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Jun Kim

Yonsei University · Environmental Science

About the Lab

Professor Jun Kim's research lab specializes in atmospheric remote sensing, with a focus on advancing air quality monitoring through satellite-based instruments and ground-based validation. The lab develops innovative retrieval algorithms for aerosols, trace gases (such as O₃, NO₂, SO₂, and HCHO), and atmospheric constituents using UV–visible spectrometers on geostationary and low Earth orbits. Key research directions include improving the accuracy of aerosol optical depth retrieval, enhancing calibration techniques for sky radiometers, and integrating multi-sensor data to study regional air pollution and its impacts. The lab also contributes to understanding atmospheric processes on other planets, such as oxygen escape on Mars, through advanced modeling of ion chemistry and dissociative recombination.

air quality monitoringaerosol retrievalgeostationary remote sensingtrace gas monitoringatmospheric modeling

Research Overview

Papers
472
Total Citations
10,115
Papers (5y)
123
Primary Field
Environmental Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
123total
2022
2023
2024
2025
2026
Citations per year (5y)
935total
20222023202420252026

Selected Papers

15
1
Article|433 citations·2019
New Era of Air Quality Monitoring from Space: Geostationary Environment Monitoring Spectrometer (GEMS)
Jhoon Kim, Ukkyo Jeong, Myoung‐Hwan Ahn, Jae-Hwan Kim, Rokjin J. Park, Hanlim Lee, Chul Han Song, Yong‐Sang Choi, Kwon‐Ho Lee, Jung‐Moon Yoo, Myeong‐Jae Jeong, Seon Ki Park
SJR Q1Bulletin of the American Meteorological Society

Abstract The Geostationary Environment Monitoring Spectrometer (GEMS) is scheduled for launch in February 2020 to monitor air quality (AQ) at an unprecedented spatial and temporal resolution from a geostationary Earth orbit (GEO) for the first time. With the development of UV–visible spectrometers at sub-nm spectral resolution and sophisticated retrieval algorithms, estimates of the column amounts of atmospheric pollutants (O 3 , NO 2 , SO 2 , HCHO, CHOCHO, and aerosols) can be obtained. To date

Atmospheric ScienceEarth and Planetary Sciences
2
Article|308 citations·2010
Characteristics of aerosol types from AERONET sunphotometer measurements
J. Lee, Jhoon Kim, Ci Song, S.B. Kim, Chun Ye, Byung-Ju Sohn, B. N. Holben
SJR Q1Atmospheric Environment
Global and Planetary ChangeEnvironmental Science
3
Article|149 citations·2020
An overview of and issues with sky radiometer technology and SKYNET
Teruyuki Nakajima, Monica Campanelli, Huizheng Che, Víctor Estellés, Hitoshi Irie, Sang‐Woo Kim, Jhoon Kim, Dong Liu, Tomoaki Nishizawa, G. Pandithurai, Vijay Kumar Soni, Boossarasiri Thana
SJR Q1Atmospheric measurement techniquesOA

Abstract. This paper is an overview of the progress in sky radiometer technology and the development of the network called SKYNET. It is found that the technology has produced useful on-site calibration methods, retrieval algorithms, and data analyses from sky radiometer observations of aerosol, cloud, water vapor, and ozone. A formula was proposed for estimating the accuracy of the sky radiometer calibration constant F0 using the improved Langley (IL) method, which was found to be a good approx

Global and Planetary ChangeEnvironmental Science
4
Article|148 citations·2018
GOCI Yonsei aerosol retrieval version 2 products: an improved algorithm and error analysis with uncertainty estimation from 5-year validation over East Asia
Myungje Choi, Jhoon Kim, Jaehwa Lee, Mijin Kim, Young-Je Park, B. N. Holben, T. F. Eck, Zhengqiang Li, Chul Han Song
SJR Q1Atmospheric measurement techniquesOA

Abstract. The Geostationary Ocean Color Imager (GOCI) Yonsei aerosol retrieval (YAER) version 1 algorithm was developed to retrieve hourly aerosol optical depth at 550 nm (AOD) and other subsidiary aerosol optical properties over East Asia. The GOCI YAER AOD had accuracy comparable to ground-based and other satellite-based observations but still had errors because of uncertainties in surface reflectance and simple cloud masking. In addition, near-real-time (NRT) processing was not possible becau

Global and Planetary ChangeEnvironmental Science
5
Article|147 citations·1998
Solar cycle variability of hot oxygen atoms at Mars
Jhoon Kim, A. F. Nagy, Jane L. Fox, T. E. Cravens
SJR Q1Journal of Geophysical Research AtmospheresOA

