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A critical assessment of high-resolution aerosol optical depth retrievals for fine particulate matter predictions

机译:对用于精细颗粒物预测的高分辨率气溶胶光学深度检索的关键评估

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Recently, a new Multi-Angle Implementation of Atmospheric Correction (MAIAC) algorithm was developed for the MODerate Resolution Imaging Spectroradiometer (MODIS), which provides aerosol optical depth (AOD) at 1 km resolution. The relationship between MAIAC AOD and PM_(2.5) as measured by 84 EPA ground monitoring stations in the entire New England and the Harvard super site during 2002-2008 was investigated and also compared to the AOD-PM_(2.5) relationship using conventional MODIS 10 km AOD retrieval from Aqua platform (MYD04) for the same days and locations. The correlations for MYD04 and for MAIAC are r =0.62 and 0.65, respectively, suggesting that AOD is a reasonable proxy for PM_(2.5) ground concentrations. The slightly higher correlation coefficient (r) for MAIAC can be related to its finer resolution resulting in better correspondence between AOD and EPA monitoring sites. Regardless of resolution, AOD-PM_(2.5) relationship varies daily, and under certain conditions it can be negative (due to several factors such as an EPA site location (proximity to road) and the lack of information about the aerosol vertical profile). By investigating MAIAC AOD data, we found a substantial increase, by 50-70% in the number of collocated AOD-PM_(2.5) pairs, as compared to MYD04, suggesting that MAIAC AOD data are more capable in capturing spatial patterns of PM_(2.5). Importantly, the performance of MAIAC AOD retrievals is slightly degraded but remains reliable under partly cloudy conditions when MYD04 data are not available, and it can be used to increase significantly the number of days for PM_(2.5) spatial pattern prediction based on satellite observations.
机译:最近,为MODerate分辨率成像光谱仪(MODIS)开发了一种新的多角度大气校正(MAIAC)算法,该算法可提供1 km分辨率的气溶胶光学深度(AOD)。研究了2002-2008年整个新英格兰和哈佛超级站点的84个EPA地面监测站测得的MAIAC AOD和PM_(2.5)之间的关系,并将其与使用常规MODIS 10的AOD-PM_(2.5)关系进行了比较在相同的日期和位置从Aqua平台(MYD04)检索km AOD。 MYD04和MAIAC的相关性分别为r = 0.62和0.65,这表明AOD是PM_(2.5)地面浓度的合理替代。 MAIAC的较高相关系数(r)可能与其更精细的分辨率有关,从而导致AOD和EPA监测点之间的对应性更好。不管分辨率如何,AOD-PM_(2.5)关系每天都会变化,并且在某些情况下可能是负的(由于EPA站点位置(靠近道路)等多种因素,并且缺乏有关气溶胶垂直剖面的信息)。通过调查MAIAC AOD数据,我们发现与MYD04相比,并置的AOD-PM_(2.5)对的数量大幅增加了50-70%,这表明MAIAC AOD数据更能够捕获PM_( 2.5)。重要的是,当没有MYD04数据时,MAIAC AOD检索的性能会稍有下降,但在部分多云的条件下仍可保持可靠,并且可用于根据卫星观测值显着增加PM_(2.5)空间模式预测的天数。

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