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2003-2010年中国对流层CO2时空分布研究 被引量:4

Temporal and spatial distribution of tropospheric carbon dioxide from 2003 to 2010 in China
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摘要 利用2003年到2010年的美国宇航局(National Aeronautics and Space Administration,NASA)的AIRS(Atmosphere InfraRed Sounder)官方反演的对流层中层(500 hPa)左右一段气柱内的CO2体积混合比产品分析中国地区对流层的CO2体积分数分布时空变化特征。所用数据是对AIRS L3产品2°×2.5°网格数据进行处理分析得到。经过对这8年的观测数据(2003年1月—2010年12月)的数据分析研究发现:中国地区平均CO2的体积分数在空间分布上极不平衡,总体高值集中于北部。CO2对流层中层的高值区集中在35°—45°N,形成东北平原、内蒙古中西部地区、塔克拉玛干沙漠和塔里木盆地4个高值中心,而云南地区和西藏南部上空的CO2值偏低。与中国地区8年平均CO2体积分数变化特征大体一致,每月(8年平均值)分布趋势也呈北部地区和东部地区高而南方体积分数值相对低的特征。CO2月平均体积分数的最高值一般出现在每年的4月或者5月,而每年的最低值则出现在每年的1月。对流层中层CO2体积分数呈现明显季节变化,总体上来说,从2003年到2010年这8年中,平均春、夏两季对流层中CO2含量较高,而秋、冬季CO2低于春夏两季。 Based on the data come form NASA(National Aeronautics and Space Administration)'s official AIRS(Atmosphere InfraRed Sounder) mid-troposphere(500 hPa) CO2 retrieval product,this paper analyzes the temporal and spatial patterns of the tropospheric carbon dioxide from 2003 to 2010 in China.All data used in this paper are AIRS Level 3 products with spatial resolution of 2° by 2.5°.After the systematic analysis of the data we find that the spatial distribution of the average concentration of CO2is very uneven,the highest CO2level is in the northern China with significant enhancements in 35°-45° N range.Northeast Plain,Inner Mongolia,the Taklimakan Desert and the Tarim Basin are four high concentration centers of this region.Yunnan province and southern Tibet have lower concentration level of CO2.The spatial distributions of monthly average CO2concentration of 8 years also have the similar trend.The higher concentration levels are occurred in northern and eastern China and the lower concentration level is in southern China.Middle troposphere CO2 concentration also has significant seasonal variation in China.The highest level in China almost occurred in April or May,and the lowest level always happened in January.In general,form 2003 to 2010 the concentrations of CO2in the mid troposphere are higher in spring and summer than in autumn and winter.
出处 《生态环境学报》 CSCD 北大核心 2012年第7期1266-1270,共5页 Ecology and Environmental Sciences
基金 国家科技支撑项目“应对全球环境变化综合支撑技术”研究子课题(2007BAC03A12-6-1)
关键词 对流层CO2 AIRS 时空分布 mid-troposphere C02 AIRS temporal and spatial distribution
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  • 1陈玉敏,唐伟,刘雪原,刘洪利,米潭,詹宇.基于卫星遥感的四川省XCO_(2)高分辨率时空分布[J].环境科学与技术,2023,46(2):133-140. 被引量:4
  • 2张兴赢,张鹏,方宗义,邱红,李晓静,张艳.应用卫星遥感技术监测大气痕量气体的研究进展[J].气象,2007,33(7):3-14. 被引量:64
  • 3Fan S,Gloor M,Mahlman J,et al.A large terrestrial carbon sink in north america implied by atmospheric and oceanic carbon dioxide data and models[J].Science,1998,282(5388):442-446. 被引量:1
  • 4Aumann H H,Chahine M T,Gautier C,et al.AIRS/AMSU/HSB on the aqua mission:Design,science objectives,data products,and processing systems[J].IEEE Transactions on Geoscience and Remote Sensing,2003,41(2):253-264. 被引量:1
  • 5Buchwitz M,de Beek R,No?l S,et al.Atmospheric carbon gases retrieved from SCIAMACHY by WFM-DOAS:Version 0.5 CO and CH4 and impact of calibration improvements on CO2 retrieval[J].Atmospheric Chemistry and Physics,2006,6(9):2727-2751. 被引量:1
  • 6Crevoisier C,Chédin A,H Matsueda,et al.First year of upper tropospheric integrated content of CO2 from IASI hyperspectral infrared observations[J].Atmospheric Chemistry and Physics,2009,9(14):4797-4810. 被引量:1
  • 7Yokota T,Yoshida Y,Eguchi N,et al.Global concentrations of CO2 and CH4 retrieved from GOSAT:First preliminary results[J].Scientific Online Letters on the Atmosphere,2009(5):160-163. 被引量:1
  • 8Crisp D,Atlas R M,Breon F M,et al.The orbiting carbon observatory (OCO) mission[J].Advances in Space Research,2004,34(4):700-709. 被引量:1
  • 9崔伟宏,S.弗雷德·辛格,万森·库尔提欧,等.自然是气候变化的主要驱动因素[M].北京:中国科学技术出版社,2012,154-178. 被引量:1
  • 10朱小花,王荣辉.基于GIS的开发区土地集约利用潜力微观评价及空间分异规律研究[C].第十三届华东六省一市测绘学会学术交流会,中国江苏南京,2011,179-182. 被引量:1

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