The population of hot oxygen atoms in the Martian exosphere is reexamined using newly calculated hot O production rates for both low and high solar cycle conditions. The hot oxygen production rates are assumed to result from the dissociative recombination of O 2 + ions. These calculations take into account the calculated vibrational distribution of O 2 + and the new measured branching ratios. Furthermore, these calculations also consider the variation of the dissociative recombination cross sect

Astronomy and AstrophysicsPhysics and Astronomy
6
Article|140 citations·2016
Evaluation of VIIRS, GOCI, and MODIS Collection 6 AOD retrievals against ground sunphotometer observations over East Asia
Qingyang Xiao, H. Zhang, Myungje Choi, S. Li, Shobha Kondragunta, Jhoon Kim, B. N. Holben, R. C. Levy, Yang Liu
SJR Q1Atmospheric chemistry and physicsOA

Abstract. Persistent high aerosol loadings together with extremely high population densities have raised serious air quality and public health concerns in many urban centers in East Asia. However, ground-based air quality monitoring is relatively limited in this area. Recently, satellite-retrieved Aerosol Optical Depth (AOD) at high resolution has become a powerful tool to characterize aerosol patterns in space and time. Using ground AOD observations from the Aerosol Robotic Network (AERONET) an

Global and Planetary ChangeEnvironmental Science
7
Article|133 citations·2007
Consistency of the aerosol type classification from satellite remote sensing during the Atmospheric Brown Cloud–East Asia Regional Experiment campaign
Jhoon Kim, Jaehwa Lee, Hee Choon Lee, Akiko Higurashi, Toshihiko Takemura, Chul Han Song
SJR Q1Journal of Geophysical Research AtmospheresOA

The Atmospheric Brown Cloud–East Asia Regional Experiment (ABC‐EAREX) was conducted under the UNEP/ABC‐Asia project to intercompare the aerosol and gas measurements in springtime from various instruments from late February to April 2005 at the Gosan Supersite on Jeju Island, Korea. Satellite instruments such as the Moderate Resolution Imaging Spectroradiometer (MODIS) and the Ozone Monitoring Instrument (OMI) provide a large‐scale regional view of the aerosol during the ABC‐EAREX period. This st

Global and Planetary ChangeEnvironmental Science
8
Article|129 citations·2016
GOCI Yonsei Aerosol Retrieval (YAER) algorithm and validation during the DRAGON-NE Asia 2012 campaign
Myungje Choi, Jhoon Kim, Jaehwa Lee, Mijin Kim, Young-Je Park, Ukkyo Jeong, Woogyung Kim, Hyunkee Hong, B. N. Holben, T. F. Eck, Chul Han Song, Jae-Hyun Lim
SJR Q1Atmospheric measurement techniquesOA

Abstract. The Geostationary Ocean Color Imager (GOCI) onboard the Communication, Ocean, and Meteorological Satellite (COMS) is the first multi-channel ocean color imager in geostationary orbit. Hourly GOCI top-of-atmosphere radiance has been available for the retrieval of aerosol optical properties over East Asia since March 2011. This study presents improvements made to the GOCI Yonsei Aerosol Retrieval (YAER) algorithm together with validation results during the Distributed Regional Aerosol Gr

Global and Planetary ChangeEnvironmental Science
9
Article|128 citations·2019
Validation, comparison, and integration of GOCI, AHI, MODIS, MISR, and VIIRS aerosol optical depth over East Asia during the 2016 KORUS-AQ campaign
Myungje Choi, Hyunkwang Lim, Jhoon Kim, Seoyoung Lee, T. F. Eck, B. N. Holben, M. J. Garay, E. J. Hyer, Pablo E. Saide, Hongqing Liu
SJR Q1Atmospheric measurement techniquesOA

Abstract. Recently launched multichannel geostationary Earth orbit (GEO) satellite sensors, such as the Geostationary Ocean Color Imager (GOCI) and the Advanced Himawari Imager (AHI), provide aerosol products over East Asia with high accuracy, which enables the monitoring of rapid diurnal variations and the transboundary transport of aerosols. Most aerosol studies to date have used low Earth orbit (LEO) satellite sensors, such as the Moderate Resolution Imaging Spectroradiometer (MODIS) and the

Global and Planetary ChangeEnvironmental Science
10
Article|118 citations·2010
Algorithm for retrieval of aerosol optical properties over the ocean from the Geostationary Ocean Color Imager
Jaehwa Lee, Jhoon Kim, Chul Han Song, Joo-Hyung Ryu, Yu-Hwan Ahn, Chang‐Keun Song
SJR Q1Remote Sensing of Environment
Global and Planetary ChangeEnvironmental Science
11
Article|115 citations·2019
Primary and secondary sources of ambient formaldehyde in the Yangtze River Delta based on Ozone Mapping and Profiler Suite (OMPS) observations
Wenjing Su, Cheng Liu, Qihou Hu, Shaohua Zhao, Youwen Sun, Wei Wang, Yizhi Zhu, Jianguo Liu, Jhoon Kim
SJR Q1Atmospheric chemistry and physicsOA

