Journal of Atmospheric and Environmental Optics ›› 2022, Vol. 17 ›› Issue (5): 506-520.
Previous Articles Next Articles
FAN Xinyi, LIAN Lishu ∗ , WANG Meng
Received:
2021-05-24
Revised:
2022-09-11
Online:
2022-09-28
Published:
2022-10-17
CLC Number:
FAN Xinyi, LIAN Lishu ∗ , WANG Meng. Characteristics of air pollution and its relationship with meteorological factors in Bohai Rim urban agglomeration[J]. Journal of Atmospheric and Environmental Optics, 2022, 17(5): 506-520.
[1] | Liu Q, Yang Y C, Liu H Y. Spatiotemporal evolution characteristics of air pollution degree in 366 cities of China [J]. Arid Land |
Geography, 2020, 43(3): 820-830. | |
刘 清, 杨永春, 刘海洋. 中国 366 个城市空气污染综合程度的时空演变特征分析 [J]. 干旱区地理, 2020, 43(3): 820-830. | |
[2] | Jiang L, Zhou H F, Bai L, et al. The spatio-temporal variation of air quality index of cities in China [J]. Economic Geography, |
20 | 18, 38(9): 87-95. |
姜 磊, 周海峰, 柏 玲, 等. 中国城市空气质量指数 (AQI) 的动态变化特征 [J]. 经济地理, 2018, 38(9): 87-95. | |
[3] | Zhou H T, Yu Y M, Gu X, et al. Characteristics of air pollution and their relationship with meteorological parameters: Northern |
versus southern cities of China [J]. Atmosphere, 2020, 11(3): 253. | |
[4] | Bai L, Jiang L, Zhou H F, et al. Spatio-temporal characteristics of air quality index and its driving factors in the Yangtze |
River economic belt: An empirical study based on Bayesian spatial econometric model [J]. Scientia Geographica Sinica, 2018, | |
38 | (12): 2100-2108. |
柏 玲, 姜 磊, 周海峰, 等. 长江经济带空气质量指数的时空特征及驱动因素分析: 基于贝叶斯空间计量模型的实证 [J]. | |
地理科学, 2018, 38(12): 2100-2108. | |
[5] | Xu L N, Li X H, Feng Z, et al. The study of characteristics of air pollution and meteorological factors in Hohhot [J]. Journal |
of Arid Land Resources and Environment, 2019, 33(6): 150-157. | |
徐丽娜, 李兴华, 冯 震, 等. 呼和浩特市大气污染特征及气象影响因子研究 [J]. 干旱区资源与环境, 2019, 33(6): 150-157. | |
[6] | Ma Y J, Cui J S, Liu X M, et al. Analysis on variation characteristics of atmospheric pollutant in a group of cities in central |
Liaoning from 1987 to 2002 [J]. Plateau Meteorology, 2005, 24(3): 428-435. | |
马雁军, 崔劲松, 刘晓梅, 等. 1987–2002 年辽宁中部城市群大气污染物变化特征分析 [J]. 高原气象, 2005, 24(3): | |
42 | 8-435. |
[7] | Peng C, Liao Y L, Zhang N X. Temporal and spatial distribution of ozone pollution in Chinese urban agglomerations [J]. |
Journal of Geo-Information Science, 2018, 20(1): 57-67. | |
彭 超, 廖一兰, 张宁旭. 中国城市群臭氧污染时空分布研究 [J]. 地球信息科学学报, 2018, 20(1): 57-67. | |
[8] | Wang Z B, Liang L W, Wang X J. Spatio-temporal evolution patterns and influencing factors of PM2.5 in Chinese urban |
agglomerations [J]. Acta Geographica Sinica, 2019, 74(12): 2614-2630. | |
王振波, 梁龙武, 王旭静. 中国城市群地区 PM2.5 时空演变格局及其影响因素 [J]. 地理学报, 2019, 74(12): 2614-2630. | |
[9] | Zhang X P, Lin M H. Comparison between two air quality index systems in study of urban air pollution in China and its |
socio-economic determinants [J]. Journal of University of Chinese Academy of Sciences, 2020, 37(1): 39-50. | |
