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首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Hygroscopic aerosol deposition in the human upper respiratory tract under various thermo-humidity conditions
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Hygroscopic aerosol deposition in the human upper respiratory tract under various thermo-humidity conditions

机译:在各种热湿条件下人体上呼吸道的吸湿性气溶胶沉积

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The deposition of hygroscopic aerosols is highly complex in nature, which results from a cumulative effect of dynamic particle growth and the real-time size-specific deposition mechanisms. The objective of this study is to evaluate hygroscopic effects on the particle growth, transport, and deposition of nasally inhaled aerosols across a range of 0.2-2.5 μm in an adult image-based nose-throat model. Temperature and relative humidity fields were simulated using the LRN k-ω turbulence model and species transport model under a spectrum of thermo-humidity conditions. Particle growth and transport were simulated using a well validated Lagrangian tracking model coupled with a user-defined hygroscopic growth module. Results of this study indicate that the saturation level and initial particle size are the two major factors that determine the particle growth rate (d/do), while the effect of inhalation flow rate is found to be not significant. An empirical correlation of condensation growth of nasally inhaled hygroscopic aerosols in adults has been developed based on a variety of thermo-humidity inhalation conditions. Significant elevated nasal depositions of hygroscopic aerosols could be induced by condensation growth for both sub-micrometer and small micrometer particulates. In particular, the deposition of initially 2.5 μm hygroscopic aerosols was observed to be 5-8 times that of inert particles under warm to hot saturated conditions. Results of this study have important implications in exposure assessment in hot humid environments, where much higher risks may be expected compared to normal conditions.
机译:吸湿性气溶胶的沉积本质上是高度复杂的,这是由于动态粒子生长的累积效应和特定尺寸的实时沉积机制所致。这项研究的目的是评估在基于成人图像的鼻-咽喉模型中,吸湿性对鼻吸入气雾剂在0.2-2.5μm范围内的颗粒生长,运输和沉积的影响。使用LRNk-ω湍流模型和物种迁移模型,在温度-湿度条件下模拟了温度和相对湿度场。使用经过充分验证的拉格朗日跟踪模型以及用户定义的吸湿性生长模块,可以模拟颗粒的生长和运输。这项研究的结果表明,饱和度和初始颗粒大小是决定颗粒生长速率(d / do)的两个主要因素,而吸入流速的影响并不明显。基于多种热湿吸入条件,已经开发了成年人鼻吸入吸湿性气溶胶凝结增长的经验相关性。亚微米级和小微米级颗粒的凝结生长都可能引起吸湿性气溶胶在鼻腔中的大量沉积。特别是,观察到最初2.5μm吸湿性气溶胶在热至热饱和条件下的沉积量是惰性颗粒的5-8倍。这项研究的结果对于在炎热潮湿的环境中的暴露评估具有重要的意义,与正常情况相比,在潮湿的环境中可能会有更高的风险。

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