首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Time-dependent inversion estimates of global biomass-burning CO emissions using Measurement of Pollution in the Troposphere (MOPITT) measurements
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Time-dependent inversion estimates of global biomass-burning CO emissions using Measurement of Pollution in the Troposphere (MOPITT) measurements

机译:时间反演估计全球生物质利用测量CO排放的对流层污染(测量)测量

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摘要

We present an inverse-modeling analysis of CO emissions using column CO retrievals from the Measurement of Pollution in the Troposphere (MOPITT) instrument and a global chemical transport model (GEOS-CHEM). We first focus on the information content of MOPITT CO column retrievals in terms of constraining CO emissions associated with biomass burning and fossil fuel/biofuel use. Our analysis shows that seasonal variation of biomass-burning CO emissions in Africa, South America, and Southeast Asia can be characterized using monthly mean MOPITT CO columns. For the fossil fuel/biofuel source category the derived monthly mean emission estimates are noisy even when the error statistics are accurately known, precluding a characterization of seasonal variations of regional CO emissions for this source category. The derived estimate of CO emissions from biomass burning in southern Africa during the June–July 2000 period is significantly higher than the prior estimate (prior, 34 Tg; posterior, 13 Tg). We also estimate that emissions are higher relative to the prior estimate in northern Africa during December 2000 to January 2001 and lower relative to the prior estimate in Central America and Oceania/Indonesia during April–May and September–October 2000, respectively. While these adjustments provide better agreement of the model with MOPITT CO column fields and with independent measurements of surface CO from National Oceanic and Atmospheric Administration Climate Monitoring and Diagnostics Laboratory at background sites in the Northern Hemisphere, some systematic differences between modeled and measured CO fields persist, including model overestimation of background surface CO in the Southern Hemisphere. Characterizing and accounting for underlying biases in the measurement model system are needed to improve the robustness of the top-down estimates.
机译:我们提出的反演模拟分析有限公司使用列有限公司检索的排放测量的对流层污染测量仪和全球化学运输模型(GEOS-CHEM)。测量有限公司列的信息内容检索的约束CO排放与生物质燃烧和化石燃料和生物燃料的使用。生物质CO的季节性变化排放在非洲、南美和东南亚亚洲可以使用每月为特征的意思测量有限公司列。派生的每月平均排放源类别估计噪声即使错误统计数据准确,从而排除特征的季节性变化这个区域CO排放源类别。从生物质能有限公司排放的派生的估计燃烧在6 -在非洲南部2000年是明显高于之前估计(34岁的前Tg;我们也估计排放较高相对于之前的估计在非洲北部在2000年12月到2001年1月和低相对于之前的估计在中美洲和大洋洲/印尼在4分别2000年9 ~ 10月。模型的调整提供更好的协议与测量有限公司列字段和独立从国家海洋测量表面CO和大气管理局的气候监测背景和诊断实验室网站北半球,一些系统建模和测量有限公司之间的差异领域持续,包括模型的高估背景表面CO在南半球。描述和会计基础偏差度量模型系统是必要的提高鲁棒性的自顶向下估计。

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