[10] | Wei S M, Pan J H, Tuo W L. Estimation and spatial-temporal distribution characteristics of PM2.5 concentration by remote |
sensing in China in 2015 [J]. Remote Sensing Technology and Application, 2020, 35(4): 845-854. | |
魏石梅, 潘竟虎, 妥文亮. 2015 年中国 PM2.5 浓度遥感估算与时空分布特征 [J]. 遥感技术与应用, 2020, 35(4): 845-854. | |
[11] | Zhang X J, Li L, Wang H L, et al. Preliminary study on the long-term trends of ozone in urban Shanghai from 2010 to 2016 |
[J] | Acta Scientiae Circumstantiae, 2019, 39(1): 86-94. |
张小娟, 李 莉, 王红丽, 等. 2010–2016 年上海城区臭氧长时间序列变化特征初探 [J]. 环境科学学报, 2019, 39(1): 86-94. | |
[12] | Xiao Y, Tian Y Z, Xu W X, et al. Spatiotemporal pattern changes of air quality in China from 2005 to 2015 [J]. Ecology and |
Environmental Sciences, 2017, 26(2): 243-252. | |
肖 悦, 田永中, 许文轩, 等. 近 10 年中国空气质量时空分布特征 [J]. 生态环境学报, 2017, 26(2): 243-252. | |
[13] | Zhang X, Zhang Y P, Qian W M. Characteristics of ozone pollution and its meteorological factors in Shijiazhuang urban area |
[J] | Research of Environmental Sciences, 2021, 34(2): 245-253. |
张 晓, 张艳品, 钤伟妙. 石家庄市主城区臭氧污染特征及气象成因分析 [J]. 环境科学研究, 2021, 34(2): 245-253. | |
[14] | Liu X Y, Nie D Y, Zhang K, et al. Evaluation of particulate matter deposition in the human respiratory tract during winter in |
Nanjing using size and chemically resolved ambient measurements [J]. Air Qual Atmos Health, 2019, 12(5): 529-538. | |
[15] | Meng C, Cheng T H, Gu X F, et al. Contribution of meteorological factors to particulate pollution during winters in Beijing |
[J] | Science of The Total Environment, 2019, 656: 977-985. |
[16] | He J J, Gong S L, Yu Y, et al. Air pollution characteristics and their relation to meteorological conditions during 2014–2015 in |
major Chinese cities [J]. Environmental pollution, 2017, 223: 484-496. | |
[17] | Cobourn W G. Accuracy and reliability of an automated air quality forecast system for ozone in seven Kentucky metropolitan |
areas [J]. Atmospheric Environment, 2007, 41(28): 5863-5875. | |
[18] | Stadlober E, Hormann S, Pfeiler B. Quality and performance of a PM ¨ 10 daily forecasting model [J]. Atmospheric Environment, |
20 | 08, 42(6): 1098-1109. |
[19] | Hu M G, Jia L, Wang J F, et al. Spatial and temporal characteristics of particulate matter in Beijing, China using the Empirical |
Mode Decomposition method [J]. Science of the Total Environment, 2013, 458: 70-80. | |
[20] | 张萌萌, 狄乾斌. 环渤海地区三大城市群城镇化质量对比分析 [J]. 生产力研究, 2019, (7): 86-92. |
[21] | General Administration of Quality Supervision, Inspection and Quarantine of the People′ |
s Republic of China, Standardization Administration of the People′ | |
s Republic of China. Ambient air quality standard: GB 3095–2012 [S]. Beijing: China | |
Environment Science Press, 2016. | |
国家质量监督检验检疫总局, 中国国家标准化管理委员会. 环境空气质量标准: GB 3095–2012 [S]. 北京: 中国环境科学 | |
出版社, 2016. | |
