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Spatiotemporal Distribution of Air Pollution Characteristics in Jiangsu Province, China

机译:中国江苏省空气污染特征的时空分布

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Following the deepening of climate change and the increasing industrialization in recent years, the problem of air pollution in cities has become increasingly prominent. Based on the data of air pollutants and meteorological elements in Jiangsu Province, China (2013–2017), we analyze the spatiotemporal characteristics of air pollution. The results show that the air-quality index (AQI) in Jiangsu Province decreased from 2013 to 2017 and the highest AQI is in winter and the lowest in the summer, while its values in coastal cities of Jiangsu are less than those of inland cities. For the temporal distribution of primary pollutants, PM2.5, PM10, SO2, NO2, and CO present the same trend under seasonal and monthly time scales, i.e., winter is higher and summer is lower; however, the other secondary pollutant, O3, presents opposite characteristics under the same time scale: it has higher concentration levels in summer and lower in winter. For the spatial distribution, PM2.5 and PM10 are in good concord: the higher values are found in the west of Jiangsu Province and lower in the east. For the spatial distribution of NO2, this presents higher concentrations in south and lower concentrations in north according to the position of Yangzi River, while the distribution of O3 concentration is opposite to that of NO2. The meteorological elements selected are related to air pollution, the AQI is significantly negatively correlated with monthly temperature (including average, minimum, and maximum temperatures), monthly average water vapor pressure, monthly precipitation, and monthly sunshine duration; the correlation coefficients are –0.852, –0.846, –0.850, –0.797, –0.727, and –0.599, respectively. As far as the relationships between air pollutions are concerned, there is a significant positive correlation between AQI, PM2.5, PM10, SO2, and NO2, while O3 is remarkably negatively correlated with other pollutants and AQI. The most prominent correlations are distinguished into two groups: one is AQI, PM2.5, and PM10, with correlation coefficients of 0.876 and 0.966, and the other is SO2, NO2, with correlation coefficient of about 0.9.
机译:在近年来加深气候变化和产业化日益增加之后,城市空气污染问题变得越来越突出。基于江苏省的空气污染物和气象元素数据(2013-2017),分析了空气污染的时空特征。结果表明,江苏省的空气质量指数(AQI)从2013年到2017年下降,最高的AQI是冬季和夏季最低的,而其在江苏沿岸城市的价值低于内陆城市的价值。对于初级污染物的时间分布,PM2.5,PM10,SO2,NO2和CO在季节性和每月时间尺度下呈现相同的趋势,即,冬季较高,夏季较低;然而,其他次级污染物O3呈现相反的特征在同一时间标度下:冬季夏季浓度较高,冬季较低。对于空间分布,PM2.5和PM10处于良好的康科德:在江苏省西部和东部较低的价值观。对于NO2的空间分布,根据阳胫北部的北方南部和较低浓度的浓度呈现出更高的浓度,而O3浓度的分布与NO2的分布相反。选择的气象元素与空气污染有关,AQI与月度温度(包括平均,最小和最大温度),月平均水蒸气压,每月降水量和每月阳光持续时间显着呈负相关;相关系数分别为-0.852,-0.846,-0.850,-0.797,-0.727和-0.599。就涉及空气污染之间的关系而言,AQI,PM2.5,PM10,SO2和NO2之间存在显着的正相关,而O3与其他污染物和AQI具有显着呈负相关。最突出的相关性与两组:一个是AQI,PM2.5和PM10,相关系数为0.876和0.966,另一个是SO2,NO2,相关系数约为0.9。

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