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Ji-ee Lee

Ewha Womans University · Engineering

About the Lab

Professor Ji-ee Lee's research lab specializes in atmospheric chemistry and air quality, with a focus on the chemical characterization, source apportionment, and environmental impacts of fine particulate matter (PM2.5). The lab investigates carbonaceous aerosols, secondary organic aerosols, and molecular markers such as levoglucosan to identify contributions from biomass burning, traffic emissions, and industrial sources. Using advanced analytical techniques—including PMF modeling, GC/MS, AMS, and GC×GC-TOFMS—the lab explores the seasonal and spatial variability of PM2.5 components and their interactions with ozone, particularly in regional and marine environments like the Yellow Sea and industrial zones in Korea.

PM2.5 chemistrysource apportionmentcarbonaceous aerosolsmolecular markersair quality modeling

Research Overview

Papers
97
Total Citations
56
Papers (5y)
18
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
18total
2022
2023
2024
2025
2026
Citations per year (5y)
10total
20222023202420252026

Selected Papers

15
1
Article|17 citations·2020
충남 서산에서 가을에 측정한 초미세먼지의 오염 특성 조사
주서령, 유근혜, 박승식, 이지이, 이상일, 지준범, 이광열, 이민도

In this study, chemical characteristics of PM2.5 collected between October 1 and November 4, 2019 at Chungcheong region air quality research center in Seosan, were studied to understand reasons leading to PM2.5 increases. 24-hr integrated PM2.5 samples were analysed for organic and elemental carbon (OC and EC), water-soluble OC (WSOC), and eight water-soluble inorganic ions. Over the study period, increase in PM2.5 concentration was attributed to enhancement of organic mass (OM=1.8×OC) and NO3 -

2
Article|8 citations·2020
2017년 서울시 O3과 PM2.5의 계절별 상관분석 연구
이하경, 최은락, 이현지, 이수영, 이지이

To characterize the correlation between tropospheric O3 and PM2.5 by season, a comprehensive analysis for the interaction between tropospheric O3 and PM2.5 has been performed over 25 sites in Seoul in 2017. Highly positive correlation between O3 and PM2.5 was observed during the summer period (June, July, and August) and this is related to the simultaneous formation of O3 and PM2.5 due to an increase of the atmospheric oxidation ability. While, correlations of O3 and PM2.5 were negative in the w

3
Article|5 citations·2018
Estimation of the Source Contributions for Carbonaceous Aerosols at a Background Site in Korea
한상희, 이지이, 이종식, 허종배, 정창훈, 김은실, 김용표

To identify and quantify the contribution of the major sources for the ambient carbonaceous aerosols at a Global Atmosphere Watch (GAW) station in Korea, a receptor model, the Positive Matrix Factorization (PMF) model was applied for the oneyear long measurement data. Particulate matter less than or equal to 2.5 μm in aerodynamic diameter (PM2.5) aerosols were sampled at Anmyeon Island GAW station from June 2015 to May 2016 and carbonaceous species including ~80 organic compounds were analyzed.

4
Article|4 citations·2024
Characteristic of PM2.5 concentration and source apportionment during winter in Seosan, Korea
원수란, 이광열, 송미정, 김창혁, 장경순, 이지이
https://doi.org/10.1007/s44273-024-00044-x

Seosan is a concentrated industrial complex in the midwestern region of Korea. A study was conducted from December 2020 to January 2021, measuring PM2.5 and chemical components in Seosan using online instruments every hour. The concentration of PM2.5 during the winter season was 31.4±17.8 μg/m3, exceeding the national ambient air quality standard of Korea. The mass fraction of organic matter, elemental carbon, three major ions, five minor ions, crustal elements, and trace elements in PM2.5 accou

5
Article|4 citations·2012
Analytical Methods of Levoglucosan, a Tracer for Cellulose in Biomass Burning, by Four Different Techniques
배민석, 이지이, 김용표, 옥민호, Ju-Seon Shin, 이광열, Hyunhee Lee, Sun Young Lee, 김영준

A comparison of analytical approaches for Levoglucosan (C6H10O5, commonly formed from the pyrolysis of carbohydrates such as cellulose) and used for a molecular marker in biomass burning is made between the four different analytical systems. 1) Spectrothermography technique as the evaluation of thermograms of carbon using Elemental Carbon & Organic Carbon Analyzer, 2) mass spectrometry technique using Gas Chromatography/mass spectrometer (GC/MS), 3) Aerosol Mass Spectrometer (AMS) for the identi

6
Article|4 citations·2021
서해상 PM2.5 내 탄소성분 및 유기성분의 화학적 특성
유하영, 김기애, 안현진, 이연정, Teng Zihui, 유희정, 김정은, 고희정, 성민영, 최진수, 박진수, 이지이

