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Speciated atmospheric mercury and its potential source in Guiyang, China TEXT SIZE: A A A

Fig. Likely sources areas of GEM identified using PSCF analysis.

Speciated atmospheric mercury (Hg) including gaseous elemental mercury (GEM), particulate Hg (PHg), and reactive gaseous Hg (RGM) were continuously measured at an urban site in Guiyang city, southwest China from August to December 2009. The averaged concentrations for GEM, PHg, and RGM were 9.72 +/- 10.2 ng m(-3), 368 +/- 676 pg m(-3), and 35.7 +/- 43.9 pg m(-3), respectively, which were all highly elevated compared to observations at urban sites in Europe and North America. GEM and PHg were characterized by similar monthly and diurnal patterns, with elevated levels in cold months and night-time, respectively. In contrast, RGM did not exhibit clear monthly and diurnal variations. The variations of GEM, PHg, and RGM indicate the sampling site was significantly impacted by sources in the city municipal area. Sources identification implied that both residential coal burning and large point sources were responsible to the elevated GEM and PHg concentrations; whereas point sources were the major contributors to elevated RGM concentrations. Point sources played a different role in regulating GEM, PHg, and RGM concentrations. Aside from residential emissions, PHg levels was mostly affected by small-scale coal combustion boilers situated to the east of the sampling site, which were scarcely equipped or lacking particulate control devices; whereas point sources situated to the east, southeast, and southwest of the sampling played an important role on the distribution of atmospheric GEM and RGM. (C) 2011 Elsevier Ltd. All rights reserved. 

  Publication name  ATMOSPHERIC ENVIRONMENT Volume: 45  Issue: 25  Pages: 4205-4212  Published: AUG 2011
  Author(s)  Fu, Xuewu; Feng, Xinbin; Qiu, Guangle; Shang, Lihai; Zhang, Hui
  Corresponding author  

 FENG, Xinbin
 fengxinbin@vip.skleg.cn 
 Chinese Acad Sci, State Key Lab Environm Geochem, Inst Geochem, Guiyang 550002, Peoples R China

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