a total cycle time of 10 min and the use of single wall carbon nanotubes (SWCNTs) as adsorbent exhibits a good preconcentration factor for VOCs with a limited influence of the humidity. The benefits of using porous silicon to modify the gas desorption kinetics are also investigated.
机译:本文介绍了一种基于微通道的微型气体预浓缩器的优化方法,该微通道是在填充有足够吸附剂的多孔和无孔硅中的微通道。这种微型气体预浓缩器可应用于大气污染监测(Volatil有机化合物-VOC)和爆炸物检测(硝基芳族化合物)领域。由于这两个参数在微型设备的性能中很重要,因此已经研究了微型设备和吸附材料的不同设计。设备的优化及其运行受到未来在室外环境中的应用的推动。在优化过程中考虑了诸如预浓缩因子,循环时间和湿度影响等参数。这项研究的结果是,总循环时间为10分钟的预浓缩器以及使用单壁碳纳米管(SWCNT)作为吸附剂对VOC表现出良好的预浓缩因子,而对湿度的影响有限。还研究了使用多孔硅改变气体解吸动力学的好处。

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