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An Improved Method for Monitoring Fine Particulate Matter Mass Concentrations via Satellite Remote Sensing

机译:一种通过卫星遥感监测细颗粒物质浓度的改进方法

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Ground level monitoring of Particulate Matter (PM) is limited by spatial coverage and resolution, in spite of possessing high temporal resolution and accuracy. Atmospheric Aerosol Optical Depth (AOD), a product of space-borne remote sensing, has shown significant potential for estimating ground level PM concentrations. Several approaches have been used to improve the correlation between AOD-PM by providing corrections for the aerosol vertical profile and ground level humidity. However, the effects of the vertical profile of humidity and aerosol size on the AOD-PM relationship requires further study. In this paper, we propose a method for developing an AOD-PM2.5 relationship by retrieving the vertical profile of relative humidity via ground observation data and aerosol size distribution in Beijing. Moreover, a series of Hanel growth coefficients (γ) are applied to determine the specific value, which maximizes the correlation. The results show that applying our proposed method can improve the correlation from R = 0.610 to R = 0.707 for Terra and R = 0.707 to 0.752 for Aqua. The best correlations were obtained for γ = 1.2 and 1.3 for Terra and Aqua, respectively. A good correlation (R = 0.8) between ground based and MODIS based PM2.5 measurements, together with employing MODIS to predict true air pollution levels (65% accuracy), suggests that the vertical profile of RH derived via ground level observation and aerosol size should be considered and applied to models in future studies, which utilize satellite data for air pollution monitoring and controlling.
机译:尽管具有较高的时间分辨率和精度,但对颗粒物(PM)的地面监测仍受空间覆盖率和分辨率的限制。星载遥感产品大气气溶胶光学深度(AOD)在估算地面PM浓度方面显示出巨大潜力。通过提供对气溶胶垂直剖面和地面湿度的校正,已经使用了几种方法来改善AOD-PM之间的相关性。但是,湿度和气溶胶粒径的垂直分布对AOD-PM关系的影响需要进一步研究。本文提出了一种通过地面观测数据和北京地区气溶胶粒径分布反演垂直相对湿度分布来建立AOD-PM2.5关系的方法。此外,一系列Hanel生长系数(γ)用于确定特定值,从而使相关性最大化。结果表明,采用我们提出的方法可以将相关性从Terra的R = 0.610改进为R = 0.707,对于Aqua的相关性从R = 0.707改进为0.752。分别针对Terra和Aqua的γ= 1.2和1.3获得了最佳相关性。地面和基于MODIS的PM2.5测量值之间具有良好的相关性(R = 0.8),并采用MODIS预测真实的空气污染水平(准确度为65%),这表明通过地面观测和气溶胶尺寸得出的RH的垂直剖面应考虑并将其应用于未来的研究模型中,这些模型利用卫星数据进行空气污染监测和控制。

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