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首页> 外文期刊>The Science of the Total Environment >Bioaerosol detection over Athens, Greece using the laser induced fluorescence technique
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Bioaerosol detection over Athens, Greece using the laser induced fluorescence technique

机译:使用激光诱导荧光技术在希腊雅典进行生物气溶胶检测

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The challenge in today's bioaerosol monitoring is to retrieve real-time information on the qualitative and quantitative composition of the ambient air in bioparticles implicated to human health. A pilot study was conducted during March-May 2018 in Athens, Greece in order to detect bioparticles within the Planetary Boundary Layer (PBL) by implementing the LIF LiDAR (Laser-Induced Fluorescence Light Detection and Ranging) technique at an excitation wavelength of 266 nm in order to determine the major components' contribution on the total fluorescence LiDAR signals aloft (30-100 m above our site). The laboratory characterization of the prevalent pollen grains and fungal spores fluorescence signatures enabled through deconvolution the breaking down of the retrieved LIF LiDAR signals and unravelled each bioparticle's contribution. The bioaerosol occurrence and concentration, as determined by the concurrent sampling with a volumetric particle sampler, verified that the detected fluorescence is related to the fungal and pollen aerosol concentration. The results of this study are very promising for the implementation of remote sensing technology in routine detection and quantification of airborne bioparticles in real-time which is important for allergy sufferers and physicians. (C) 2019 Elsevier B.V. All rights reserved.
机译:如今,生物气溶胶监测面临的挑战是获取有关与人类健康有关的生物颗粒中环境空气的定性和定量组成的实时信息。 2018年3月至5月在希腊雅典进行了一项试点研究,目的是通过在266 nm的激发波长下实施LIF LiDAR(激光诱导荧光检测和测距)技术来检测行星边界层(PBL)中的生物颗粒为了确定主要成分对总荧光LiDAR信号的高空贡献(我们站点上方30-100 m)。通过反卷积分解得到的LIF LiDAR信号并解开每个生物颗粒的贡献,可以对流行的花粉粒和真菌孢子的荧光特征进行实验室表征。通过使用体积颗粒采样器同时采样确定的生物气溶胶的出现和浓度,证实了检测到的荧光与真菌和花粉气溶胶的浓度有关。这项研究的结果对于将遥感技术实时应用于空气中生物颗粒的常规检测和定量非常有希望,这对过敏症患者和医生而言非常重要。 (C)2019 Elsevier B.V.保留所有权利。

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