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Combining the Particle Size Selector and a condensation particle counter to determine the number size distribution of airborne nanoparticles

机译:组合粒度选择器和冷凝粒子计数器以确定空气纳米颗粒的数量分布

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摘要

This study fits in the general framework of developing methods for the measurement of the number size distribution of airborne submicrometer particles suited for field measurements. An approach based on the combination of a Particle Size Selector (PSS) and a portable Condensation Particle Counter (CPC) is proposed in this work. The methodology relies on the successive measurement of the number concentration under 6 operational configurations (n = 0, 1, 2, 6, 12 and 18 diffusion screens). A first part of this work consisted of determining particle penetration through different sets of diffusion grids, both experimentally and theoretically. On that basis, a specific data processing was developed, assuming that aerosol size distribution follows a monomodal lognormal law. In the second part of this study, the combined PSS-CPC approach was applied to a series of test aerosols produced in the laboratory, covering a range of modal diameters from 9 to 270 nm. Compared to reference SMPS data, the output number size distributions calculated from the PSS-CPC approach were found to be within +/- 11% in terms of modal diameter, which is considered satisfactory.
机译:本研究适合在为空中潜在计粒子的数量分布测量适用于现场测量的方法的一般框架。在该工作中提出了一种基于粒度选择器(PSS)和便携式冷凝粒子计数器(CPC)的组合的方法。该方法依赖于在6个操作配置下的数量浓度的连续测量(n = 0,1,2,6,12和18扩散屏幕)。这项工作的第一部分包括通过实验和理论上通过不同的扩散网格确定粒子渗透。在此基础上,假设气溶胶尺寸分布遵循单态阳极符合法规,开发了特定的数据处理。在本研究的第二部分中,将合并的PSS-CPC方法应用于实验室中产生的一系列测试气溶胶,覆盖了9至270nm的模态直径范围。与参考SMPS数据相比,从PSS-CPC方法计算的输出编号大小分布在模态直径方面被发现在+/- 11%之内,这被认为是令人满意的。

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