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Estimation of the Aerodynamic Sizes of Single Bacterium-Laden Expiratory Aerosols Using Stochastic Modeling with Experimental Validation

机译:带有实验验证的随机模型估算单细菌负载呼气气溶胶的空气动力学尺寸

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摘要

The aerodynamic size of pathogen-laden expiratory aerosols plays an important role in their dispersion in air and deposition onto surfaces, both of which are related to the spread of infectious respiratory diseases. The size of bacterial cells is on a similar scale to the size of expiratory aerosols, but because some bacterial cells are nonspherical, bacterium-laden expiratory aerosols often have irregular shapes and highly variable aerodynamic sizes. An algorithm that can estimate their aerodynamic sizes is highly desirable in studying their physical transport and to assess the subsequent exposure level and infection risk. In this study, an algorithm based on stochastic modeling was developed to predict the distribution of the aerodynamic size of bacterium-laden expiratory aerosols. The applicability of the algorithm was tested experimentally by conducting biological air sampling using a multi-stage impactor in a test facility. The proposed algorithm was used to predict the size profile of simulated expiratory aerosols encasing a strain of benign rod-shaped bacterium. Simulated bacterium-laden expiratory aerosols were generated using a cough machine with a solution containing the bacteria. Air at three different positions was then sampled to obtain the size profile of bacterium-laden aerosols at each position. The results were compared to the prediction by the algorithm and by another method, which simply considers the evaporative shrinkage of the expiratory aerosols and neglects the inclusion of the pathogen. It was found that the prediction by the proposed algorithm generally matched the measured results much better than the method that neglects the inclusion of the bacterium. Limitations of the current algorithm and further research and development are also discussed in this article.
机译:载有病原体的呼气气溶胶的空气动力学尺寸在其在空气中的扩散和在表面的沉积中起着重要作用,这两者都与传染性呼吸道疾病的传播有关。细菌细胞的大小与呼气气溶胶的大小相似,但是由于某些细菌细胞是非球形的,因此带有细菌的呼气气溶胶通常具有不规则的形状和高度可变的空气动力学大小。在研究它们的物理运输以及评估随后的暴露水平和感染风险时,非常需要一种可以估算其空气动力学尺寸的算法。在这项研究中,开发了一种基于随机模型的算法来预测载有细菌的呼气气溶胶的空气动力学尺寸分布。通过在测试设施中使用多级撞击器进行生物空气采样,对算法的适用性进行了实验测试。所提出的算法用于预测包裹有良性棒状细菌菌株的模拟呼气气溶胶的尺寸分布。使用咳嗽机用含有细菌的溶液生成模拟的细菌性呼气气溶胶。然后对三个不同位置的空气进行采样,以获得每个位置上载有细菌的气溶胶的尺寸分布。将结果与该算法和另一种方法的预测结果进行比较,该方法仅考虑了呼气气溶胶的蒸发收缩,而忽略了病原体的包裹。结果发现,所提出的算法的预测结果通常与测量结果相匹配,远胜于忽略细菌夹杂的方法。本文还讨论了当前算法的局限性以及进一步的研究和开发。

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  • 来源
    《Aerosol Science and Technology》 |2012年第1期|p.1-12|共12页
  • 作者单位

    Department of Mechanical Engineering, The Hong Kong University of Science and Technology, Kowloon, Hong Kong, China Building Energy Research Center, Fok Ying Tung Graduate School, The Hong Kong University of Science and Technology, Kowloon, Hong Kong, Ch;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:57:37

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