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Separating hazardous aerosols from ambient aerosols: role of fluorescence-spectral determination, aerodynamic deflector and pulse aerodynamic localizer (PAL)

机译:从环境气溶胶中分离有害气溶胶:荧光光谱测定,空气动力学偏转器和脉冲空气动力学定位器(PAL)的作用

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摘要

An aerosol deflection technique based on the single-shot UV-laser-induced fluorescence spectrum from a flowing particle is presented as a possible front-end bio-aerosol/hazardous-aerosol sensor/identifier. Cued by the fluorescence spectra, individual flowing bio-aerosol particles (1-10 μm in diameter) have been successfully deflected from a stream of ambient aerosols. The electronics needed to compare the fluorescence spectrum of a particular particle with that of a pre-determined fluorescence spectrum are presented in some detail. The deflected particles, with and without going through a funnel for pulse aerodynamic localization (PAL), were collected onto a substrate for further analyses. To demonstrate how hazardous materials can be deflected, TbCl_3·6H_2O (a stimulant material for some chemical forms of Uranium Oxide) aerosol particles (2 μm in diameter) mixed with Arizona road dust was separated and deflected with our system.
机译:作为一种可能的前端生物气溶胶/有害气溶胶传感器/识别器,提出了一种基于单次紫外激光激发的流动粒子荧光光谱的气溶胶偏转技术。受荧光光谱的影响,单个流动的生物气溶胶颗粒(直径为1-10μm)已成功地从周围的气溶胶流中偏转。比较详细地介绍了将特定粒子的荧光光谱与预定的荧光光谱进行比较所需的电子设备。将经过和不经过漏斗进行脉冲空气动力学定位(PAL)的偏转粒子收集到基板上以进行进一步分析。为了演示有害物质的偏转方法,我们分离了与亚利桑那州道路扬尘混合的TbCl_3·6H_2O(一种用于某些化学形式的氧化铀的刺激材料)直径为2μm的气溶胶颗粒,并对其进行了偏转。

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