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Measuring Composition Growth of Ion Clusters of Sulfuric Acid, Ammonia, Amines Oxidized Organics as First Steps of Nucleation in the CLOUD Experiment

机译:在CLOUD实验中,作为成核的第一步,测量硫酸,氨,胺和氧化有机物的离子簇的组成和生长

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摘要

The mechanisms behind the nucleation of vapors forming new particles in the atmosphere had been proven difficult to establish. One main aim of the CLOUD experiment was to explore in detail these first steps of atmospheric new particle formation by performing extremely well controlled laboratory experiments. We examined nucleation and growth in the presence of different mixtures of vapors, including sulfuric acid, ammonia, dimethylamine, and oxidation products of pinanediol or α-pinene. Among the employed state-of-the-art instrumentation, a high-resolution mass spectrometer that directly sampled negatively charged ions and clusters proved particularly useful. We were able to resolve most of the chemical compositions found for charged sub-2nm clusters and to observe their growth in time. These compositions reflected the mixture of condensable vapors in the chamber and the role of each individual vapor in forming sub-2nm clusters could be explored. By inter-comparing between individual experiments and ambient observations, we try to establish which vapors participate in nucleation in the actual atmosphere, and how.
机译:事实证明,在大气中形成新颗粒的蒸气成核背后的机制很难建立。 CLOUD实验的一个主要目的是通过进行严格控制的实验室实验,详细探索大气新颗粒形成的第一步。我们在不同的蒸汽混合物(包括硫酸,氨水,二甲胺和pin二醇或α-pine烯的氧化产物)存在下检查了成核和生长。在所使用的最新仪器中,直接采样带负电的离子和簇的高分辨率质谱仪被证明特别有用。我们能够解析出发现于带电2nm以下簇的大多数化学成分,并观察其随时间的增长。这些成分反映了反应室中可冷凝蒸气的混合物,并且可以探讨每种蒸气在形成亚2nm团簇中的作用。通过将各个实验与环境观测值进行相互比较,我们尝试确定哪些蒸气参与了实际大气中的成核作用,以及如何参与。

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