Articles | Volume 17, issue 23
https://doi.org/10.5194/amt-17-6819-2024
https://doi.org/10.5194/amt-17-6819-2024
Research article
 | 
04 Dec 2024
Research article |  | 04 Dec 2024

Intercomparison of long-term ground-based measurements of total, tropospheric, and stratospheric ozone at Lauder, New Zealand

Robin Björklund, Corinne Vigouroux, Peter Effertz, Omaira E. García, Alex Geddes, James Hannigan, Koji Miyagawa, Michael Kotkamp, Bavo Langerock, Gerald Nedoluha, Ivan Ortega, Irina Petropavlovskikh, Deniz Poyraz, Richard Querel, John Robinson, Hisako Shiona, Dan Smale, Penny Smale, Roeland Van Malderen, and Martine De Mazière

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Cited articles

Ball, W. T., Alsing, J., Mortlock, D. J., Staehelin, J., Haigh, J. D., Peter, T., Tummon, F., Stübi, R., Stenke, A., Anderson, J., Bourassa, A., Davis, S. M., Degenstein, D., Frith, S., Froidevaux, L., Roth, C., Sofieva, V., Wang, R., Wild, J., Yu, P., Ziemke, J. R., and Rozanov, E. V.: Evidence for a continuous decline in lower stratospheric ozone offsetting ozone layer recovery, Atmos. Chem. Phys., 18, 1379–1394, https://doi.org/10.5194/acp-18-1379-2018, 2018. a
Basher, R. E.: Review of the Dobson spectrophotometer and its accuracy, in: Atmospheric ozone; Proceedings of the Quadrennial, edited by: Zerefos, C. S. and Ghazi, A., Springer, p. 387, https://doi.org/10.1007/978-94-009-5313-0_78, 1985. a
Bass, A. M. and Paur, R. J.: The ultraviolet cross-sections of ozone. I. The measurements. II - Results and temperature dependence, in: Atmospheric ozone; Proceedings of the Quadrennial, edited by: Zerefos, C. S. and Ghazi, A., Springer, 606–616, https://doi.org/10.1007/978-94-009-5313-0_120, 1985. a
Bernet, L., Boyd, I., Nedoluha, G., Querel, R., Swart, D., and Hocke, K.: Validation and Trend Analysis of Stratospheric Ozone Data from Ground-Based Observations at Lauder, New Zealand, Remote Sens., 13, 109, https://doi.org/10.3390/rs13010109, 2020. a, b, c, d, e
Björklund, R., Vigouroux, C., Effertz, P., Shiona, H., Smale, D., Smale, P., Van Malderen, R., De Maziere, M., García, O., Geddes, A., Hannigan, J., Miyagawa, K., Kotkamp, M., Langerock, B., Nedoluha, G., Ortega, I., Petropavlovskikh, I., Poyraz, D., Querel, R., and Robinson, J.: Partial and total ozone column measurements at Lauder (45S, 170E) from FTIR, Dobson, UV2, lidar, ozonesonde, microwave radiometer (Version 1), Royal Belgian Institute for Space Aeronomy [data set], https://doi.org/10.18758/AS5RZ1OH, 2024. a
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Short summary
Different ground-based ozone measurements from the last 2 decades at Lauder are compared to each other. We want to know why different trends have been observed in the stratosphere. Also, the quality and relevance of tropospheric datasets need to be evaluated. While remaining drifts are still present, our study explains roughly half of the differences in observed trends in previous studies and shows the necessity for continuous review and improvement of the measurements.