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Investigation on emission factors of particulate matter and gaseous pollutants from crop residue burning
Authors:CAO Guoliang  ZHANG Xiaoye  GONG Sunling and ZHENG Fangcheng
Institution:1. Center for Atmosphere Watch and Services, CMA; Chinese Academy of Meteorological Sciences, Beijing 100081, China;School of Environmental And Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China
2. Center for Atmosphere Watch and Services, CMA; Chinese Academy of Meteorological Sciences, Beijing 100081, China
3. Air Quality Research Division, Environment Canada , 4905 Dufferin Street, Toronto M3H 5T4, Canada
4. School of Environmental And Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China
Abstract:Emission factors of particulate matter (PM), element carbon (EC), organic carbon (OC), SO2, NOx, CO, CO2, and ten ions (Na , NH4 , K , Mg2 , Ca2 , F-, Cl-, NO2-, NO3-, SO42-) were estimated from the domestic burning of four types of commonly produced crop residues in rural China: rice straw, wheat straw, corn stover, and cotton stalk, which were collected from the representative regions across China. A combustion tower was designed to simulate the cooking conditions under which the peasants burned their crop residues in rural China, to measure the emission factors. Results show that wheat straw has the highest emission factor for the total PM (8.75 g/kg) among the four crop residues, whereas, corn stover and wheat straw have the highest emission factor for EC (0.95 g/kg) and OC (3.46 g/kg), respectively. Corn stover also presents as having the highest emission factors of NO, NOx, and CO2 whereas, wheat straw, rice straw, and cotton stalk have the highest emission factors of NO2, SO2, and CO, respectively. The water-soluble ions, K and Cl-, have the highest emission factors from all the crops. Wheat straw has a relatively higher emission factor of cation species and F-, Cl-, NO2- than other residues.
Keywords:rural China  crop residues  combustion tower  emission factor
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