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Significant emission reductions of carbonaceous aerosols from residential coal burning by a novel stove
Authors:Yujing Mu  Xuran Li  Chenglong Zhang  Weimin Zhuo  Yuxuan Zhuo  Jincheng Yang  Min Song
Institution:1. Research Center for Eco-Environmenta1l Sciences, Chinese Academy of Sciences, Beijing 100085, China;2. University of Chinese Academy of Sciences, Beijing 100049, China;3. Center for Excellence in Urban Atmospheric Environment, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen 361021, China;4. Xuzhou Zhongkai Mechanical& Electrical Equipment Manufacturing Co., Ltd., Xuzhou 221300, China;5. School of Environmental Science and Engineering, Shandong University, Jinan 250100, China
Abstract:Carbonaceous aerosols (CA) are crucial components in the atmospheric PM2.5 and derived from diverse sources. One of the major sources for CA is from the incomplete combustion of bituminous coal that has been prevailingly used by household stoves in rural areas for heating during winter. To efficiently eliminate the CA emission, a new household stove (NHS) was developed based on a novel combustion technology and CA emissions from the NHS and a traditional household stove (THS) were comparably investigated under the actual stove operation conditions in a farmer's house. Compared with the THS, the emission factors of organic carbon (OC), elemental carbon (EC), and water-soluble organic carbon (WSOC) from the NHS were reduced by 96%±1%, 98%±1%, and 91%±1% under the flaming process and 95%±1%, 96%±2%, and 83%±4% under the smoldering process, respectively. Additionally, the mass absorption efficiency of WSOC from the NHS reduced by 3 folds and the radiative forcing by WSOC relative to EC shrank remarkably by a factor of 3-8. Based on the reduction of emissions and light absorption of WSOC, the promotion of the NHS offers a possible solution to achieve the clean combustion of residential solid fuel.
Keywords:Corresponding author    OC  EC  WSOC  Emission factor  Light absorption
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