Typical atmospheric haze during crop harvest season in northeastern China: A case in the Changchun region.

J Environ Sci (China)

State key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China.

Published: April 2017

This study presents the mass concentrations of PM, O, SO and NO at one urban, one suburban and two rural locations in the Changchun region from September 25 to October 27 2013. Major chemical components of PM at the four sites were daily sampled and analyzed. Most of daily concentrations of SO (7-82μg/m), O (27-171μg/m) and NO (14-213μg/m) were below the limits of the National Ambient Air Quality Standard (NAAQS) in China. However, PM concentrations (143-168μg/m) were 2-fold higher than NAAQS Higher PM concentrations (~150μg/m) were measured during the pre-harvest and harvest at the urban site, while PM concentrations significantly increased from 250 to 400μgm at suburban and rural sites with widespread biomass burning. At all sites, PM components were dominated by organic carbon (OC) and followed by soluble component sulfate (SO), ammonium (NH) and nitrate (NO). Compared with rural sites, urban site had a higher mineral contribution and lower potassium (K and K) contribution to PM. Severe atmospheric haze events that occurred from October 21 to 23 were attributed to strong source emissions (e.g., biomass burning) and unfavorable air diffusion conditions. Furthermore, coal burning originating from winter heating supply beginning on October 18 increased the atmospheric pollutant emissions. For entire crop harvest period, the Positive Matrix Factorization (PMF) analysis indicated five important emission contributors in the Changchun region, as follows: secondary aerosol (39%), biomass burning (20%), supply heating (18%), soil/road dust (14%) and traffic (9%).

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http://dx.doi.org/10.1016/j.jes.2016.03.031DOI Listing

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