首页> 外文会议>Asian conference on remote sensing;ACRS 2007 >REMOTE SENSING MEASUREMENTS OF AEROSOL OPTICAL THICKNESS AND CORRELATION WITH IN-SITU AIR QUALITY PARAMETERS DURING A HAZE EPISODE IN THAILAND
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REMOTE SENSING MEASUREMENTS OF AEROSOL OPTICAL THICKNESS AND CORRELATION WITH IN-SITU AIR QUALITY PARAMETERS DURING A HAZE EPISODE IN THAILAND

机译:泰国霾发生过程中气溶胶光学厚度的遥感测量及其与现场空气质量参数的关系。

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Thailand has experienced one of its worst hazes in 2007 due to intensive forest fires and slash-and-burn farming. The air quality monitoring stations and meteorological stations in Thailand provide valuable, concurrent information on the air quality during any period of the year and properties such as the concentrations of sulphur dioxide, nitrogen oxide, carbon monoxide, ozone and particulate mass (PMio) have been routinely measured during the haze event. However, the limited coverage of these monitoring stations greatly constrains our ability to study and monitor the spatial and temporal variability of the haze in areas lacking monitoring stations. As such, in this paper, we combine the standard in-situ measurements of PM_(10) with remote sensing imagery obtained from the Moderate Resolution Imaging Spectroradiometer (MODIS) on board the Terra and Aqua satellites. Firstly, the columnar aerosol optical thickness (AOT) is derived from the MODIS imagery for regions where PM_(10) measurements are available. Secondly, a correlation between AOT and PM_(10) measurements is established, taking into consideration the inherent experimental errors that occur during in-situ measurements and the accuracy of MODIS AOT retrieval product. With this combined approach, we expect to enhance and complement the current capabilities on the monitoring of air quality and extend it to areas not yet covered by monitoring stations during the haze period.
机译:由于森林大火和砍伐和焚烧农业,泰国在2007年经历了最严重的雾霾之一。泰国的空气质量监测站和气象站可提供有关一年中任何时期的空气质量的有价值的并发信息,并且诸如二氧化硫,一氧化氮,一氧化碳,臭氧和颗粒质量(PMio)的浓度等特性已经得到了认可。在霾事件期间进行常规测量。但是,这些监测站的覆盖范围有限,极大地限制了我们在缺乏监测站的地区研究和监测霾的时空变化的能力。因此,在本文中,我们将PM_(10)的标准现场测量结果与从Terra和Aqua卫星上的中等分辨率成像光谱仪(MODIS)获得的遥感图像相结合。首先,柱状气溶胶光学厚度(AOT)是从MODIS影像中获得PM_(10)测量值可用的区域得出的。其次,考虑到原位测量过程中发生的固有实验误差以及MODIS AOT检索产品的准确性,建立了AOT和PM_(10)测量值之间的相关性。通过这种组合方法,我们希望增强和补充当前的空气质量监测能力,并将其扩展到雾霾时期监测站尚未覆盖的区域。

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