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气溶胶密度和形状因子对 239Pu 内暴露评估的影响。

The Influence of Aerosol Density and Shape Factor on the Assessment of Internal Exposure to 239Pu.

机构信息

1Northwest Institute of Nuclear Technology, Xi'an, China.

Northwest Institute of Nuclear Technology, Xi'an, China.

出版信息

Health Phys. 2019 Oct;117(4):353-361. doi: 10.1097/HP.0000000000001052.

Abstract

Internal exposure due to inhalation of aerosols depends on the ratio of aerodynamic shape factor (χ) to aerosol mass density (ρ). Inhaled aerosol parameters may differ from the default ρ and χ values provided by the International Commission on Radiological Protection, which are adopted for the assessment of internal exposures. This paper focuses on the influences of χ/ρ on the assessment of internal exposure to Pu for reference workers. Regional deposition fractions are found to decrease with increasing χ/ρ, and larger decreases are observed with smaller activity median aerodynamic diameter aerosols, while the slow clearance fractions (fs) in the tracheobronchial region are more sensitive for larger activity median aerodynamic diameter aerosols. Results from biokinetics calculations reveal that both the time-dependent content (excretion) and cumulative activities are determined mainly for particles initially deposited in the alveolar-interstitial region, while fs affects the local cumulative activities in the tracheobronchial region. χ/ρ is proven to have different influences for aerosols with different activity median aerodynamic diameters. The default χ/ρ values can be used when activity median aerodynamic diameters are greater than 1 μm, while one should pay attention to the value of χ/ρ when activity median aerodynamic diameters are less than 1 μm, where significant influence may be anticipated.

摘要

由于吸入气溶胶而导致的内暴露取决于气溶胶空气动力学形状因子 (χ) 与气溶胶质量密度 (ρ) 的比值。吸入的气溶胶参数可能与国际辐射防护委员会提供的默认 ρ 和 χ 值不同,这些值被用于内暴露评估。本文重点关注 χ/ρ 对参考工作人员内暴露于 Pu 评估的影响。研究发现,随着 χ/ρ 的增加,区域性沉积分数降低,而对于较小的活性中值空气动力学直径气溶胶,降低幅度更大,而在气管支气管区域的缓慢清除分数 (fs) 对于较大的活性中值空气动力学直径气溶胶更为敏感。生物动力学计算结果表明,时间相关含量(排泄)和累积活性主要取决于最初沉积在肺泡-间质区域的颗粒,而 fs 则影响气管支气管区域的局部累积活性。χ/ρ 对不同活性中值空气动力学直径的气溶胶具有不同的影响。当活性中值空气动力学直径大于 1 μm 时,可以使用默认的 χ/ρ 值,而当活性中值空气动力学直径小于 1 μm 时,应该注意 χ/ρ 的值,因为可能会预期到有重大影响。

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