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Observation of neutral sulfuric acid-amine containing clusters in laboratory and ambient measurements

机译:在实验室和环境测量中观察含有中性硫酸-胺的团簇

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pstrongAbstract./strong Recent ab initio calculations showed that amines can enhance atmospheric sulfuric acid-water nucleation more effectively than ammonia, and this prediction has been substantiated in laboratory measurements. Laboratory studies have also shown that amines can effectively displace ammonia in several types of ammonium clusters. However, the roles of amines in cluster formation and growth at a microscopic molecular scale (from molecular sizes up to 2 nm) have not yet been well understood. Processes that must be understood include the incorporation of amines into sulfuric acid clusters and the formation of organic salts in freshly nucleated particles, which contributes significantly to particle growth rates. We report the first laboratory and ambient measurements of neutral sulfuric acid-amine clusters using the Cluster CIMS, a recently-developed mass spectrometer designed for measuring neutral clusters formed in the atmosphere during nucleation. An experimental technique, which we refer to as Semi-Ambient Signal Amplification (SASA), was employed. Sulfuric acid was added to ambient air, and the concentrations and composition of clusters in this mixture were analyzed by the Cluster CIMS. This experimental approach led to significantly higher cluster concentrations than are normally found in ambient air, thereby increasing signal-to-noise levels and allowing us to study reactions between gas phase species in ambient air and sulfuric acid containing clusters. Mass peaks corresponding to clusters containing four Hsub2/subSOsub4/sub molecules and one amine molecule were clearly observed, with the most abundant sulfuric acid-amine clusters being those containing a C2- or C4-amine (i.e. amines with masses of 45 and 73 amu). Evidence for C3- and C5-amines (i.e. amines with masses of 59 and 87 amu) was also found, but their correlation with sulfuric acid tetramer was not as strong as was observed for the C2- and C4-amines. The formation mechanisms for those sulfuric acid-amine clusters were investigated by varying the residence time in the inlet. It was concluded that the amines react directly with neutral clusters and that ion-induced clustering of sulfuric acid cluster ions with amines was not a dominant process. Results from ambient measurements using the Cluster CIMS without addition of sulfuric acid have shown that the sulfuric acid-amine clusters were reasonably well correlated with sulfuric acid tetramer and consistent with the SASA experiments at the same Boulder sampling site. Also, clusters that contain C2- or C4-amines were more abundant and better correlated with sulfuric acid tetramer than other types of amine containing clusters. However, ambient measurements of sulfuric acid-amine clusters remain difficult and highly uncertain because their concentrations are only slightly above background levels, even during nucleation events./p.
机译:> >摘要。最近的从头算计算表明,胺比氨能更有效地增强大气中的硫酸-水成核作用,这一预测已在实验室测量中得到证实。实验室研究还表明,胺可以有效替代几种类型的铵簇中的氨。但是,胺在微观分子规模(从分子大小到2 nm)的簇形成和生长中的作用尚未被很好地理解。必须理解的过程包括将胺掺入硫酸簇中以及在新成核的颗粒中形成有机盐,这对颗粒的生长速度有显着贡献。我们报告了使用簇CIMS进行的首次中性硫酸-胺簇的实验室和环境测量,簇CIMS是最近开发的质谱仪,用于测量成核过程中在大气中形成的中性簇。使用了一种称为“半环境信号放大”(SASA)的实验技术。将硫酸添加到环境空气中,并通过Cluster CIMS分析该混合物中簇的浓度和组成。这种实验方法导致簇浓度大大高于周围空气中的浓度,从而增加了信噪比水平,并使我们能够研究周围空气中的气相物质与含硫酸的簇之间的反应。清楚地观察到与包含四个H 2 SO 4 分子和一个胺分子的簇相对应的质量峰,其中最丰富的硫酸-胺簇是含有C2-或C4-胺(即质量为45和73 amu的胺)。还发现了C3-和C5-胺(即质量为59和87 amu的胺)的证据,但是它们与硫酸四聚体的相关性不如C2-和C4-胺的强。通过改变入口中的停留时间,研究了那些硫酸-胺类簇的形成机理。结论是胺与中性团簇直接反应,并且硫酸根离子与胺的离子诱导团簇不是主要过程。使用不添加硫酸的Cluster CIMS进行的环境测量结果表明,硫酸-胺类簇与硫酸四聚体合理相关,并且与同一Boulder采样地点的SASA实验一致。而且,与其他类型的含胺簇相比,包含C2-或C4-胺的簇更丰富,并且与硫酸四聚体的相关性更好。然而,即使在成核过程中,硫酸-胺簇的环境测量仍然困难且高度不确定,因为它们的浓度仅略高于本底水平。

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