Ahmad, N., Lin, C., Zhang, T., Li, Z., Kim, J., & Guo, C. (2025). Mitigating bias induced by missing data in new-generation geostationary satellite monitoring of ground-level NO2 via machine learning. Environmental Pollution, 381, 126592. https://doi.org/10.1016/j.envpol.2025.126592
Bak, J., Yang, K., Keppens, A., Kim, M., Liu, X., Kim, J.-H., Kim, J., Ahn, M.-H., Chong, H., Hong, S., Lee, K., Kang, M., Lee, W.-J., & Hong, H. (2025). Geostationary Environment Monitoring Spectrometer (GEMS): Long-Term Radiometric Accuracy and Spectral Stability From 4.5 Years of On-Orbit Solar Irradiance Observations. IEEE Transactions on Geoscience and Remote Sensing, 63, Article 5535811. https://doi.org/10.1109/TGRS.2025.3627802
Choi, H., Park, S., Im, J., Kang, E., Kim, J., & Kim, S.-M. (2025). Aerosol optical depth retrieval from Geostationary Environment Monitoring Spectrometer (GEMS): Advancing the first hyperspectral geostationary air quality mission using deep learning. Science of The Total Environment, 1002, 180535, 2025. https://doi.org/10.1016/j.scitotenv.2025.180535
He, T.-L., Oomen, G.-M., Tang, W., Bouarar, I., Chance, K., Clerbaux, C., Edwards, D. P., Eskes, H., Gaubert, B., Granier, C., Guevara, M., Jacob, D. J., Kaiser, J., Kim, J., Kondragunta, S., Liu, X., & M, E. A. (2025). Challenges and opportunities offered by geostationary space observations for air quality research and emission monitoring. Bulletin of the American Meteorological Society, 106(5), E939-E963. https://doi.org/10.1175/BAMS-D-23-0145.1
Hong, S., Bak, J., Keppens, A., Yang, K., Baek, K., Liu, X., Kim, M., Kim, J., Chang, L.-S., Lee, H., & Kim, J.-H. (2025). Cross-Validation of GEMS Total Ozone from Ozone Profile and Total Column Products Using Pandora and Satellite Observations. Remote Sensing, 17(18), 3249. https://doi.org/10.3390/rs17183249
Kim, H., Chen, X., Wang, J., Lu, Z., Zhou, M., Carmichael, G. R., Park, S. S., & Kim, J. (2025). Aerosol layer height (ALH) retrievals from oxygen absorption bands: intercomparison and validation among different satellite platforms, GEMS, EPIC, and TROPOMI. Atmospheric Measurement Techniques, 18(2), 327-349. https://doi.org/10.5194/amt-18-327-2025
Kim, M., Kim, J., Lee, S., Lim, H., Cho, Y., Lee, H. C., & Kuk, S. K. (2025). Aerosol Fine-Mode-Fraction Retrieval from GEO-KOMPSAT-2A/AMI using a Deep Neural Network and Spectral Deconvolution Algorithm. Ieee Transactions on Geoscience and Remote Sensing, 63, Article 4107712. https://doi.org/10.1109/TGRS.2025.3591177
Lee, J., Kim, J., Lee, S., Choi, M., Lee, J., Jacob, D. J., Kuk, S. K., & Park, Y.-J. (2025). A decadal, hourly high-resolution satellite dataset of aerosol optical properties over East Asia. Earth System Science Data, 17(11), 5761-5782. https://doi.org/10.5194/essd-17-5761-2025
Oak, Y. J., Jacob, D. J., Pendergrass, D. C., Dang, R., Colombi, N. K., Chong, H., Lee, S., Kuk, S. K., & Kim, J. (2025). Air quality trends and regimes in South Korea inferred from 2015–2023 surface and satellite observations. Atmospheric Chemistry and Physics, 25(5), 3233-3252. https://doi.org/10.5194/acp-25-3233-2025
Park, J., Hong, H., Lee, H., Kim, S.-W., Kim, J., Roozendael, M. V., Fayt, C., Ahn, M.-H., Jacob, D. J., Seo, S., Kim, K.-M., Kim, D., Choi, W., Lee, W.-J., Lee, D.-W., Wagner, T., Richter, A., Krotkov, N. A., Lamsal, L. N., Ko, D. H., Lee, S. H., & Woo, J.-H. (2025). Tropospheric nitrogen dioxide levels vary diurnally in Asian cities. Communications Earth & Environment, 6(1), Article 389. https://doi.org/10.1038/s43247-025-02272-7
Park, S. S., Kim, J., Cho, Y., Lee, H., Park, J., Lee, D.-W., Lee, W.-J., & Kim, D.-R. (2025). Retrieval algorithm for aerosol effective height from the Geostationary Environment Monitoring Spectrometer (GEMS). Atmospheric Measurement Techniques, 18(10), 2241-2259. https://doi.org/10.5194/amt-18-2241-2025
