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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >An UltraViolet Laser-Induced Fluorescence (UV-LIF) system to detect, identify and measure the concentration of biological agents in the environment: a preliminary study
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An UltraViolet Laser-Induced Fluorescence (UV-LIF) system to detect, identify and measure the concentration of biological agents in the environment: a preliminary study

机译:紫外线激光诱导的荧光(UV-LIF)系统检测,识别和测量环境中生物剂的浓度:初步研究

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摘要

Detection and classification of biological agents are not easy, especially at an early stage of contamination and when more than one species is aerodispersed in the environment. This research aims at demonstrating the capability of UltraViolet Laser-Induced Fluorescence (UV-LIF) technique to detect, classify and measure the concentration of biological agents in aqueous samples, exploiting ubiquitous endogenous fluorophores. The incident radiation is a third harmonic Nd:YAG laser emitting at 355 nm. A spectrometer collects the fluorescence spectra that are subsequently analysed in order to achieve information about the classification and the concentration of each agent in the sample. The benefits of the UV-LIF combined with data analysis techniques concern the speed of the analysis, the limited costs for the equipment, and the possibility analyse the airflow without the need for sampling. A LIF-based system may find its applicability in different contexts (e.g. for the monitoring of HVAC systems in healthcare settings or in crowded places, such as schools or airports) allowing a fast and targeted response in the event of contamination. In this work, the experimental setup and the capability of the classification and measurement techniques will be discussed. The first measurements are shown to validate the potentialities of the LIF.
机译:检测和对生物剂的分类并不容易,特别是在污染的早期阶段以及在环境中有多种物种时。本研究旨在证明紫外激光诱导的荧光(UV-LIF)技术检测,分类和测量水性样品中生物剂浓度的能力,利用普遍存在的内源性荧光团。入射辐射是第三次谐波Nd:YAG激光在355nm处发射。光谱仪收集随后分析的荧光光谱,以便达到样品中每种试剂的分类和浓度的信息。 UV-LIF结合数据分析技术的益处涉及分析的速度,设备的有限成本,以及在不需要采样的情况下分析气流的可能性。基于LIF的系统可以在不同的背景下发现其适用性(例如,用于监测医疗保健环境中的HVAC系统,或在拥挤的地方,例如学校或机场),在污染情况下允许快速和有针对性的反应。在这项工作中,将讨论实验设置和分类和测量技术的能力。第一次测量结果显示为验证LIF的潜力。

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  • 作者单位

    University of Rome Tor Vergata Dept. Industrial Engineering Via del Politecnico 1 00133-Rome Italy;

    University of Rome Tor Vergata Dept. Industrial Engineering Via del Politecnico 1 00133-Rome Italy;

    University of Rome Tor Vergata Dept. Industrial Engineering Via del Politecnico 1 00133-Rome Italy;

    International Master Courses in Protection against CBRNe Events University of Rome Tor Vergata Department of Industrial Engineering and School of Medicine and Surgery Via del Politecnico 1 00133-Rome Italy;

    University of Rome Tor Vergata Dept. Biomedicine and Prevention Viale Montpellier 1 00133-Rome Italy;

    University of Rome Tor Vergata Dept. Industrial Engineering Via del Politecnico 1 00133-Rome Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仪器、仪表;
  • 关键词

    Data processing methods; Analysis and statistical methods; Spectrometers;

    机译:数据处理方法;分析和统计方法;光谱仪;

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