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Semi-Physical Estimates of National-Scale PM 10 Concentrations in China Using a Satellite-Based Geographically Weighted Regression Model

机译:基于卫星的地理加权回归模型对中国国家PM 10浓度的半物理估算

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The estimation of ambient particulate matter with diameter less than 10 μm (PM 10 ) at high spatial resolution is currently quite limited in China. In order to make the distribution of PM 10 more accessible to relevant departments and scientific research institutions, a semi-physical geographically weighted regression (GWR) model was established in this study to estimate nationwide mass concentrations of PM 10 using easily available MODIS AOD and NCEP Reanalysis meteorological parameters. The results demonstrated that applying physics-based corrections could remarkably improve the quality of the dataset for better model performance with the adjusted R 2 between PM 10 and AOD increasing from 0.08 to 0.43, and the fitted results explained approximately 81% of the variability in the corresponding PM 10 mass concentrations. Annual average PM 10 concentrations estimated by the semi-physical GWR model indicated that many residential regions suffer from severe particle pollution. Moreover, the deviation in estimation, which primarily results from the frequent changes in elevation, the spatially heterogeneous distribution of monitoring sites, and the limitations of AOD retrieval algorithm, was acceptable. Therefore, the semi-physical GWR model provides us with an effective and efficient method to estimate PM 10 at large scale. The results could offer reasonable estimations of health impacts and provide guidance on emission control strategies in China.
机译:目前在中国,以高空间分辨率估算直径小于10μm(PM 10)的环境颗粒物非常有限。为了使相关部门和科研机构更容易获取PM 10的分布,本研究建立了半物理地理加权回归(GWR)模型,以使用易于获得的MODIS AOD和NCEP估算全国PM 10的质量浓度。重新分析气象参数。结果表明,应用基于物理的校正可以显着提高数据集的质量,从而获得更好的模型性能,其中PM 10和AOD之间的调整后R 2从0.08增加到0.43,拟合结果解释了大约81%的变化。相应的PM 10质量浓度。通过半物理GWR模型估算的年平均PM 10浓度表明,许多居民区遭受了严重的颗粒污染。此外,可接受的估计偏差是可以接受的,该偏差主要是由于高程的频繁变化,监测地点的空间异质分布以及AOD检索算法的局限性造成的。因此,半物理GWR模型为我们提供了一种有效且高效的方法来大规模估算PM 10。研究结果可以提供合理的健康影响估计,并为中国的排放控制策略提供指导。

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