
광학측정기술을 이용한 OH 라디칼 모니터링 기술 연구
Ⓒ 2025 Korea Society for Naval Science & Technology
초록
2030년까지 온실가스 배출량을 40 % 이상 감축하기 위해서는 대기 중 메탄 수명을 정확히 예측하는 것이 중요하다. 메탄은 OH 라디칼과 반응해 분해되며, 이는 지구 복사 균형에 영향을 미친다. 그러나 OH 라디칼은 반응성이 크고 수명이 짧아 측정이 어렵다. 기존 분광법은 감도와 복잡성에 한계가 있다. 본 연구는 TDLAS를 활용해 OH 라디칼을 정밀 측정하고, SD-LBC 기법을 이용하여 흡광도 분석 향상을 도모한다.
Abstract
Monitoring atmospheric methane is essential to achieve a 40 % emission reduction by 2030. Methane reacts with hydroxyl (OH) radicals, which help purify air and influence radiative balance. However, their high reactivity and short lifetime make OH radicals hard to detect. Existing methods like absorption spectroscopy and laser-induced fluorescence face limitations. This study employs tunable diode laser absorption spectroscopy (TDLAS) and SD-LBC to improve measurement accuracy.
Keywords:
OH Radical Detection, Methane Oxidation, SD-LBC, Atmospheric Monitoring, TDLAS키워드:
OH 라디칼 검출, 메탄 산화, 표준편차-선형기준수정, 대기 모니터링, 가변 다이오드 레이저 흡수 분광법Acknowledgments
본 논문은 2025년 해군사관학교 해양연구소 학술연구과제 연구비의 지원으로 수행된 연구임.
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