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ESTIMATING PM2.5 IN THE BEIJING-TIANJIN-HEBEI REGION USING MODIS AOD PRODUCTS FROM 2014 TO 2015

机译:2014年至2015年北京天津 - 河北地区估计PM2.5在北京 - 天津 - 河北地区

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Fine particulate matter with a diameter less than 2.5 μm (PM2.5) has harmful impacts on regional climate, economic development and public health. The high PM2.5 concentrations in China's urban areas are mainly caused by the combustion of coal and gasoline, industrial pollution and unknown/uncertain sources. The Beijing-Tianjin-Hebei (BTH) region with a land area of 218,000 km~2, which contains 13 cities, is the biggest urbanized region in northern China. The huge population (110 million, 8% of the China's population), local heavy industries and vehicle emissions have resulted in severe air pollution. Traditional models have used 10 km Moderate-resolution Imaging Spectroradiometer (MODIS) Aerosol Optical Depth (AOD) products and proved the statistical relationship between AOD and PM2.5. In 2014, the 3 km MODIS AOD product was released which made PM2.5 estimations with a higher resolution became possible. This study presents an estimation on PM2.5 distributions in the BTH region from September 2014 to August 2015 by combining the MODIS satellite data, ground measurements of PM2.5, meteorological parameters and social-economic factors based on the geographically weighted regression model. The results demonstrated that the 10 km AOD product provided results with a slightly higher accuracy although the 3 km AOD product could provide more information about the spatial variations of PM2.5 estimations. Additionally, compared with the global regression, the geographically weighed model was able to improve the estimation results.
机译:直径小于2.5μm的细颗粒物质(PM2.5)对区域气候,经济发展和公共卫生有害影响。中国城市地区的高PM2.5浓度主要是由煤炭和汽油,工业污染和未知/不确定的燃烧引起的。北京天津 - 河北(BTH)地区的土地面积218,000公里〜2,其中包含13个城市,是中国北方最大的城市化地区。庞大的人口(1.1亿,8%的中国人口),当地重工业和车辆排放导致了严重的空气污染。传统型号使用了10公里的中频分辨率成像光谱辐射器(MODIS)气雾光学深度(AOD)产品,并证明了AOD和PM2.5之间的统计关系。 2014年,发布了3公里的MODIS AOD产品,该估计成为可能更高的分辨率。本研究提出了2014年9月至2015年8月至2015年8月在2015年至2015年5月的PM2.5分布的估计,基于地理加权回归模型的Modis卫星数据,地面测量,气象参数和社会经济因素。结果表明,10公里的AOD产品提供了略高的精度结果,尽管3公里AOD产品可以提供有关PM2.5估计的空间变化的更多信息。此外,与全球回归相比,地理上称重的模型能够改善估计结果。

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