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亚洲季风区大气CH4 浓度时空变化特征与影响因素

  • Shi Qing Zhang
  • , Shan Shan Cao
  • , Li Ting Hu
  • , Chao Lin Cai
  • , Yue Tu
  • , Min Liu*
  • *此作品的通讯作者
  • East China Normal University
  • Institute of Eco-Chongming (IEC)

科研成果: 期刊稿件文章同行评审

摘要

Based on the ground-based observations from seven atmospheric background stations during 2009 to 2018 in monsoon Asia (including BKT station in Indonesia, LLN and WLG stations in China, RYO and YON stations in Japan, TAP station in Republic of Korea, and UUM station in Mongolia), we analyzed the temporal and spatial variation of atmospheric CH4 concentration and its driving factors using harmonic model and maximal information-based nonparametric exploration. The results showed that the CH4 concentration in monsoon Asia varied from 1853. 04 to 1935.61 nmol•mol-1, higher than that in Mauna Loa (MLO) station (1838.33 nmol•mol-1) in Hawaii, USA. The CH4 concentration decreased from north to south, with the highest value in TAP station (1935.61 nmol•mol-1) in Republic of Korea and RYO station (1907.19 nmol•mol-1) in Japan. The average seasonal amplitude at YON station in Japan was the largest (108.20 nmol•mol-1); while that at WLG station in China was the smallest (29.48 nmol•mol-1). The seasonal amplitude of TAP station in Republic of Korea changed faster at the rate of 4.49 nmol•mol-1•a-1. Except for WLG and TAP stations, CH4concentrations were low in summer and high in winter. From the long-term perspective, the CH4 concentration at LLN (7.68 nmol•mol-1•a-1) and WLG (7.56 nmol•mol-1•a-1) stations in China exhibited the most obvious growth trend. Compared with wind speed, temperature and precipitation had greater impact on CH4 concentration, which were negatively associated with CH4 concentration. Local CH4 emission at some stations had a significant positive effect on CH4 concentration.

投稿的翻译标题Spatio-temporal variation of atmospheric CH4concentration and its driving factors in monsoon Asia
源语言繁体中文
页(从-至)1406-1416
页数11
期刊Chinese Journal of Applied Ecology
32
4
DOI
出版状态已出版 - 4月 2021

关键词

  • CHconcentration
  • Ground observation
  • Meteorological factor
  • Monsoon Asia
  • Spatio-temporal variation

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