Characteristics of carbonaceous components and organic compounds in PM2.5 over the atmosphere of the Yellow Sea were investigated. PM2.5 samples were collected onboard the meteorological research vessel, GISANG 1, over the Yellow Sea during the YES-AQ campaign in 2018 and 2019, respectively. The average concentrations of carbonaceous components in this region were 2.59 ± 1.59 g m3 for the OC, 0.24 ± 0.10 g m3 for the EC, 2.14 ± 1.30 g m3 for the WSOC and 1.17 ± 0.94 g m3 for the HULIS-C,

7
Article|2 citations·2020
서울 대기 중 PM2.5 내 OC와 EC로부터 SOC 추정방법의 비교 평가
유하영, 김기애, 김용표, 정창훈, 신혜정, 문광주, 박승명, 이지이
http://kapar.or.kr/jpaar/article.html?art_id=290&jrn_id=1&vol_id=62&p=&key=&keyfield=

The organic carbon in the ambient particulate matter (PM) is divided into primary organic carbon (POC) and secondary organic carbon (SOC) by their formation way. To regulate PM effectively, the estimation of the amount of POC and SOC separately is one of important consideration. Since SOC cannot be measured directly, previous studies have evaluated determination of SOC by the EC tracer method. The EC tracer method is a method of estimating the SOC value from calculating the POC by determining (O

8
Article|1 citations·2022
서울 대기 중 PM1.0의 계절별 화학조성 특성
이지이, 권수진, 임형배, 신혜정, 이상진, 최성득
https://doi.org/10.5572/KOSAE.2022.38.6.852

In this study, to characterize PM1.0 concentrations and chemical composition, seasonal PM1.0 samples were collected using a single channel particulate sampler equipped with PM1.0 cyclone and quantified the chemical compositions of PM1.0. The sampling of PM1.0 was carried out at the Seoul Metropolitan Area Air Pollution Research Center located at Bulgwang in Seoul. The 8 ions (Cl-, NO3 -, SO4 2-, Na+, NH4 +, K+, Ca2+, and Mg2+), organic carbon (OC), elemental carbon (EC), and 13 elements (As, Cd,

9
Article|1 citations·2009
Thermal Desorption-comprehensive Two Dimensional Gas Chromatography-time of Flight Mass Spectrometry (TD-GCxGC-TOFMS)을 이용한 서울 대기 중 PM 2.5 유기성분 분석
이지이, Douglas A. Lane, 허종배, 이승묵, 김용표
SJR Q3한국대기환경학회지 = Journal of Korean Society for Atmospheric Environment

Characteristics and advantages of the thermal desorption-comprehensive two dimensional gas chromatographytime of flight mass spectrometry (TD-GCxGC-TOFMS) were discussed and the organic compound’s analysis result was shown for the ambient PM 2.5 sample collected in Seoul, Korea. Over 10,000 individual organic compounds were separated from about 70 μg of aerosols in a single procedure with no sample pre-treatment. Among them, around 300 compounds were identified and classified based on the mass f

Atmospheric ScienceEarth and Planetary Sciences
10
Article|0 citations·2003
PA15)서울 도심 및 배경지역에서 PAHs의 시·공간적 분포와 건식 침적특성
이지이, 김용표, 이승묵
한국대기환경학회 학술대회논문집
Aerospace EngineeringEngineering
11
Article|0 citations·2011
기체상 PAHs의 광화학 반응 특성 연구
이지이, Douglas A. Lane, 김용표
한국대기환경학회 학술대회논문집
Aerospace EngineeringEngineering
12
Article|0 citations·2004
2001년부터 2004년까지 고산에서 측정한 대기 중 입자상 다환방향족 탄화수소의 분포 특성
이지이, 김용표, 강창희
한국대기환경학회 학술대회논문집
Aerospace EngineeringEngineering
13
Article|0 citations·2005
서울시 대기 중 PAHs의 계절적 입경 분포 변화 요인
이지이, 김용표, 강창희
한국대기환경학회 학술대회논문집
Aerospace EngineeringEngineering
14
Article|0 citations·2011
터널 내 기체 및 입자상 다환방향족탄화수소(PAHs) 농도 특성 연구
이지이, Jin‐Young Kim, 진현철, 배귀남, 김용표, 이세종, 임형배
한국대기환경학회 학술대회논문집
Aerospace EngineeringEngineering
15
Article|0 citations·2012
안면도 미세먼지 내 유기성분들의 분포 특성
이지이, 황은진, 임형배, 김유원, 김은실, 김용표
한국대기환경학회 학술대회논문집
Aerospace EngineeringEngineering

Research Areas

Aerospace EngineeringAtmospheric ScienceTransportationHealth, Toxicology and MutagenesisCivil and Structural EngineeringAutomotive Engineering

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