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Atmospheric ions and nucleation: A review of observations

机译:大气离子和成核:观测综述

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This review is based on ca. 260 publications, 93 of which included data on the temporal and spatial variation of the oncentration of small ions (<1.6 nm in diameter) especially in the lower troposphere, chemical composition, or formation and growth rates of sub-3 nm ions. This information was collected on tables and figures. The small ions exist all the time in the atmosphere, and the average concentrations of positive and negative small ions are typically 200-2500 cm~(-3). However, concentrations up to 5000 cm~(-3) have been observed. The results are in agreement with observations of ion production rates in the atmosphere. We also summarised observations on the conversion of small ions to intermediate ions, which can act as embryos for new atmospheric aerosol particles. Those observations include the formation rates (J_2[ion]) of 2-nm intermediate ions, growth rates (GR[ion]) of sub-3 nm ions, and information on the chemical composition of the ions. Unfortunately, there were only a few studies which presented J_2[ion] and GR[ion]. Based on the publications, the formation rates of 2-nm ions were 0-1.1 cm -3 s~(-1), while the total 2-nm particle formation rates varied between 0.001 and 60 cm~(-3)s~(-1). Due to small changes in J_2[ion], the relative importance of ions in 2-nm particle formation was determined by the large changes in J_2[tot], and, accordingly the contribution of ions increased with decreasing J _2[tot]. Furthermore, small ions were observed to activate for growth earlier than neutral nanometer-sized particles and at lower saturation ratio of condensing vapours.
机译:这篇评论是基于ca。 260种出版物,其中93种包括有关小离子(直径<1.6 nm)集中的时间和空间变化的数据,特别是在对流层下部,化学成分或亚3 nm离子的形成和生长速率方面。此信息收集在表格和数字上。小离子一直存在于大气中,正,负离子的平均浓度通常为200-2500 cm〜(-3)。然而,已经观察到浓度高达5000cm 3(-3)。该结果与大气中离子产生速率的观察结果一致。我们还总结了关于小离子向中间离子转化的观察结果,这些离子可以充当新的大气气溶胶颗粒的胚胎。这些观察结果包括2 nm中间离子的形成速率(J_2 [ion]),低于3 nm离子的生长速率(GR [ion])以及有关离子化学组成的信息。不幸的是,只有少数研究提出了J_2 [ion]和GR [ion]。根据出版物,2-nm离子的形成速率为0-1.1 cm -3 s〜(-1),而总的2nm离子的形成速率在0.001至60 cm〜(-3)s〜(之间)之间变化。 -1)。由于J_2 [离子]的微小变化,离子在2 nm颗粒形成中的相对重要性取决于J_2 [tot]的较大变化,因此,离子的贡献随着J _2 [tot]的减小而增加。此外,观察到小离子比中性纳米尺寸的颗粒更早地活化生长,并且在较低的冷凝蒸汽饱和比下活化。

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