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首页> 外文期刊>Inhalation toxicology >Particle deposition in human respiratory system: Deposition of concentrated hygroscopic aerosols
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Particle deposition in human respiratory system: Deposition of concentrated hygroscopic aerosols

机译:人体呼吸系统中的颗粒沉积:集中吸湿性气溶胶的沉积

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In the nearly saturated human respiratory tract, the presence of water-soluble substances in the inhaled aerosols can cause change in the size distribution of the particles. This consequently alters the lung deposition profiles of the inhaled airborne particles. Similarly, the presence of high concentration of hygroscopic aerosols also affects the water vapor and temperature profiles in the respiratory tract. A model is presented to analyze these effects in human respiratory system. The model solves simultaneously the heat and mass transfer equations to determine the size evolution of respirable particles and gas-phase properties within human respiratory tract. First, the model predictions for nonhygroscopic aerosols are compared with experimental results. The model results are compared with experimental results of sodium chloride particles. The model reproduces the major features of the experimental data. The water vapor profile is significantly modified only when a high concentration of particles is present. The model is used to study the effect of equilibrium assumptions on particle deposition. Simulations show that an infinite dilution solution assumption to calculate the saturation equilibrium over droplet could induce errors in estimating particle growth. This error is significant in the case of particles of size greater than 1 urn and at number concentrations higher than 107cm3.
机译:在接近饱和的人类呼吸道中,吸入的气溶胶中存在水溶性物质会导致颗粒尺寸分布发生变化。因此,这改变了吸入的空气传播颗粒的肺部沉积情况。同样,高浓度的吸湿性气溶胶的存在也会影响呼吸道中的水蒸气和温度分布。提出了一个模型来分析这些对人体呼吸系统的影响。该模型同时求解传热和传质方程式,以确定可呼吸颗粒的尺寸演变和人类呼吸道内的气相性质。首先,将非吸湿性气溶胶的模型预测与实验结果进行比较。将模型结果与氯化钠颗粒的实验结果进行比较。该模型再现了实验数据的主要特征。仅当存在高浓度的颗粒时,水蒸气的分布才会显着改变。该模型用于研究平衡假设对颗粒沉积的影响。仿真表明,用于计算液滴上的饱和平衡的无限稀释溶液假设可能会导致估算颗粒生长的错误。对于粒径大于1微米且数字浓度大于107立方厘米的颗粒,此误差非常明显。

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