[22] | Olstrup H. An Air Quality Health Index (AQHI) with different health outcomes based on the air pollution concentrations in |
Stockholm during the period of 2015–2017 [J]. Atmosphere, 2020, 11(2): 192. | |
[23] | Wang A N, Jing J L, Luo F L, et al. Analysis of AQI change characteristics and correlation with PM2.5 And PM10 in BeijingTianjin-Hebei region [C]. The International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, |
20 | 20, 42: 1041-1048. |
[24] | Liu X L, Wang X M, Li X M. Analysis on variation characteristics of air pollution in five cities in central and western Shandong |
Province during 2000–2004 [J]. Science Technology and Engineering, 2008, 8(12): 3390-3396. | |
刘新玲, 王晓明, 李小明. 2000–2004 年山东中西部五城市大气污染变化特征 [J]. 科学技术与工程, 2008, 8(12): | |
33 | 90-3396. |
[25] | Zheng X H, Li M X, Liu H, et al. Spatiotemporal characteristics of air quality and their relationships with meteorological |
factors over the Fenwei Plain [J]. Acta Scientiae Circumstantiae, 2020, 40(11): 4113-4121. | |
郑小华, 李明星, 刘 慧, 等. 汾渭平原空气质量的时空特征及其与气象因子的关系 [J]. 环境科学学报, 2020, 40(11): | |
41 | 13-4121. |
[26] | Dong J D, Chen X L, Cai X B, et al. Analysis of the temporal and spatial variation of atmospheric quality from 2015 to |
20 | 19 based on China atmospheric environment monitoring station [J]. Journal of Geo-Information Science, 2020, 22(10): |
19 | 83-1995. |
董佳丹, 陈晓玲, 蔡晓斌, 等. 基于中国大气环境监测站点的 2015–2019 年大气质量状况时空变化分析 [J]. 地球信息科 | |
学学报, 2020, 22(10): 1983-1995. | |
[27] | Zhao H, Zheng Y F, Xu J X, et al. Variation characteristics of air pollutant concentrations in Urumqi [J]. Environmental |
Chemistry, 2015, 34(11): 2118-2126. | |
赵 辉, 郑有飞, 徐静馨, 等. 乌鲁木齐市大气污染物浓度的变化特征 [J]. 环境化学, 2015, 34(11): 2118-2126. | |
[28] | Silver B, Reddington C L, Arnold S R, et al. Substantial changes in air pollution across China during 2015–2017 [J]. Environmental Research Letters, 2018, 13(11): 114012. |
[29] | Zhang Z F, Zheng M D, Zhang Y, et al. The survey and influence factors of air pollution in Ningbo [J]. Environmental |
Monitoring in China, 2020, 36(5): 96-103. | |
张志非, 郑梅迪, 张 影, 等. 宁波市大气污染概况及影响因素分析 [J]. 中国环境监测, 2020, 36(5): 96-103. | |
[30] | Wang Y S, Li W J, Gao W K, et al. Trends in particulate matter and its chemical compositions in China from 2013–2017 [J]. |
Science China Earth Sciences, 2019, 62(12): 1857-1871. | |
[31] | Lian L S, Gao J J, Shu J. Urban air pollution feature and its relationship with meteorologic factors—A case study of Jinan and |
Qingdao [J]. Environmental Pollution & Control, 2011, 33(5): 22-26. | |
廉丽姝, 高军靖, 束 炯. 城市大气污染特征及其与气象因子的关系—以济南、青岛市为例 [J]. 环境污染与防治, 2011, | |
33 | (5): 22-26. |
[32] | Lin X Q, Wang D. Spatio-temporal variations and socio-economic driving forces of air quality in Chinese cities [J]. Acta |
Geographica Sinica, 2016, 71(8): 1357-1371. | |
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. | |
