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Evaluation of different techniques for particle size distribution measurements on laser-generated aerosols

机译:评估激光产生的气溶胶粒径分布测量的不同技术

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摘要

Knowledge about aerosol particle sizes in laser-generated aerosols is required to better understand nonstoichiometric effects as they occur during laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS). However, published particle size distributions measured by different techniques provide an inconclusive picture, since measurements base on different physical properties of a particle. This is especially the case for the size determination of agglomerated nano-particles, which contribute significantly to the total particle mass transported to the ICP. While their aerodynamic diameters measured by particle impaction are always smaller than the volume equivalent ones (d(a)d(ve)). This leads to large discrepancies between measured d(a) and d(m) values, which is shown within this work on brass aerosols generated by laser ablation. Results of light scattering measurement, which is a quick and simultaneous method, show particle diameters in between impaction and DMA data. However, it is important to know that the different methods are not in contradiction to each other, but measure specific physical properties of a particle and complement each other. Results of this study demonstrate the advantages and limitations of the individual particle size measurement techniques and should be seen as guidance to select the adequate technique for laser generated aerosol particle size determinations.
机译:为了更好地理解在激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)中发生的非化学计量效应,需要了解有关激光产生的气溶胶中气溶胶粒径的知识。然而,由于测量基于颗粒的不同物理性质,因此通过不同技术测量的公开粒度分布提供了不确定的图片。对于团聚的纳米颗粒的尺寸确定尤其如此,这对传输到ICP的总颗粒质量有很大贡献。尽管它们通过颗粒撞击测量的空气动力学直径始终小于体积当量直径(d(a) d(ve))。这导致测得的d(a)和d(m)值之间存在较大差异,这在这项工作中显示了由激光烧蚀产生的黄铜气溶胶。光散射测量的结果是一种快速,同步的方法,其结果显示了撞击和DMA数据之间的粒径。但是,重要的是要知道,不同的方法并不相互矛盾,而是可以测量颗粒的特定物理性质并相互补充。这项研究的结果证明了各种粒径测量技术的优势和局限性,应被视为选择适当的技术来确定激光产生的气溶胶粒径的指导。

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