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배추 재배지에서 요소시비에 따른 암모니아 배출계수 산정open accessAmmonia Gas Emission Factor at different Application Rate of Urea in Chinese Cabbage Cultivation

Other Titles
Ammonia Gas Emission Factor at different Application Rate of Urea in Chinese Cabbage Cultivation
Authors
이수림이재훈노준석박유진최아영김신실이슬린박종환서동철
Issue Date
Mar-2022
Publisher
한국환경농학회
Keywords
Ammonia; Ammonia emission factor; Chinese cabbage cultivation; Fine particles; Urea; .
Citation
한국환경농학회지, v.41, no.1, pp 41 - 49
Pages
9
Indexed
SCOPUS
KCI
Journal Title
한국환경농학회지
Volume
41
Number
1
Start Page
41
End Page
49
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/2445
DOI
10.5338/KJEA.2022.41.1.06
ISSN
1225-3537
2233-4173
Abstract
BACKGROUND: The main source of ammonia in soils, South Korea is agricultural emissions (e.g., fertilizer ap-plication and livestock manure), with the recent emission inventories reporting them to be approximately 80% of the total emissions. Ammonia as a pollutant is originated largely from agricultural activity and is an important con-tributor to air quality issues in South Korea. The im-portance of ammonia in agricultural land is also emer-ging. In this study, the characteristics of ammonia emis-sion from Chinese cabbage cultivation fields with appli-cation rates of urea sere were evaluated. METHODS AND RESULTS: The ammonia emission characteristics were investigated at the different urea ap-plication rates (0, 160, 320, and 640 kg ha-1) and the am-monia emission factor in the Chinese cabbage cultivation field was calculated. As application rate of urea applica-tion increased, ammonia emissions increased propor-tionally. In 2020 and 2021, cumulative ammonia emis-sions with urea 320 kg ha-1 treatment were 39.3 and 35.2 kg ha-1, respectively for 2020 and 2021. When urea fertil-izer was applied, the ammonia emission factors were 0.1217 and 0.1358 NH4+-N kg N kg-1 in 2020 and 2021, respectively. CONCLUSION(S): Ammonia emissions increased as application rate of urea increased, and the average ammo-nia emission factor of the Chinese cabbage cultivation field for two years was 0.129 NH4+-N kg N kg-1.
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