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首页> 外文期刊>Journal of the air & waste management association >Monthly analysis of PM ratio characteristics and its relation to AOD
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Monthly analysis of PM ratio characteristics and its relation to AOD

机译:月率特性及其与AOD的关系的月度分析

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摘要

Airborne particulate matter (PM) is derived from diverse sources-natural and anthropogenic. Climate change processes and remote sensing measurements are affected by the PM properties, which are often lumped into homogeneous size fractions that show spatiotemporal variation. Since different sources are attributed to different geographic locations and show specific spatial and temporal PM patterns, we explored the spatiotemporal characteristics of the PM_(2.5)/PM_(10) ratio in different areas. Furthermore, we examined the statistical relationships between AERONET aerosol optical depth (AOD) products, satellite-based AOD, and the PM ratio, as well as the specific PM size fractions. PM data from the northeastern United States, from San Joaquin Valley, CA, and from Italy, Israel, and France were analyzed, as well as the spatial and temporal co-measured AOD products obtained from the MuftiAngle Implementation of Atmospheric Correction (MAIAC) algorithm. Our results suggest that when both the AERONET AOD and the AERONET fine-mode AOD are available, the AERONET AOD ratio can be a fair proxy for the ground PM ratio. Therefore, we recommend incorporating the fine-mode AERONET AOD in the calibration of MAIAC. Along with a relatively large variation in the observed PM ratio (especially in the northeastern United States), this shows the need to revisit MAIAC assumptions on aerosol microphysical properties, and perhaps their seasonal variability, which are used to generate the look-up tables and conduct aerosol retrievals. Our results call for further scrutiny of satellite-borne AOD, in particular its errors, limitations, and relation to the vertical aerosol profile and the particle size, shape, and composition distribution. This work is one step of the required analyses to gain better understanding of what the satellite-based AOD represents. Implications: The analysis results recommend incorporating the fine-mode AERONET AOD in MAIAC calibration. Specifically, they indicate the need to revisit MAIAC regional aerosol microphysical model assumptions used to generate look-up tables (LUTs) and conduct retrievals. Furthermore, relatively large variations in measured PM ratio shows that adding seasonality in aerosol microphysics used in LUTs, which is currently static, could also help improve accuracy of MAIAC retrievals. These results call for further scrutiny of satellite-borne AOD for better understanding of its limitations and relation to the vertical aerosol profile and particle size, shape, and composition.
机译:空气中的颗粒物(PM)来自自然和人为的多种来源。气候变化过程和遥感测量受PM特性的影响,PM特性通常被归纳为均一的大小分数,这些分数显示出时空变化。由于不同的来源归因于不同的地理位置并显示出特定的时空PM模式,因此我们探索了PM_(2.5)/ PM_(10)比在不同区域的时空特征。此外,我们检查了AERONET气溶胶光学深度(AOD)产品,基于卫星的AOD,PM比率以及特定的PM尺寸分数之间的统计关系。分析了来自美国东北部,加利福尼亚州圣华金河谷以及意大利,以色列和法国的PM数据,以及从MuftiAngle实施大气校正(MAIAC)算法获得的时空共同测量的AOD产品。我们的结果表明,当同时提供AERONET AOD和AERONET精细模式AOD时,AERONET AOD比率可以合理地替代地面PM比率。因此,我们建议在MAIAC的校准中包含精细模式的AERONET AOD。除了观察到的PM比率相对较大的变化外(尤其是在美国东北部),这表明有必要重新研究关于气溶胶微物理性质的MAIAC假设,也许还应考虑其季节性变化,这些假设可用于生成查找表和进行气溶胶回收。我们的研究结果要求对卫星AOD进行进一步检查,尤其是其误差,局限性以及与垂直气溶胶剖面,粒径,形状和成分分布的关系。这项工作是进行必要分析的第一步,以便更好地了解基于卫星的AOD所代表的含义。含义:分析结果建议在MAIAC校准中合并精细模式AERONET AOD。具体而言,它们表明需要重新审视用于生成查找表(LUT)和进行检索的MAIAC区域气溶胶微物理模型假设。此外,测得的PM比率相对较大的变化表明,在LUT中使用的气溶胶微物理学中增加季节性(目前是静态的)也可以帮助提高MAIAC检索的准确性。这些结果要求进一步检查卫星传播的AOD,以更好地了解其局限性以及与垂直气溶胶剖面,粒径,形状和组成的关系。

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    Faculty of Civil and Environmental Engineering, Technion Israel Institute, Haifa, Israel,Department of Geography and Environmental Development, Ben-Gurion University, Beer Sheva, Israel;

    Faculty of Civil and Environmental Engineering, Technion Israel Institute, Haifa, Israel;

    NASA Ames Research Center, Moffett Field, CA, USA;

    NASA Ames Research Center, Moffett Field, CA, USA;

    Department of Epidemiology, Lazio Region Health Service, Rome, Italy;

    INSERM and Universite Grenoble-Alpes, IAB (U1209), Team of Environmental Epidemiology, Grenoble, France;

    NASA GSFC, Greenbelt, MD, USA;

    Department of Geography and Environmental Development, Ben-Gurion University, Beer Sheva, Israel;

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