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Physico-chemical characteristics of evaporating respiratory fluid droplets

机译:蒸发呼吸液滴的物理化学特性

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摘要

The detailed physico-chemical characteristics of respiratory droplets in ambient air, where they are subject to evaporation, are poorly understood. Changes in the concentration and phase of major components in a droplet-salt (NaCl), protein (mucin) and surfactant (dipalmitoylphosphatidylcholine)-may affect the viability of any pathogens contained within it and thus may affect the efficiency of transmission of infectious disease by droplets and aerosols. The objective of this study is to investigate the effect of relative humidity (RH) on the physico-chemical characteristics of evaporating droplets of model respiratory fluids. We labelled these components in model respiratory fluids and observed evaporating droplets suspended on a superhydrophobic surface using optical and fluorescence microscopy. When exposed to continuously decreasing RH, droplets of different model respiratory fluids assumed different morphologies. Loss of water induced phase separation as well as indication of a decrease in pH. The presence of surfactant inhibited the rapid rehydration of the non-volatile components. An enveloped virus, phi 6, that has been proposed as a surrogate for influenza virus appeared to be homogeneously distributed throughout the dried droplet. We hypothesize that the increasing acidity and salinity in evaporating respiratory droplets may affect the structure of the virus, although at low enough RH, crystallization of the droplet components may eliminate their harmful effects.
机译:环境空气中呼吸液滴的详细物理化学特性,它们受到蒸发的情况下,尚不清楚。液滴 - 盐(NaCl),蛋白质(粘蛋白)和表面活性剂(Dipalmitoylphospholine)中的主要组分的浓度和相的变化 - May影响其内容中含有的任何病原体的可行性,因此可能影响传染病的传播效率液滴和气溶胶。本研究的目的是研究相对湿度(RH)对模型呼吸液蒸发液滴的物理化学特性的影响。我们在模型呼吸流体中标记了这些组分,并观察了使用光学和荧光显微镜悬浮在超疏水表面上的蒸发液滴。当暴露于连续减少的RH时,不同模型呼吸流体的液滴承担了不同的形态。水诱导相分离的丧失以及pH降低的指示。表面活性剂的存在抑制了非挥发性组分的快速再水化。已经提出的包膜病毒PHI 6作为甲状腺病毒的替代物似乎在整个干燥的液滴中均匀分布。我们假设蒸发呼吸液滴中的增加酸度和盐度可能影响病毒的结构,尽管在足够低的RH时,液滴组分的结晶可以消除它们的有害影响。

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