이미혜 교수
Mihye Lee
고려대학교 지구환경과학과 · 지구·행성과학
연구실 소개
이 교수의 연구실은 대기 중 유기물과 산화성 물질의 기원과 화학적 거동을 중심으로, 화산재 및 생물연소 플룸에서 발생하는 과산화수소, 알데하이드, 다성분 유기산 등 대기오염물질의 직접적 배출와 2차 대기화학 반응을 규명하고자 합니다. 특히 동아시아 지역의 미세먼지 형성과 관련된 기후 및 환경 영향을 고려한 안정성 동위원소 분석과 고성능액체크로마토그래피(HPLC) 기반 정밀 측정 기법을 응용하여 대기질 오염의 기원과 변화 메커니즘을 탐구합니다. 연구는 주로 대기화학, 대기질 오염, 그리고 기후 변화 연관성에 초점을 맞추고 있습니다.
연구 현황
연구 성과 추이
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주요 논문
15Hydrogen peroxide, organic hydroperoxide species, and formaldehyde were found to be enhanced within biomass burning plumes during the Transport and Atmospheric Chemistry near the Equator ‐ Atlantic (TRACE A) experiment. This enhancement could have resulted from direct emission by the fires or by secondary photochemical production. In this study, direct production of hydroperoxide and formaldehyde from biomass burning is proposed and examined through comparisons of hydroperoxide and formaldehyde
Abstract Stable carbon isotopic compositions (δ 13 C) were measured for 23 individual organic species including 9 dicarboxylic acids, 7 oxocarboxylic acids, 1 tricarboxylic acid, 2 α ‐dicarbonyls, and 4 fatty acids in the aerosols from Gosan background site in East Asia. δ 13 C values of particle phase glyoxal and methylglyoxal are significantly larger than those previously reported for isoprene and other precursors. The values are consistently less negative in oxalic acid (C 2 , average −14.1‰)
Hydrogen peroxide, organic hydroperoxide species, and formaldehyde were measured in the troposphere over the South Atlantic, Brazil, and southern Africa during the NASA Global Tropospheric Experiment (GTE) Transport and Atmospheric Chemistry Near the Equator‐Atlantic (TRACE‐A) experiment, an investigation into the cause of an observed seasonal ozone maximum in this region. H 2 O 2 and CH 2 O concentrations were extremely high, up to 14 and 5 ppbv, respectively, and are the result of direct produ
An HPLC (high-performance liquid chromatography) method was developed to quantify hydrogen peroxide, methyl hydroperoxide. Hydroxymethyl hydroperoxide, ethyl hydroperoxide, and peroxyaectic acid in the atmosphere. Gas-phase hydroperoxides are collected in aqueous solution using a continuous-flow glass scrubbing coil and then analyzed by an HPLC postcolumn derivatization system. The detection system is based on fluorescence, produced by the product of the reaction of hydroperoxides with peroxidas
Abstract. For PM2.5 filter samples collected daily at the Chinese Research Academy of Environmental Sciences (Beijing, China) from December of 2013 to February of 2014 (the winter period), chemical characteristics and sources were investigated with an emphasis on haze events in different alert levels. During the 3 months, the average PM2.5 concentration was 89 µg m−3, exceeding the Chinese national standard of 75 µg m−3 in 24 h. The maximum PM2.5 concentration was 307 µg m−3, which characterizes
Abstract Black carbon (BC) and brown carbon (BrC) aerosols that are released from the combustion of fossil fuels and biomass are of great concern because of their light-absorbing ability and great abundance associated with various anthropogenic sources, particularly in East Asia. However, the optical properties of ambient aerosols are dependent on the mixing state and the chemical composition of absorbing and non-absorbing aerosols. Here we examined how, in East Asian outflows, the parameters of
In this study, the volume mixing ratio of 55 volatile organic compound (VOC) species was measured every hour using the online TD-GC-FID system during the period from January 2018 to December 2019 in Seoul. The most abundant species were ethane (10.0 ppbv) and toluene (4.1 ppbv), with alkanes and aromatics accounting for 57.5% and 31.5% of the total VOCs (TVOC), respectively. The mixing ratios of the TVOC were markedly higher in July and November, mainly owing to the presence of aromatics and alk
As a part of ABC‐EAREX 2005 (Atmospheric Brown Cloud–East Asia Regional Experiment 2005), trace gases and compositions of PM 2.5 were measured at Gosan supersite in Jeju Island during 13–30 March 2005. Aerosol constituents were determined continuously on site at 1‐a intervals. The mean concentrations of gases were 56 ppbv for O 3 , 297 ppbv for CO, 3.2 ppbv for SO 2 , and 2.2 ppbv for NO x . For PM 2.5 , the average mass concentration was 27.3 μ g/m 3 , and mean concentrations of nss‐SO 4 2− , o
Abstract. The black carbon (BC) and carbon monoxide (CO) emission ratios were estimated and compiled from long-term, harmonized observations of the ΔBC∕ΔCO ratios under conditions unaffected by wet deposition at four sites in East Asia, including two sites in South Korea (Baengnyeong and Gosan) and two sites in Japan (Noto and Fukuoka). Extended spatio-temporal coverage enabled estimation of the full seasonality and elucidation of the emission ratio in North Korea for the first time. The estimat
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