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Size-resolved fluorescent biological aerosol particle concentrations and occupant emissions in a university classroom

机译:在大学教室中按尺寸分辨的荧光生物气溶胶颗粒浓度和乘员排放

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摘要

This study is among the first to apply laser-induced fluorescence to characterize bioaerosols at high time and size resolution in an occupied, common-use indoor environment. Using an ultraviolet aerodynamic particle sizer, we characterized total and fluorescent biological aerosol particle (FBAP) levels (1-15 μm diameter) in a classroom, sampling with 5-min resolution continuously during eighteen occupied and eight unoccupied days distributed throughout a one-year period. A material-balance model was applied to quantify per-person FBAP emission rates as a function of particle size. Day-today and seasonal changes in FBAP number concentration (N_F) values in the classroom were small compared to the variability within a day that was attributable to variable levels of occupancy, occupant activities, and the operational state of the ventilation system. Occupancy conditions characteristic of lecture classes were associated with mean N_F source strengths of 2 × 10~6 particles/h/person, and 9 × 10~4 particles per metabolic g CO_2. During transitions between lectures, occupant activity was more vigorous, and estimated mean, per-person N_F emissions were 0.8 × 10~6 particles per transition. The observed classroom peak in FBAP size at 3-4 μm is similar to the peak in fluorescent and biological aerosols reported from several studies outdoors.
机译:这项研究是第一个使用激光诱导的荧光技术在占用的常用室内环境中以高时间和尺寸分辨率表征生物气溶胶的研究。使用紫外线空气动力学粒度仪,我们在教室中表征了总和荧光生物气溶胶颗粒(FBAP)的水平(直径为1-15μm),在一年的18个占用和8个无人居住的日子中以5分钟的分辨率连续采样期。应用了物料平衡模型来量化人均FBAP排放速率与粒径的关系。与一天之内的变化相比,教室中FBAP数浓度(N_F)值的每日和季节性变化均很小,这可归因于不同的居住,乘员活动和通风系统的运行状态。演讲课的居住条件与平均N_F源强度2×10〜6个颗粒/ h /人和9×10〜4个颗粒/代谢g CO_2相关。在两次演讲之间的过渡期间,乘员活动更加活跃,并且每个过渡的人均N_F排放量估计为0.8×10〜6个粒子。在3-4μm处观察到的FBAP大小的教室峰与一些户外研究报告的荧光和生物气溶胶峰相似。

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