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Retrieval of Aerosol Optical Thickness using MODIS 500 × 500m{sup}2, a study in Hong Kong and Pearl River Delta region

机译:使用MODIS 500×500M {SUP} 2,香港和珠江三角洲地区的研究检索气溶胶光学厚度

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Aerosol detection and monitoring by satellite observations has been substantially developed over past decades. While several state-of-art aerosol retrieval techniques provide aerosol properties in global scale, the more detail characteristics remain unknown because most of the satellite sensors are limited to 1km resolution observations. However, a new aerosol retrieval algorithm for the Moderate Resolution Imaging Spectroradiometer (MODIS) 500m resolution data is developed to retrieve aerosol properties over land, which helps on addressing the aerosol climatic issues in local/urban scale. The rationale of our technique is to first estimate the aerosol reflectances by decomposing the top-of-atmosphere (TOA) reflectance from surface reflectance and Rayleigh path radiance. The modified Minimum Reflectance Technique (MRT) is adopted for the determination of the seasonal surface reflectances. A good agreement is revealed between the surface reflectances of MRT images and MODIS land surface reflectance products (MOD09), with a strong correlation of 0.9. Moreover, comprehensive look up tables (LUT) are constructed with the considerations of various aerosol optical properties and sun-viewing geometry in the radiative transfer calculations. The resulting 500m aerosol optical thickness (AOT) data are highly correlated (r=0.94) with the AERONET sunphotometer observations in Hong Kong. This study demonstrates the applicability of aerosol retrieval at fine resolution in urban areas, which can assist the study of aerosol loading distribution and the impact of transient pollution on urban air quality. In addition, the MODIS 500m AOT images can also be used to study the cross-boundary aerosols and feasible on locating the pollutant sources in the Pearl River Delta (PRD) region.
机译:卫星观测的气溶胶检测和监测已在过去几十年中显着发展。虽然几种最先进的气溶胶检索技术在全球范围内提供气溶胶特性,但更详细的特性仍然未知,因为大多数卫星传感器限制在分辨率1km的分辨率观察中。然而,开发了一种适用于适度分辨率成像分光镜(MODIS)500M分辨率数据的新的气溶胶检索算法以检索土地的气溶胶特性,有助于解决当地/城市规模的气溶胶气候问题。我们技术的理由首先通过将大气层(TOA)反射率与表面反射率和Rayleigh路径辐射分解来估计气溶胶反射。采用改进的最小反射技术(MRT)来确定季节性表面反射。 MRT图像和MODIS土地表面反射产品(MOD09)的表面反射之间的良好一致性揭示了0.9的强相关性。此外,通过考虑辐射转移计算的各种气溶胶光学性质和太阳观察几何形状的考虑来构建综合查找表(LUT)。由此产生的500M气溶胶光学厚度(AOT)数据具有高度相关的(R = 0.94),在香港的AERONET阳光计观测中具有高度相关的(r = 0.94)。本研究展示了气溶胶检索在城市地区的良好分辨率下的适用性,可以帮助研究气溶胶负载分布和瞬态污染对城市空气质量的影响。此外,MODIS 500M AOT图像也可用于研究跨界气溶胶和可行的在珠江三角洲(PRD)区域中定位污染物来源。

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