Pendergrass, D. C., Jacob, D. J., Oak, Y. J., Lee, J., Kim, M., Kim, J., Lee, S., Zhai, S., Irie, H., & Liao, H. (2025). A continuous 2011–2022 record of fine particulate matter (PM2.5) in East Asia at daily 2-km resolution from geostationary satellite observations: Population exposure and long-term trends. Atmospheric Environment, 346, Article 121068. https://doi.org/10.1016/j.atmosenv.2025.121068
Ren, Y., Oxford, C. R., Zhang, D., Liu, X., Zhu, H., Dillner, A. M., White, W. H., Chakrabarty, R. K., Hasheminassab, S., Diner, D. J., Roy, E. J. L., Kumar, J., Viteri, V., Song, K., Akoshile, C., Omar Amador-Muñoz, Asfaw, A., Chang, R. Y.-W., Francis, D., Gahungu, P., Garland, R. M., Grutter, M., Kim, J., Langerman, K., Lee, P.-C., Lestari, P., Mayol-Bracero, O. L., Naidoo, M., Nelli, N., Norm O’Neill, Park, S. S., Salam, A., Sarangi, B., Schechner, Y., Schofield, R., Tripathi, S. N., Windwer, E., Wu, M.-T., Zhang, Q., Rudich, Y., Brauer, M., & Martin, R. V. (2025). Black carbon emissions generally underestimated in the global south as revealed by globally distributed measurements. Nature communications, 16(1), 7010. https://doi.org/10.1038/s41467-025-62468-5
Seo, S., Kim, S.-W., Kim, K.-M., Richter, A., Lange, K., Burrows, J. P., Park, J., Hong, H., Lee, H., Jeong, U., Woo, J.-H., & Kim, J. (2025). Diurnal variations of NO2 tropospheric vertical column density over the Seoul metropolitan area from the Geostationary Environment Monitoring Spectrometer (GEMS): seasonal differences and the influence of the a priori NO2 profile. Atmospheric Measurement Techniques, 18(1), 115-128. https://doi.org/10.5194/amt-18-115-2025
Theys, N., Yu, H., Franco, B., Clarisse, L., Volkamer, R., Cha, H., Kim, J., Smedt, I. D., Stavrakou, T., Gent, J. V., & Roozendael, M. V. (2025). Atmospheric HONO Observed Over Global Biomass Burning Regions Using Satellite Observations of TROPOMI and GEMS. Journal of Geophysical Research-Atmospheres, 130(8), Article e2024JD043163. https://doi.org/10.1029/2024JD043163
Wang, Y., You, Z., Wang, L., Wang, J., Zhou, M., Tao, M., & Kim, J. (2025). First high temporal resolution retrievals of AOD over shallow and turbid coastal waters for Himawari-8. ISPRS Journal of Photogrammetry and Remote Sensing, 228, 2025, 603-612. https://doi.org/10.1016/j.isprsjprs.2025.07.027
Zhang, C., Niu, X., Wu, H., Ding, Z., Chan, K. L., Kim, J., Wagner, T., & Liu, C. (2025). Unleashing the potential of geostationary satellite observations in air quality forecasting through artificial intelligence techniques. Atmospheric Chemistry and Physics, 25(2), 759-770. https://doi.org/10.5194/acp-25-759-2025
Zhang, H., Wang, J., Janechek, N., Ge, C., Zhou, M., Lorena Castro García, Sha, T., Wang, Y., Deng, W., Xue, Z., Li, C., Chutia, L., Wang, Y., Val, S., McDuffie, J. L., Hasheminassab, S., Gluck, S. E., Diner, D. J., Colarco, P. R., Silva, A. M. D., & Kim, J. (2025). Development of UI-WRF-Chem (v1.0) for the MAIA satellite mission: case demonstration. Geoscientific Model Development, 18(22), 9061-9099. https://doi.org/10.5194/gmd-18-9061-2025
Zhang, X., Ye, C., Kim, J., Lee, H., Park, J., Jung, Y., Hong, H., Fu, W., Li, X., Chen, Y., Wu, X., Li, Y., Li, J., Zhang, P., Yan, Z., Zhang, J., Liu, S., & Zhu, L. (2025). Tropospheric NO2 Column over Tibet Plateau According to Geostationary Environment Monitoring Spectrometer: Spatial, Seasonal, and Diurnal Variations. Remote Sensing, 17(10), 1690. https://doi.org/10.3390/rs17101690
Zhang, Z., Li, J., Che, H., Dong, Y., Dubovik, O., Eck, T., Gupta, P., Holben, B., Kim, J., Lind, E., Saud, T., Tripathi, S. N., & Ying, T. (2025). Long-term trends in aerosol properties derived from AERONET measurements. Atmospheric Chemistry and Physics, 25(8), 4617-4637. https://doi.org/10.5194/acp-25-4617-2025