(사)한국기후변화학회

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The Korean Society of Climate Change Research
Identification of the CH4 Emission Factor and Emission Characteristics for a Wood-Fired Boiler
Identification of the CH4 Emission Factor and Emission Characteristics for a Wood-Fired Boiler
Song, Garam* ・ Jeong, Sunhee** ・ Kang, Sungmin*** and Jeon, Eui-Chan****†
Song, Garam* ・ Jeong, Sunhee** ・ Kang, Sungmin*** and Jeon, Eui-Chan****†
In this study, the emission characteristics of residential wood-fired boilers were identified and the CH4 emission factor was developed.
We conducted field surveys of exhaust gas from stacks of wood-fired boilers over a four-day period. The CH4 and CO levels of the exhaust gases were analyzed in the laboratory, as were those of the firewood used in the wood-fired boilers. Regarding emission characteristics, CH4 concentration was low with the fan turned on because of the amount of combustion air being added to the furnace.
Spearman’s rho correlation analyses were performed to investigate the correlations between CH4 concentration and CO according to exhaust gas and temperature in the furnace. The analysis showed that the higher was the concentration of CO in the exhaust gases, the higher was the concentration of CH4. However, the higher was the temperature in the furnace, the lower was the concentration of CH4.
The CH4 emission factor was 130.15 kgCH4/TJ, as estimated and compared to the Intergovernmental Panel on Climate Change (IPCC) default values. A comparison between wood stoves and wood-fired boilers showed lower CH4 emission factors for the boilers.
The difference between CH4 emission factors in this study and those of the IPCC were likely because of the specific combustion technologies and the total moisture content of the fuel used.
Wood-fired Boiler, Greenhouse Gas, CH4 Emission Factor, Woody Biomass, Firewood
확장자는pdf1306-01.pdf
2093-5919
2586-2782
2022-12