Spatial and temporal analysis of Air Pollution Index and its timescale-dependent relationship with meteorological factors in Guangzhou, China, 2001–2011

There is an increasing interest in spatial and temporal variation of air pollution and its association with weather conditions. We presented the spatial and temporal variation of Air Pollution Index (API) and examined the associations between API and meteorological factors during 2001–2011 in Guangz...

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Veröffentlicht in:Environmental pollution (1987) 2014-07, Vol.190, p.75-81
Hauptverfasser: Li, Li, Qian, Jun, Ou, Chun-Quan, Zhou, Ying-Xue, Guo, Cui, Guo, Yuming
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Sprache:eng
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Zusammenfassung:There is an increasing interest in spatial and temporal variation of air pollution and its association with weather conditions. We presented the spatial and temporal variation of Air Pollution Index (API) and examined the associations between API and meteorological factors during 2001–2011 in Guangzhou, China. A Seasonal-Trend Decomposition Procedure Based on Loess (STL) was used to decompose API. Wavelet analyses were performed to examine the relationships between API and several meteorological factors. Air quality has improved since 2005. APIs were highly correlated among five monitoring stations, and there were substantial temporal variations. Timescale-dependent relationships were found between API and a variety of meteorological factors. Temperature, relative humidity, precipitation and wind speed were negatively correlated with API, while diurnal temperature range and atmospheric pressure were positively correlated with API in the annual cycle. Our findings should be taken into account when determining air quality forecasts and pollution control measures. [Display omitted] •Air pollution is still serious in Guangzhou, China.•Air Pollution Index was associated with a variety of meteorological parameters.•The temporal relationships were timescale-dependent.•The findings should be taken into account in air quality forecasts and pollution control. Spatial and temporal variation of API and its timescale-dependent relationship with meteorological factors in Guangzhou were demonstrated.
ISSN:0269-7491
1873-6424
DOI:10.1016/j.envpol.2014.03.020