[33] | Xu W X, Tian Y Z, Xiao Y, et al. Study on the spatial distribution characteristics and the drivers of AQI in North China [J]. |
Acta Scientiae Circumstantiae, 2017, 37(8): 3085-3096. | |
许文轩, 田永中, 肖 悦, 等. 华北地区空气质量空间分布特征及成因研究 [J]. 环境科学学报, 2017, 37(8): 3085-3096. | |
[34] | Jiang P, Pan X M, Peng Y M, et al. Analysis of spatio-temporal distribution characteristics of air quality in Xinjiang region [J]. |
Geospatial Information, 2020, 18(7): 85-89. | |
姜 萍, 潘新民, 彭艳梅, 等. 新疆地区空气质量时空分布特征分析 [J]. 地理空间信息, 2020, 18(7): 85-89. | |
[35] | Zhou Z Y, Zhang S H, Gao Q X, et al. The impact of meteorological factors on air quality in the Beijing-Tianjin-Hebei region |
and trend analysis [J]. Resources Science, 2014, 36(1): 191-199. | |
周兆媛, 张时煌, 高庆先, 等. 京津冀地区气象要素对空气质量的影响及未来变化趋势分析 [J]. 资源科学, 2014, 36(1): | |
19 | 1-199. |
[36] | Lu Z, Wei W, Zhou Y, ¨ et al. Cause and effect evaluation of PM2.5 during three red alerts in Beijing from 2015 to 2016 [J]. |
Environmental Science, 2019, 40(1): 1-10. | |
吕 喆, 魏 巍, 周 颖, 等. 2015–2016 年北京市 3 次空气重污染红色预警 PM2.5 成因分析及效果评估 [J]. 环境科学, 2019, | |
40 | (1): 1-10. |
[37] | Dong J Y, Wang S G, Shang K Z. Influence of precipitation on air quality in several cities, China [J]. Journal of Arid Land |
Resources and Environment, 2009, 23(12): 43-48. | |
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. |
[1] | DAI Liuxin, ZHANG Ying∗, LI Zhengqiang, LOU Sijia. Comparison and historical trend analysis of satellite remote sensing datasets of near-surface PM2.5 mass concentration in China [J]. Journal of Atmospheric and Environmental Optics, 2022, 17(6): 613-629. |
[2] | SUN Rui, ZHANG Hong, WANG Shuibing∗, WEI Youwen. Temporal and Spatial Distribution of Ozone in Typical Cities of Yangtze River Delta Region and Its Correlation with Meteorological Factors [J]. Journal of Atmospheric and Environmental Optics, 2021, 16(6): 483-494. |
[3] | WANG Shuibing, LIU Guijian, YANG Peng, ZHANG Hong∗, HONG Xingyuan, ZHU Sen, BAO Xiang, QIN Zhiyong. Temporal and Spatial Distribution Characteristics of Ozone and Influence of Meteorological Factors in Hefei [J]. Journal of Atmospheric and Environmental Optics, 2021, 16(4): 339-348. |
[4] | CAI Chunmao, HE Hongdi. Prediction of PM10 Concentration Based on Meteorological Factors [J]. Journal of Atmospheric and Environmental Optics, 2019, 14(3): 191-200. |
[5] | QI Hai, CHEN Wen-Zhong. Correlation Between Aerosol Layer Optical Depth from CALIPSO Satellite Lidar and Air Pollution Index in Qingdao [J]. Journal of Atmospheric and Environmental Optics, 2015, 10(6): 463-471. |
[6] | LI Jin-Xiang, YU Tong, LIU Wen-Qing, LI Hai-Jun, XU Jian-Hua, Johnhansen M. The Influence of Meteorological Factors on the Measurements and the Estimation of Pollutant Emission Using a Mobile Mini-DOAS System [J]. Journal of Atmospheric and Environmental Optics, 2009, 4(4): 283-289. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||