环境科学
气溶胶
中分辨率成像光谱仪
空气质量指数
气候学
光谱辐射计
大气科学
风速
相对湿度
气象学
主成分分析
城市化
地理
反射率
地质学
卫星
物理
工程类
光学
航空航天工程
人工智能
经济增长
计算机科学
经济
作者
S. Torabi,Muhammad Amin,Worradorn Phairuang,Hyung Min Lee,Mitsuhiko Hata,Masami Furuuchi
出处
期刊:Atmosphere
[Multidisciplinary Digital Publishing Institute]
日期:2024-07-19
卷期号:15 (7): 849-849
标识
DOI:10.3390/atmos15070849
摘要
Atmospheric aerosols pose a significant global problem, particularly in urban areas in developing countries where the rapid urbanization and industrial activities degrade air quality. This study examined the spatiotemporal variations and trends in aerosol optical depth (AOD) at a 550 nm wavelength, alongside key meteorological factors, in Kabul, Afghanistan, from 2000 to 2022. Using the Google Earth Engine geospatial analysis platform, daily AOD data were retrieved from the Moderate Resolution Imaging Spectroradiometer to assess monthly, seasonal, and annual spatiotemporal variations and long-term trends. Meteorological parameters such as temperature (T), relative humidity (RH), precipitation (PCP), wind speed (WS), wind direction, and solar radiation (SR) were obtained from the Modern Era Retrospective Analysis for Research and Applications. The Mann–Kendall test was employed to analyze the time-series trends, and a Pearson correlation matrix was calculated to assess the influence of the meteorological factors on AOD. Principal component analysis (PCA) was performed to understand the underlying structure. The results indicated high AOD levels in spring and summer, with a significant upward trend from 2000 to 2022. The findings revealed a positive correlation of AOD value with T, RH, WS, and PCP and a negative correlation with SR. The PCA results highlighted complex interactions among these factors and their impact on the AOD. These insights underscore the need for stringent air quality regulations and emission control measures in Kabul.
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