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[16] 31. Cole-Dai, J.*, D. Ferris, J. A. Kennedy, M. Sigl, J. R. McConnell, T. J. Fudge, L. Geng, O. J. Maselli, K. C. Taylor, J. M. Souney, Comprehensive Record of Volcanic Eruptions in the Holocene (11,000 years) from the WAIS Divide, Antarctica ice core, J. Geophys. Res., doi: 10.1029/2020JD032855 (2021)
[17] 30. Zhai, S., X. Wang, J.R. McConnell, L. Geng, J. Cole-Dai, N. Chellman, T. Sherwen, R. Pound, K. Fujita, S. Hattori, J.M. Moch, L. Zhu, M.J. Evans, M. Legrand, P. Liu, D. Pasteris, Y.-C. Chan, L.T. Murray, and Becky Alexander*, Anthropogenic impacts on tropospheric reactive chlorine since the preindustrial, Geophys. Res. Lett. 48 (14), doi: 10.1029/2021GL093808(2021);
[18] 29. Li, X.C. et al. including L. Geng, Tropical teleconnection impacts on Antarctic Climate Changes, Nat Rev Earth Environ, doi: 10.1038/s43017-021-00204-5 (2021)
[19] 28. Jiang, Z.#, B. Alexander, J. Savarino, J. Erbland, and L. Geng*, Impacts of the photo-driven post-depositional processing on snow nitrate and its isotopes at Summit, Greenland: a model-based study, The Cryosphere, 15, 4207–4220, doi: 10.5194/tc-15-4207-2021 (2021)
[20] 27. Su, G.M.#, Q.C. Yang, Y.R. Tian, T. M. Ma, and L. Geng*, Preparation and characterization of new sulfate reference materials for 17O analysis, J. Anal. At. Spectrom., doi:10.1039/d2ja00022a (2022)
[21] 26. Jiang, Z.#, J. Savarino, B. Alexander, J. Erbland, J.-L. Jaffrezo, and L. Geng*, Impacts of post-depositional processing on nitrate isotopes in the snow and the overlying atmosphere at Summit, Greenland, The Cryosphere, 16, 2709–2724, doi:10.5194/tc-16-2709-2022 (2022)
[22] 25. Ruan, X.#, Zhao, C.*, Zaveri, R. A., He, P., Wang, X., Shao, J., and L. Geng*, On the simulations of aerosol pH in China using WRF-Chem (v4.0): sensitivities of aerosol pH and its temporal variations in haze episodes, Geosci. Model Dev., 15, 6143–6164, doi: 10.5194/gmd-15-6143-2022 (2022)
[23] 24. Zhou, T.#, Z. Jiang, J. C. Zhou, W. X. Zhao, Y. C. Wu, H. Yu, W. K. Li, Z. Y. Zhang, G. M. Su, Ma, T. M. Ma, and L. Geng*, Fast and efficient atmospheric NO2 collection for isotopic analysis by a 3D-printed denuder system, Anal. Chem., doi:10.1021/acs.analchem.2c02839 (2022)
[24] 23. Cao, Y.#, Z. Jiang, B. Alexander, J. Cole-Dai, J. Savarino, J. Erbland, and L. Geng*, On the fingerprint of the Antarctica ozone hole in ice core nitrate isotopes: a case study based on a South Pole ice core, Atmos. Chem. Phys., 22, 13407–13422, doi:10.5194/acp-22-13407-2022 (2022)
[25] 22. Jongebloed, U., A.J. Schauer, J. Cole-Dai, C.G. Larrick, R. Wood, T.P. Fischer, S.A. Carn, S. Salimi, S.R. Edouard, S. Zhai, L. Geng, and B. Alexander, Underestimated passive volcanic degassing implies overestimated aerosol forcing, Geophys. Res. Lett., 50 (1), e22GL102061, doi: 10.1019/2022GL102061 (2023)
[26] 21. Jongebloed, U., A.J. Schauer, S. Hattori, J. Cole-Dai, C.G. Larrick, S. Salimi, S.R. Edouard, L. Geng, and B. Alexander, Quantifying the impact of anthropogenic sulfur emissions on industrial-era Arctic sulfate in a Greenland ice core, Environmental Research Letters, doi:10.1088/1748-9326/acdc3d (2023)
[27] 20. Jongebloed, U., A.J. Schauer, J. Cole-Dai, C.G. Larrick, W.C. Porter, L. Tashmim, S. Zhai, S. Salimi, S.R. Edouard, L. Geng, and B. Alexander, Industrial-era Decline in Arctic Methanesulfonic Acid is Offset by Increased Biogenic Sulfate Aerosol, PNAS, doi: 10.1073/pnas.2307587120 (2023)
[28] 19. Tang, M.J., L. Geng, S.R Tong, Z. Wang, X. Zhang, Preface to “atmospheric geochemistry: A special issue endorsed by IGAC China working group and IAGC China working group”, Applied Geochemistry, doi: 10.1016/j.apgeochem.2024.105903 (2024)
[29] 18. Jiang, Z.#, B. Alexander, J. Savarino, and L. Geng*, An inverse model to correct for the effects of post-depositional processing on ice-core nitrate and its isotopes: model framework and applications at Summit, Greenland and Dome C, Antarctica, Atmos. Chem. Phys., 24, 4895–4914, doi: 10.5194/acp-24-4895-2024 (2024)
[30] 17. Ma, T.M.#, Z. Jiang, M.H. Ding, Y.S Li, W. Zhang, and L. Geng*, A model framework on atmosphere-snow water vapor exchange and the associated isotope effects at Dome Argus, Antarctica Part I: the diurnal changes, The Cryosphere, 18, 4547–4565, doi: 10.5194/tc-18-4547-2024 (2024)
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