Journal of Guangxi Normal University(Natural Science Edition) ›› 2019, Vol. 37 ›› Issue (1): 187-196.doi: 10.16088/j.issn.1001-6600.2019.01.022

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Spatial-temporal Distribution Characteristics of Air Quality in Chinese Cities Based on the AQI Index

XU Yanting1,LIU Xingzhao1*,WANG Zhenbo2   

  1. 1.College of Landscape Architecture, Fujian Agriculture and Forestry University, Fuzhou Fujian 350002, China;
    2.Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101,China
  • Received:2018-03-25 Online:2019-01-20 Published:2019-01-08

Abstract: Based on the daily air quality index (AQI) data of 367 cities published by the Chinese Ministry of Environmental Protection from 2014 to 2016, a series of spatial data statistical models such as spatial autocorrelation model, kernel density estimation model and spatial interpolation method are comprehensively used. The results show that: ①AQI of cities in China decreased from 2014 to 2016, and the number of cities with air pollution decreased, indicating that the air quality of cities had been improved. The seasonal mean AQI of China is as follows: winter, spring, autumn, summer. The pattern of spatial heterogeneity is not obvious in summer and autumn, while the spatial pattern is obvious in spring and winter, showing a special seasonal distribution pattern of high level in the north and low level in the south, and high level in inland and low level along the coastal. ②The spatial distribution of AQI spatial distribution in China′s cities shows a continuous enhanced spatial agglomeration situation, forming a moderate polluted area with the core of the three provinces of Hebei, Shandong and Henan provinces and spreading to the middle north of Hubei province, and the medium pollution area with Urumqi and Artux city as the core. The Southern China area with the core of the Pearl River Delta city group is the stable area of better air quality. ③From the kernel density estimation map, it can be found that the spatial distribution pattern of China′s urban AQI is characterized by six main density core regions and three secondary core density regions, while the basic pattern has changed significantly in some areas in 2014-2016. This paper comprehensively analyzes the spatial distribution characteristics of urban air quality based on different time scales, aiming to provide scientific basis for developing relevant air quality control policies in various cities of China.

Key words: AQI index, spatial interpolation, spatial autocorrelation, kernel density estimation, China

CLC Number: 

  • X51
[1] 刘华军, 杜广杰.中国城市大气污染的空间格局与分布动态演进:基于161个城市AQI及6种分项污染物的实证[J]. 经济地理,2016,36(10):33-38.
[2] 肖建能,杜国明,施益强,等. 厦门市环境空气污染时空特征及其与气象因素相关分析[J]. 环境科学学报,2016,36(9):3363-3371.
[3] HU Y, CHANG M E, RUSSELL A G, et al. Using synoptic classification to evaluate an operational air quality forecasting system in Atlanta[J]. Atmospheric Pollution Research, 2010, 1(4):280-287.
[4] HU J, YING Q, CHEN J, et al. Particulate air quality model predictions using prognostic vs. diagnostic meteorology in central California[J]. Atmoapheric Environment, 2010, 44(2):215-226.
[5] 董继元,王式功,尚可政.降水对中国部分城市空气质量的影响分析[J].干旱区资源与环境,2009,23(12):43-48.
[6] 蔺雪芹,王岱.中国城市空气质量时空演化特征及社会经济驱动力[J]. 地理学报,2016,71(8):1357-1371.
[7] 王振波, 方创琳, 许光, 等. 2014 年中国城市PM2.5浓度的时空变化规律[J]. 地理学报, 2015, 70(11): 1720-1734.
[8] 陈优良,陶天慧,丁鹏.长江三角洲城市群空气质量时空分布特征[J]. 长江流域资源与环境,2017,26(5):687-697.
[9] 谭成好,陈昕,赵天良,等.空气质量数值模型的构建及应用研究进展[J].环境监控与预警,2014,6(6):1-7.
[10] 王占山,李晓倩,王宗爽,等.空气质量模型CMAQ的国内外研究现状[J].环境科学与技术,2013,36(S1):386-391.
[11] 沈双全,杜越,徐丽君,等. 2015年我国城市空气质量时空特征分析[J]. 环境与健康杂志, 2017,34(3):213-215,282.
[12] 闫星光,吴琳娜,周涌, 等.喀斯特地区月均降水协克里金插值方法研究:以贵州省为例[J]. 云南大学学报(自然科学版),2017,39(3):432-439.
[13] 吴昌广,林德生,周志翔,等, 三峡库区降水量的空间插值方法及时空分布[J]. 长江流域资源与环境,2010,19(7):752-758.
[14] 孙家仁,许振成,刘煜,等. 气候变化对环境空气质量影响的研究进展[J]. 气候与环境研究,2011,16(6):805-814.
[15] 韦仕川,熊昌盛,栾乔林,等.基于耕地质量指数局部空间自相关的耕地保护分区[J]. 农业工程学报,2014,30(18):249-256.
[16] 康璟瑶,章锦河,胡欢,等.中国传统村落空间分布特征分析[J]. 地理科学进展,2016,35(7):839-850.
[17] 靖常峰,魏海洋,戴培培,等.空间核密度的城市域雨量监测计选址方法[J]. 测绘科学,2015,40(6):106-109,145.
[18] 胡蓓蓓,宗刚.非参数核密度估计在异方差模型中的应用[J]. 数量经济技术经济研究,2014,31(10):151-161.
[19] 熊梅.中国传统村落空间分布及其影响因素[J]. 北京理工大学学报(社会科学版),2014,16(5):153-158.
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