Abstract. Formaldehyde (HCHO) in the ambient air not only causes cancer but is also an ideal indicator of volatile organic compounds (VOCs), which are major precursors of ozone (O3) and secondary organic aerosol (SOA) near the surface. It is meaningful to differentiate between the direct emission and the secondary formation of HCHO for HCHO pollution control and sensitivity studies of O3 production. However, understanding of the sources of HCHO is still poor in China, due to the scarcity of fiel

Atmospheric ScienceEarth and Planetary Sciences
12
Article|115 citations·2011
Estimation of the contributions of long range transported aerosol in East Asia to carbonaceous aerosol and PM concentrations in Seoul, Korea using highly time resolved measurements: a PSCF model approach
Ukkyo Jeong, Jhoon Kim, Hanlim Lee, Jinsang Jung, Young Jin Kim, Chul Han Song, Ja‐Ho Koo
Journal of Environmental Monitoring

The contributions of long range transported aerosol in East Asia to carbonaceous aerosol and particulate matter (PM) concentrations in Seoul, Korea were estimated with potential source contribution function (PSCF) calculations. Carbonaceous aerosol (organic carbon (OC) and elemental carbon (EC)), PM(2.5), and PM(10) concentrations were measured from April 2007 to March 2008 in Seoul, Korea. The PSCF and concentration weighted trajectory (CWT) receptor models were used to identify the spatial sou

Atmospheric ScienceEarth and Planetary Sciences
13
Article|104 citations·2019
Estimation of ground-level particulate matter concentrations through the synergistic use of satellite observations and process-based models over South Korea
Seohui Park, Minso Shin, Jungho Im, Chang‐Keun Song, Myungje Choi, Jhoon Kim, Seungun Lee, Rokjin J. Park, Jiyoung Kim, Dong-Won Lee, Sang-Kyun Kim
SJR Q1Atmospheric chemistry and physicsOA

Abstract. Long-term exposure to particulate matter (PM) with aerodynamic diameters < 10 (PM10) and 2.5 µm (PM2.5) has negative effects on human health. Although station-based PM monitoring has been conducted around the world, it is still challenging to provide spatially continuous PM information for vast areas at high spatial resolution. Satellite-derived aerosol information such as aerosol optical depth (AOD) has been frequently used to investigate ground-level PM concentrations. In this stu

Health, Toxicology and MutagenesisEnvironmental Science
14
Article|103 citations·2018
AHI/Himawari-8 Yonsei Aerosol Retrieval (YAER): Algorithm, Validation and Merged Products
Hyunkwang Lim, Myungje Choi, Jhoon Kim, Yasuko Kasai, Pak Wai Chan
SJR Q1Remote SensingOA

Himawari-8, a next-generation geostationary meteorological satellite, was successfully launched by the Japanese Meteorological Agency (JMA) on 7 October 2014 and has been in official operation since 7 July 2015. The Advanced Himawari Imager (AHI) onboard Himawari-8 has 16 channels from 0.47 to 13.3 μm and performs full-disk observations every 10 min. This study describes AHI aerosol optical property (AOP) retrieval based on a multi-channel algorithm using three visible and one near-infrared chan

Global and Planetary ChangeEnvironmental Science
15
Article|100 citations·2018
An overview of mesoscale aerosol processes, comparisons, and validation studies from DRAGON networks
B. N. Holben, Jhoon Kim, Itaru Sano, Sonoyo Mukai, T. F. Eck, D. M. Giles, Joel S. Schafer, A. Sinyuk, I. Slutsker, A. Smirnov, M. G. Sorokin, B. E. Anderson
SJR Q1Atmospheric chemistry and physicsOA

Abstract. Over the past 24 years, the AErosol RObotic NETwork (AERONET) program has provided highly accurate remote-sensing characterization of aerosol optical and physical properties for an increasingly extensive geographic distribution including all continents and many oceanic island and coastal sites. The measurements and retrievals from the AERONET global network have addressed satellite and model validation needs very well, but there have been challenges in making comparisons to similar par

Global and Planetary ChangeEnvironmental Science

Research Areas

Global and Planetary ChangeAtmospheric ScienceAstronomy and AstrophysicsEnvironmental EngineeringAerospace EngineeringHealth, Toxicology and Mutagenesis

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