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Exploring spatiotemporal patterns of PM2.5 in China based on ground-level observations for 190 cities

机译:基于对190个城市的地面观测,探索中国PM2.5的时空格局

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Whereas air pollution in many Chinese cities has reached epidemic levels in recent years, limited research has explored the spatial and temporal patterns of fine air particles such as PM2.5, or particulate matter with diameter smaller than 2.5 mu m, using nationally representative data. This article applied spatial statistical approaches including spatial interpolation and spatial regression to the analysis of ground-level PM2.5 observations for 190 Chinese cities in 2014 obtained from the Chinese Air Quality Online Monitoring Platform. Results of this article suggest that most Chinese cities included in the dataset recorded severe levels of PM2.5 in excess of the WHO's interim target and cities in the North China Plain had the highest levels of PM2.5 regardless of city size. Spatially interpolated maps of PM2.5 and population-weighted PM2.5 indicate vast majority of China's land and population was exposed to disastrous levels of PM2.5 concentrations. The regression results suggest that PM2.5 in a city was positively related to its population size, amount of atmospheric pollutants, and emissions from nearby cities, but inversely related to precipitation and wind speed. Findings from this research can shed new light on the complex spatiotemporal patterns of PM2.5 throughout China and provide insights into policies aiming to mitigate air pollution in China. (C) 2016 Elsevier Ltd. All rights reserved.
机译:近年来,尽管许多中国城市的空气污染已达到流行水平,但有限的研究却利用全国代表性的数据,探索了诸如PM2.5或直径小于2.5微米的颗粒物等细小空气颗粒的时空分布。本文将包括空间插值和空间回归在内的空间统计方法应用于从中国空气质量在线监测平台获得的2014年中国190个城市的地面PM2.5观测值分析。本文的结果表明,数据集中包括的大多数中国城市记录的PM2.5严重水平超过了世卫组织的中期目标,而无论城市规模如何,华北平原的城市都具有最高的PM2.5水平。 PM2.5和人口加权PM2.5的空间插值地图显示,中国绝大多数土地和人口都遭受PM2.5浓度的灾难性影响。回归结果表明,一个城市的PM2.5与人口规模,大气污染物数量和附近城市的排放量呈正相关,而与降水量和风速则呈负相关。这项研究的发现可以为中国各地PM2.5的复杂时空格局提供新的启示,并为旨在减轻中国空气污染的政策提供见解。 (C)2016 Elsevier Ltd.保留所有权利。

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