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模拟硫酸气溶胶在人体气管支气管树中的剂量分布。

Modeling the dose distribution of H2SO4 aerosols in the human tracheobronchial tree.

作者信息

Martonen T B, Patel M

出版信息

Am Ind Hyg Assoc J. 1981 Jun;42(6):453-60. doi: 10.1080/15298668191420053.

Abstract

The influence of hygroscopic growth within the human respiratory tract upon the deposition of H2SO4 aerosols is investigated using an analytical model. Particles are assumed to reach their equilibrium size and density upon entering the trachea from either the nasal or oral pharyngeal compartments. Calculated data are used to describe the equilibrium values for specified relative humidity conditions which simulate the atmosphere, inhalation exposure chambers, and the lung. Theoretical equations are used to calculate aerosol deposition efficiencies within conducting airways of the tracheobronchial tree. Hygroscopic growth is shown to affect both the total dose deposited and its regional distribution. For an inspiratory flow rate of 30 L min-1, the total deposition efficiency of H2SO4-and-H2O droplets, resulting from water condensation upon H2SO4 particles of initial geometric diameter D0, is greater than inspired nonhygroscopic particles of identical aerodynamic diameter when D0 greater than 0.1 mu m. The opposite is found when D0 less than 0.1 mu m. The effects of hygroscopic growth are explained in terms of the changing deposition efficiencies of the inertial impaction, sedimentation and diffusion mechanisms. Results imply that it is important that hygroscopic growth within the human respiratory tract be accounted for when assessing the potential health hazard of airborne particulate matter.

摘要

利用一个分析模型研究了人体呼吸道内的吸湿增长对硫酸气溶胶沉积的影响。假设颗粒从鼻或口咽腔进入气管后达到其平衡尺寸和密度。计算数据用于描述模拟大气、吸入暴露室和肺部的特定相对湿度条件下的平衡值。使用理论方程计算气管支气管树传导气道内的气溶胶沉积效率。结果表明,吸湿增长会影响沉积的总剂量及其区域分布。对于30 L min-1的吸气流量,当初始几何直径D0的硫酸颗粒上因水凝结而形成的硫酸 - 水液滴的总沉积效率,在D0大于0.1μm时大于具有相同空气动力学直径的吸入非吸湿颗粒。当D0小于0.1μm时则相反。吸湿增长的影响通过惯性碰撞、沉降和扩散机制沉积效率的变化来解释。结果表明,在评估空气中颗粒物的潜在健康危害时,考虑人体呼吸道内的吸湿增长非常重要。

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