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Exploration of spatial and temporal characteristics of PM2.5 concentration in Guangzhou, China using wavelet analysis and modified land use regression model 被引量:2

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摘要 This article attempts to detail time series characteristics of PM2.5 concentration in Guangzhou(China)from 1 June 2012 to 31 May 2013 based on wavelet analysis tools,and discuss its spatial distribution using geographic information system software and a modified land use regression model.In this modified model,an important variable(land use data)is substituted for impervious surface area,which can be obtained conveniently from remote sensing imagery through the linear spectral mixture analysis method.Impervious surface has higher precision than land use data because of its sub-pixel level.Seasonal concentration pattern and day-by-day change feature of PM2.5 in Guangzhou with a micro-perspective are discussed and understood.Results include:(1)the highest concentration of PM2.5 occurs in October and the lowest in July,respectively;(2)average concentration of PM2.5 in winter is higher than in other seasons;and(3)there are two high concentration zones in winter and one zone in spring.
出处 《Geo-Spatial Information Science》 SCIE CSCD 2018年第4期311-321,共11页 地球空间信息科学学报(英文)
基金 This work is supported by the National Nature Science Foundation of China[grant number:41201432],the National Science Foundation of Tibet[grant number:2016ZR-TU-05] the Foundation for Innovative Research for Young Teachers in Higher Educational Institutions of Tibet[grant number:QCZ2016-07].
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  • 1Jacobson M C, Hansson H C, Noone K J, et al. Organic atmospheric aerosols: review and state of the science [J]. Reviews of Geophysics, 2000,38:19342-19369.
  • 2Ramanathan V, Crutzen P J, Lelieveld J, et al. Indian ocean experiment: an integrated analysis of the climate forcing and effects of the great Indo-Asian haze [J]. Journal of Geophysical Research. 2001,106:28371-28398.
  • 3Cao J J, Lee S C, Ho K F, et al. Characteristics of carbonaceous aerosol in Pearl River Delta Region, China during winter period [J]. Atmospheric Environment, 2003,37:1451-1460.
  • 4Yang L X, Wang D C, Cheng S H, et al. Influence of meteorological conditions and particulate matter on visual range impairment in Jinan, China [J]. Science of the Total Environment, 2007,383:164-173.
  • 5Bi X, Feng Y, Wu J, et al. Source apportionment of PM10 in six cities of northern China [J]. Atmospheric Environment, 2007, 41:903-912.
  • 6He K B, Yang F M, Ma Y L, et al. The Characteristics of PM2.5 in Beijing, China [J]. Atmospheric Environment, 2001,35:4959- 4970.
  • 7Park S S, Kim Y J. PM2.5 particles and size-segregated ionic species measured during fall season in three urban sites in Korea [J]. Atmospheric Environment, 2004,38:1459-1471.
  • 8Ye B M, Ji X L, Yang H Z, et al. Concentration and chemical composition of PM2.5 in Shanghai for a 1-year period [J]. Atmospheric Environment, 2003,37:499 510.
  • 9Wang Y, Zhang G S, Tang A H, et al. The ion chemistry and the sources of PM2.5 aerosol in Beijing [J]. Atmospheric Environment 2002,6:1299-1307.
  • 10Jacob D J, Wofsy S C. Photochemistry of biogenic emissions over the Amazon forest [J]. Journal of Geophysical Research. 1988,1477-1486.

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