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논문 기본 정보

자료유형
학술저널
저자정보
Suhyeon Kim (Korea Maritime & Ocean University) Dae Geun Park (Korea Institute of Industrial Technology) Seung Gon Kim (Korea Institute of Energy Research) Sung Hwan Yoon (Korea Maritime & Ocean University)
저널정보
한국마린엔지니어링학회 Journal of Advanced Marine Engineering and Technology (JAMET) 한국마린엔지니어링학회지 제47권 제6호
발행연도
2023.12
수록면
285 - 294 (10page)
DOI
10.5916/jamet.2023.47.6.285

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초록· 키워드

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Global response efforts to global warming are required, and in particular, countries affiliated with the Paris Agreement have set and implemented voluntary reduction targets to reduce greenhouse gas emissions. Nitrous oxide (N₂O), a greenhouse gas, is known to be a major chemical species in the depletion of the ozone layer, with a global warming potential (GWP) 310 times greater than that of CO₂ and a decomposition period of 120 years. This study adopted a high-temperature pyrolysis method to decompose N₂O and conducted numerical and experimental studies simultaneously. In particular, it focused on the correlation between N₂O reduction and NOx and N₂ formation. Consequently, the N₂O decomposition rate increased as the reaction temperature increased, and almost all of the N₂O was converted into N₂ at a reaction temperature of 1400 K. Most of the NOx generated was converted to NO and some NOx was converted to NO₂. The effect of the residence time on N₂O in the high-temperature region was observed only at reaction temperatures below 1400 K, and this was not confirmed because of the chemical equilibrium state at 1400 K or higher.

목차

Abstract
1. Introduction
2. Experimental and Numerical Methods
3. Results and Discussion
4. Conclusion
References

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