用不同的微粒计量方法测定人体呼吸道的区域沉积剂量

E. Chalvatzaki, S. Chatoutsidou, M. Lazaridis
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引用次数: 2

摘要

本研究的目的是计算由颗粒数(PN)和颗粒质量(PM)测量引起的人体呼吸道沉积剂量率。主要目的是研究这两种指标在人呼吸道中的沉积模式和特征。对郊区背景地点(希腊哈尼亚)居民的剂量率进行了估计。总剂量率在暖期出现两个峰,分别为早晨(7:00-8:00为1.6 × 109颗粒/h)和夜间(21:00-22:00为2.1 × 109颗粒/h),冷期出现两个峰,分别为上午(9:00-10:00为2.0 × 109颗粒/h)和下午(18:00-19:00为3.6 × 109颗粒/h)。暖期峰值与交通排放有关,冷期峰值与供暖和交通排放均有关。PN10在肺泡区剂量率较高,PM10在胸外区剂量率较高。这些发现与超细颗粒和粗颗粒对PN10(在寒冷和温暖时期分别为65%-78%和54%-62%)和PM10(在寒冷和温暖时期分别为63%和55%)浓度的贡献增加有关。目前的研究表明,使用数量和质量气溶胶指标来确定人体暴露和区域剂量及其相关的健康影响的重要性。当前研究的新颖之处在于同时测量两种粒子度量和全粒径分布,以准确估计区域沉积剂量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regional deposited dose in the human respiratory tract using different particulate metrics
The objective of the current study was to calculate the deposited dose rate in the human respiratory tract arising from particle number (PN) and particle mass (PM) measurements. A main objective was the investigation of deposition pattern and characteristics of the two metrics in the human respiratory tract. The dose rate was estimated for residents at a suburban background location (Chania, Greece). The total dose rate showed two peaks, one in the morning (1.6 × 109 particles/h at 7:00-8:00) and the other one at night (2.1 × 109 particles/h at 21:00-22:00), during the warm period, while the cold period showed two peaks, morning (2.0 × 109 particles/h at 9:00-10:00) and afternoon (3.6 × 109 particles/h at 18:00-19:00). The peaks during the warm period were associated with traffic emissions, whereas the peaks during the cold period were associated with both heating and traffic emissions. A higher dose rate of PN10 was found in the alveolar region while for PM10 it was found in the extrathoracic region. These findings are linked with increased contribution of ultrafine and coarse particles to PN10 (65%-78% and 54%-62% for cold and warm periods, respectively) and PM10 (63% and 55% for cold and warm periods, respectively) concentrations, respectively. The current study showed the importance to use both number and mass aerosol metrics for determining the human exposure and regional dose and their related health effects. The novelty of the current study is the simultaneous measurements of the two particles metrics and the full particle size distributions to make accurate estimates of regional deposited dose.
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