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Multicomponent new particle formation from sulfuric acid ammonia and biogenic vapors

机译:由硫酸氨和生物蒸气形成的多组分新颗粒

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摘要

A major fraction of atmospheric aerosol particles, which affect both air quality and climate, form from gaseous precursors in the atmosphere. Highly oxygenated organic molecules (HOMs), formed by oxidation of biogenic volatile organic compounds, are known to participate in particle formation and growth. However, it is not well understood how they interact with atmospheric pollutants, such as nitrogen oxides (NOx) and sulfur oxides (SOx) from fossil fuel combustion, as well as ammonia (NH3) from livestock and fertilizers. Here, we show how NOx suppresses particle formation, while HOMs, sulfuric acid, and NH3 have a synergistic enhancing effect on particle formation. We postulate a novel mechanism, involving HOMs, sulfuric acid, and ammonia, which is able to closely reproduce observations of particle formation and growth in daytime boreal forest and similar environments. The findings elucidate the complex interactions between biogenic and anthropogenic vapors in the atmospheric aerosol system.
机译:影响空气质量和气候的大部分大气气溶胶颗粒是由大气中的气态前体形成的。通过氧化生物成因的挥发性有机化合物而形成的高度氧化的有机分子(HOM)参与了颗粒的形成和生长。但是,人们对它们如何与大气污染物(例如化石燃料燃烧产生的氮氧化物(NOx)和硫氧化物(SOx)以及牲畜和化肥中的氨(NH3))相互作用的方式了解甚少。在这里,我们展示了NOx如何抑制颗粒形成,而HOM,硫酸和NH3对颗粒形成具有协同增强作用。我们推测一种涉及HOM,硫酸和氨的新机制,该机制能够紧密再现白天北方森林和类似环境中颗粒形成和生长的观察结果。这些发现阐明了大气气溶胶系统中生物蒸气与人为蒸气之间的复杂相互作用。

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