MOPITT观测的CO分布规律及与瓦里关地面观测结果的比较  被引量:12

Distribution of Carbon Monoxide from MOPITT of 2000-2004 and Comparisons with Surface Measurements in Mt.Waliguan Station

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作  者:赵春生[1] 方圆圆[1] 汤洁[2] 郑向东[2] 周广强[3] 

机构地区:[1]北京大学物理学院大气科学系,北京100871 [2]中国气象科学研究院,北京100081 [3]上海台风研究所,上海200030

出  处:《应用气象学报》2007年第1期36-41,I0002,共7页Journal of Applied Meteorological Science

基  金:国家自然科学基金项目(40318001;40575060);科技部公益性研究专项重点项目(2001DIA10009)共同资助

摘  要:利用TERRA/MOPITT仪器测量的2000年3月—2004年5月的CO数据,分析了CO的时空分布特征及其变化趋势,并且与美国国家海洋大气管理局气候监测与诊断实验室(CMDL/NOAA)在瓦里关站的CO观测结果进行比较和验证。结果表明:CO的高值区在北半球主要位于东亚、西欧和北美,而在南半球主要位于非洲中西部和南美洲的赤道地区;CO的分布随季节变化显著,春季北半球的CO浓度最高,而秋季南半球的CO浓度偏高;东亚的CO高值区主要是位于中国东部沿海地区和日本列岛一带。对于北京和瓦里关CO的趋势分析明表:这两个地区的CO浓度在这4年内都是呈上升趋势。结合CMDL的观测资料与卫星观测结果进行比较和检验发现,瓦里关站卫星观测结果和CMDL的结果在时间序列的变化趋势一致,卫星柱总量的观测数据和CMDL数据的相关性非常好。Carbon monoxide (CO) is one of the main pollutants produced by incomplete combustion processes, such as the burning of fossil fuels in urban and industrial areas as well as by biofuel and biomass burning. CO has long been recognized for its critical role in tropospheric chemistry. Coupled with a one to three month lifetime, the wide variety and seasonal variation of sources makes CO an excellent tracer of atmospheric motions. Surface CO measurements which have generally been limited to surface or boundary layer measurements often substantially impacted by local pollution can not provided a global synoptic view of CO on a daily basis. To better understand global CO cycles, observations from the space are necessary. The Measurements of Pollution in the Troposphere (MOPITT) instrument, funded by the Canadian Space Agency and manufactured by COM DEV of Cambridge, Ontario, is launched onboard the NASA Earth Observing System (EOS) Terra satellite in December, 1999. MOPITT offers the first daily, global synoptic observations of CO since March 2000. The MOPITT data set contains CO total column amount, CO mixing ratios at six altitudes (850 hPa, 700 hPa, 500 hPa, 350 hPa, 250 hPa, 150 hPa) and the corresponding location and time along the track. Here Level 2, Version 3 MOPITT CO data are used which includes the latitude and longitude of MOPITT at nadir, the corresponding CO column and six layers of CO mixing ratio. The data are aggregated and interpolated to achieve grid data with a resolution of 1°× 1° at 3-day average. Distribution properties and trend of CO from MOPITT of March 2000 to May 2004 are analyzed and comparisons with CMDL/NOAA surface CO measurements in Mt. Waliguan station are made. The results show that there is a large variation for global CO distribution. On the average, CO in Northern hemisphere is higher than that in Southern hemisphere. CO peak centers are located in East Asia, West Europe and North America in Northern hemisphere while in Middle West Africa and tropic regions of Sou

关 键 词:MOPITT CO CMDL 瓦里关 

分 类 号:P402[天文地球—大气物理学与大气环境]

 

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