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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Influence of continental air mass transport on atmospheric CO2 in the western North Pacific
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Influence of continental air mass transport on atmospheric CO2 in the western North Pacific

机译:大陆气团影响交通大气中的二氧化碳在北太平洋西部

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摘要

Since 1993, atmospheric carbon dioxide (CO2) has been continuously observed by the Japan Meteorological Agency at Minamitorishima station (24°18′N, 153°58′E), located about 2000 km off the Asian continent in the western North Pacific. The long-term record shows high-frequency measurements with interesting episodic events with extremely low CO2 mixing ratios 5–10 ppm below the background seasonal cycle. These extremely low CO2 (ELC) events occur several times each year, primarily in July, August, and September, although the number of events varies from year to year. The origins of air masses associated with the ELC events were defined by backward trajectory analyses as well as chemical characterizations using simultaneous observations of other trace gases (CO, CH4, and O3). The results indicate that the air masses with extremely low CO2 were influenced by active biospheric uptake in summer over different continental sink regions in Siberia, northern Asia, and Southeast Asia due to rapid long-range transport driven by strong northerly or southerly winds. The spatial scale of the widespread low-CO2 distribution for the ELC events in 2001 was captured by a simulation experiment using a three-dimensional chemical transport model. It clearly revealed that the Intertropical Convergence Zone around 20°N in the western North Pacific during summer blocked further southward intrusion of ELC events through the lower troposphere.
机译:自1993年以来,大气二氧化碳(CO2)不断观察到日本在Minamitorishima车站气象局(24°18镑,153°58本部),位于约2000公里亚洲大陆的北太平洋西部。长期记录显示高频测量与有趣的情景事件与极低的二氧化碳混合比率5 - 10 ppm背景下的季节性周期。极低的二氧化碳(助教)事件发生数次每年,主要在7月,8月,9月,尽管事件的数量不同年复一年。与定义的语言学校的事件有关反向轨迹分析以及化学使用同步观测特征其他微量气体(CO、CH4和O3)。结果表明,空气质量极低的二氧化碳受到积极的影响生物圈的吸收在夏季不同西伯利亚大陆下沉地区,北部亚洲,东南亚由于快速的远程运输由强大的北或南大风。2001年低co2分布的复杂事件被一个仿真实验使用吗三维化学传输模式。清楚地表明,热带辐合区在西北大约20°N进一步向南太平洋夏季阻塞通过降低入侵的复杂事件对流层。

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