气溶胶
成核
辐射压力
大气(单位)
航程(航空)
环境科学
大气科学
化学物理
化学
材料科学
气象学
物理
有机化学
复合材料
作者
Markku Kulmala,Jenni Kontkanen,Heikki Junninen,Katrianne Lehtipalo,Hanna E. Manninen,Tuomo Nieminen,Tuukka Petäjä,Mikko Sipilä,Siegfried Schobesberger,Pekka Rantala,Alessandro Franchin,Tuija Jokinen,Emma Järvinen,Mikko Äijälä,Juha Kangasluoma,Jani Hakala,Pasi P. Aalto,Pauli Paasonen,Jyri Mikkilä,Joonas Vanhanen
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2013-02-21
卷期号:339 (6122): 943-946
被引量:1272
标识
DOI:10.1126/science.1227385
摘要
Atmospheric nucleation is the dominant source of aerosol particles in the global atmosphere and an important player in aerosol climatic effects. The key steps of this process occur in the sub-2-nanometer (nm) size range, in which direct size-segregated observations have not been possible until very recently. Here, we present detailed observations of atmospheric nanoparticles and clusters down to 1-nm mobility diameter. We identified three separate size regimes below 2-nm diameter that build up a physically, chemically, and dynamically consistent framework on atmospheric nucleation--more specifically, aerosol formation via neutral pathways. Our findings emphasize the important role of organic compounds in atmospheric aerosol formation, subsequent aerosol growth, radiative forcing and associated feedbacks between biogenic emissions, clouds, and climate.
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