Publications of Christian Borger

Journal Article (15)

1.
Journal Article
Warnach, S., Sihler , H., Borger, C., Bobrowski, N., Beirle, S., Platt, U. and Wagner, T.: A new accurate retrieval algorithm of bromine monoxide columns inside minor volcanic plumes from Sentinel-5P TROPOMI observations, Atmospheric Measurement Techniques, 16(22), 5537–5573, doi:10.5194/amt-16-5537-2023, 2023.
2.
Journal Article
Beirle, S., Borger, C., Jost, A. and Wagner, T.: Improved catalog of NOx point source emissions (version 2), Earth System Science Data, 15(7), 3051–3073, doi:10.5194/essd-15-3051-2023, 2023.
3.
Journal Article
Borger, C., Beirle, S. and Wagner, T.: A 16-year global climate data record of total column water vapour generated from OMI observations in the visible blue spectral range, Earth System Science Data, 15(7), 3023–3049, doi:10.5194/essd-15-3023-2023, 2023.
4.
Journal Article
Lange, K., Richter, A., Schoenhardt, A., Meier, A. C., Boesch, T., Seyler, A., Krause, K., Behrens, L. K., Wittrock, F., Merlaud, A., Tack, F., Fayt, C., Friedrich, M. M., Dimitropoulou, E., Van Roozendael, M., Kumar, V., Donner, S., Dörner, S., Lauster, B., Razi, M., Borger, C., Uhlmannsiek, K., Wagner, T., Ruhtz, T., Eskes, H., Bohn, B., Diaz, D. S., Abuhassan, N., Schuttemeyer, D. and Burrows, J. P.: Validation of Sentinel-5P TROPOMI tropospheric NO2 products by comparison with NO2 measurements from airborne imaging DOAS, ground-based stationary DOAS, and mobile car DOAS measurements during the S5P-VAL-DE-Ruhr campaign, Atmospheric Measurement Techniques, 16(5), 1357–1389, doi:10.5194/amt-16-1357-2023, 2023.
5.
Journal Article
Herrmann, M., Schöne, M., Borger, C., Warnach, S., Wagner, T., Platt, U. and Gutheil, E.: Ozone depletion events in the Arctic spring of 2019: A new modeling approach to bromine emissions, Atmospheric Chemistry and Physics, 22(20), 13495–13526, doi:10.5194/acp-22-13495-2022, 2022.
6.
Journal Article
Borger, C., Beirle, S. and Wagner, T.: Analysis of global trends of total column water vapour from multiple years of OMI observations, Atmospheric Chemistry and Physics, 22(16), 10603–10621, doi:10.5194/acp-22-10603-2022, 2022.
7.
Journal Article
Beirle, S., Borger, C., Dörner, S., Kumar, V. and Wagner, T.: Calculating the vertical column density of O4 during daytime from surface values of pressure, temperature, and relative humidity, Atmospheric Measurement Techniques, 15(4), 987–1006, doi:10.5194/amt-15-987-2022, 2022.
8.
Journal Article
Küchler, T., Noel, S., Bovensmann, H., Burrows, J. P., Wagner, T., Borger, C., Borsdorff, T. and Schneider, A.: Total water vapour columns derived from Sentinel 5P using the AMC-DOAS method, Atmospheric Measurement Techniques Discussions, 15(2), 297–320, doi:10.5194/amt-15-297-2022, 2022.
9.
Journal Article
Pukite, J., Borger, C., Dörner, S., Gu, M. and Wagner, T.: OClO as observed by TROPOMI: a comparison with meteorological parameters and polar stratospheric cloud observations, Atmospheric Chemistry and Physics, 22(1), 245–272, doi:10.5194/acp-22-245-2022, 2022.
10.
Journal Article
Pukite, J., Borger, C., Dörner, S., Gu, M., Friess, U., Meier, A. C., Enell, C.-F., Raffalski, U., Richter, A. and Wagner, T.: Retrieval algorithm for OClO from TROPOMI (TROPOspheric Monitoring Instrument) by differential optical absorption spectroscopy, Atmospheric Measurement Techniques, 14(12), 7595–7625, doi:10.5194/amt-14-7595-2021, 2021.
11.
Journal Article
Beirle, S., Borger, C., Dörner, S., Eskes, H., Kumar, V., de Laat, A. and Wagner, T.: Catalog of NOx emissions from point sources as derived from the divergence of the NO2 flux for TROPOMI, Earth System Science Data, 13(6), 2995–3012, doi:10.5194/essd-13-2995-2021, 2021.
12.
Journal Article
Sihler, H., Beirle, S., Dörner, S., Gutenstein-Penning de Vries, M., Hörmann, C., Borger, C., Warnach, S. and Wagner, T.: MICRU background map and effective cloud fraction algorithms designed for UV/vis satellite instruments with large viewing angles, Atmospheric Measurement Techniques, 14(6), 3989–4031, doi:10.5194/amt-14-3989-2021, 2021.
13.
Journal Article
Wagner, T., Beirle, S., Dörner, S., Borger, C. and Van Malderen, R.: Identification of atmospheric and oceanic teleconnection patterns in a 20-year global data set of the atmospheric water vapour column measured from satellites in the visible spectral range, Atmospheric Chemistry and Physics, 21(7), 5315–5353, doi:10.5194/acp-21-5315-2021, 2021.
14.
Journal Article
Borger, C., Beirle, S., Dörner, S., Sihler, H. and Wagner, T.: Total column water vapour retrieval from S-5P/TROPOMI in the visible blue spectral range, Atmospheric Measurement Techniques, 13(5), 2751–2783, doi:10.5194/amt-13-2751-2020, 2020.
15.
Journal Article
Beirle, S., Borger, C., Dörner, S., Li, A., Hu, Z., Liu, F., Wang, Y. and Wagner, T.: Pinpointing nitrogen oxide emissions from space, Science Advances, 5(11), doi:10.1126/sciadv.aax9800, 2019.

Meeting Abstract (2)

16.
Meeting Abstract
Jost, A., Beirle, S., Borger, C., Theys , N., Ziegler, S. and Wagner, T.: Improving global SO2 emission inventories using Sentinel-5P TROPOMI satellite data, in EGU General Assembly 2024, Vienna, Austria & Online., 2024.
17.
Meeting Abstract
Wagner, T., Beirle, S. and Borger, C.: High-resolution satellite measurements of NO2 and CO2 in power plant plumes, in EGU General Assembly 2024, Vienna, Austria & Online., 2024.

Thesis - PhD (1)

18.
Thesis - PhD
Borger, C.: Long-term analysis of the global water vapour distribution based on satellite measurements, PhD Thesis, Universität, Mainz, 17 May., 2022.

Working Paper (2)

19.
Working Paper
Wagner, T., Beirle, S., Dörner, S., Borger, C. and Van Malderen, R.: Identification of atmospheric and oceanic teleconnection patterns in a 20-year global data set of the atmospheric water vapor column measured from satellites in the red spectral range, Atmospheric Chemistry and Physics Discussions, 20, doi:10.5194/acp-2020-565, 2020.
20.
Working Paper
Sihler, H., Beirle, S., Dörner, S., Gutenstein-Penning de Vries, M., Hörmann, C., Borger, C., Warnach, S. and Wagner, T.: MICRU background map and effective cloud fraction algorithms designed for UV/vis satellite instruments with large viewing angles, Atmospheric Measurement Techniques Discussions, 13, doi:10.5194/amt-2020-182, 2020.
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