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An instrument for the simultaneous acquisition of size, shape, and spectral fluorescence data from single aerosol particles

机译:同时从单个气溶胶颗粒中获取尺寸,形状和光谱荧光数据的仪器

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We describe the construction of a bio-aerosol monitor designed to capture and record intrinsic fluorescence spectra from individual aerosol particles carried in a sample airflow and to simultaneously capture data relating to the spatial distribution of elastically scattered light from each particle. The spectral fluorescence data recorded by this PFAS (Particle Fluorescence and Shape) monitor contains information relating to the particle material content and specifically to possible biological fluorophores. The spatial scattering data from PFAS yields information relating to particle size and shape. The combination of these data can provide a means of aiding the discrimination of bio-aerosols from background or interferent aerosol particles which may have similar fluorescence properties but exhibit shapes and/or sizes not normally associated with biological particles. The radiation used both to excite particle fluorescence and generate the necessary spatially scattered light flux is provided by a novel compact UV fiber laser operating at 266nm wavelength. Particles drawn from the ambient environment traverse the laser beam in single file. Intrinsic particle fluorescence in the range 300-570nm is collected via an ellipsoidal concentrator into a concave grating spectrometer, the spectral data being recorded using a 16-anode linear array photomultiplier detector. Simultaneously, the spatial radiation pattern scattered by the particle over 5°-30° scattering angle and 360° of azimuth is recorded using a custom designed 31-pixel radial hybrid photodiode array. Data from up to ~5,000 particles per second may be acquired for analysis, usually performed by artificial neural network classification.
机译:我们描述了一种生物气溶胶监测器的构造,该监测器旨在捕获和记录样本气流中携带的单个气溶胶颗粒的固有荧光光谱,并同时捕获与每个颗粒的弹性散射光的空间分布有关的数据。该PFAS(粒子荧光和形状)监视器记录的光谱荧光数据包含与颗粒材料含量有关的信息,尤其是与可能的生物荧光团有关的信息。来自PFAS的空间散射数据可得出与粒径和形状有关的信息。这些数据的组合可以提供一种帮助将生物气溶胶与背景或干扰气溶胶颗粒区分开的手段,这些背景或干扰气溶胶颗粒可能具有相似的荧光特性,但呈现出通常与生物颗粒无关的形状和/或大小。用于激发颗粒荧光并产生必要的空间散射光通量的辐射是由工作在266nm波长的新型紧凑型紫外线光纤激光器提供的。从周围环境中吸取的粒子以单行横穿激光束。经由椭圆形集中器将300-570nm范围内的固有粒子荧光收集到凹面光栅光谱仪中,使用16阳极线性阵列光电倍增管检测器记录光谱数据。同时,使用定制设计的31像素径向混合光电二极管阵列记录了粒子在5°-30°散射角和360°方位角上散射的空间辐射方向图。通常可以通过人工神经网络分类从每秒约5,000个粒子中获取数据进行分析。

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