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Chamber bioaerosol study: human emissions of size-resolved fluorescent biological aerosol particles

机译:箱式生物气溶胶研究:人类排放的大小分辨的荧光生物气溶胶颗粒

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摘要

Humans are a prominent source of airborne biological particles in occupied indoor spaces, but few studies have quantified human bioaerosol emissions. The chamber investigation reported here employs a fluorescencebased technique to evaluate bioaerosols with high temporal and particle size resolution. In a 75-m3 chamber, occupant emission rates of coarse (2.5–10 lm) fluorescent biological aerosol particles (FBAPs) under seated, simulated officework conditions averaged 0.9 _ 0.3 million particles per person-h. Walking was associated with a 5–69 increase in the emission rate. During both walking and sitting, 60–70% or more of emissions originated from the floor. The increase in emissions during walking (vs. while sitting) was mainly attributable to release of particles from the floor; the associated increased vigor of upper body movements also contributed. Clothing, or its frictional interaction with human skin, was demonstrated to be a source of coarse particles, and especially of the highly fluorescent fraction. Emission rates of FBAPs previously reported for lecture classes were well bounded by the experimental results obtained in this chamber study. In both settings, the size distribution of occupant FBAP emissions had a dominant mode in the 3–5 lm diameter range.
机译:人体是居住室内空间中空气传播的生物颗粒的重要来源,但是很少有研究对人体生物气溶胶的排放进行量化。此处报道的试验室研究采用基于荧光的技术来评估具有高时间和粒径分辨率的生物气溶胶。在一个75立方米的室内,在坐着的模拟办公条件下,粗大(2.5-10 lm)荧光生物气溶胶颗粒(FBAP)的人均排放速率为每人小时0.9 _ 30万个颗粒。步行与排放速率增加5-69有关。在步行和坐姿期间,60-70%或更多的排放物来自地板。步行时(相对于坐着时)排放物的增加主要归因于颗粒从地板上的释放。随之而来的上身运动活力的增强也起到了作用。衣服或其与人皮肤的摩擦相互作用被证明是粗糙颗粒的来源,尤其是高荧光部分。先前报告的有关课堂授课的FBAP的排放率受本室内研究获得的实验结果的很好限制。在这两种情况下,乘员FBAP发射的尺寸分布在3-5 lm直径范围内具有主导模式。

著录项

  • 来源
    《Indoor Air》 |2016年第2期|193-206|共14页
  • 作者单位

    Department of Civil and Environmental EngineeringUniversity of CaliforniaBerkeley, CA 94720, USA;

    Departmentof Plant and Microbial Biology, University of California,Berkeley, CA, USA;

    Center for the Built Environment,University of California, Berkeley, CA, USA;

    Departmentof Chemistry and Biochemistry, University of Denver,Denver, CO, USA;

    Center for the Built Environment,University of California, Berkeley, CA, USA;

    Departmentof Plant and Microbial Biology, University of California,Berkeley, CA, USA;

    Departmentof Plant and Microbial Biology, University of California,Berkeley, CA, USA;

    Department of Civil and Environmental Engineering,University of California, Berkeley, CA, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    UV-APS; Occupancy; Flooring; Source strength; Resuspension; Human activity.;

    机译:紫外线APS占用;地板;源强度;重悬;人类活动。;

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