Twenty years of ground-based NDACC FTIR spectrometry at Izaña Observatory – overview and long-term comparison to other techniques
-
Published:2021-10-18
Issue:20
Volume:21
Page:15519-15554
-
ISSN:1680-7324
-
Container-title:Atmospheric Chemistry and Physics
-
language:en
-
Short-container-title:Atmos. Chem. Phys.
Author:
García Omaira E.ORCID, Schneider MatthiasORCID, Sepúlveda Eliezer, Hase Frank, Blumenstock ThomasORCID, Cuevas EmilioORCID, Ramos Ramón, Gross Jochen, Barthlott SabineORCID, Röhling Amelie N.ORCID, Sanromá Esther, González YennyORCID, Gómez-Peláez Ángel J.ORCID, Navarro-Comas Mónica, Puentedura OlgaORCID, Yela Margarita, Redondas AlbertoORCID, Carreño Virgilio, León-Luis Sergio F., Reyes Enrique, García Rosa D.ORCID, Rivas Pedro P., Romero-Campos Pedro M., Torres CarlosORCID, Prats Natalia, Hernández Miguel, López César
Abstract
Abstract. High-resolution Fourier transform infrared (FTIR) solar observations are particularly relevant for climate studies, as they allow atmospheric gaseous composition and multiple climate processes to be monitored in detail. In this context, the present paper provides an overview of 20 years of FTIR measurements taken in the framework of the NDACC (Network for the Detection of Atmospheric Composition Change) from 1999 to 2018 at the subtropical Izaña Observatory (IZO, Spain). Firstly, long-term instrumental performance is comprehensively assessed, corroborating the temporal stability and reliable instrumental characterization of the two FTIR spectrometers installed at IZO since 1999. Then, the time series of all trace gases contributing to NDACC at IZO are presented (i.e. C2H6, CH4, ClONO2, CO, HCl, HCN, H2CO, HF, HNO3, N2O, NO2, NO, O3, carbonyl sulfide (OCS), and water vapour isotopologues H216O, H218O, and HD16O), reviewing the major accomplishments drawn from these observations. In order to examine the quality and long-term consistency of the IZO FTIR observations, a comparison of those NDACC products for which other high-quality measurement techniques are available at IZO has been performed (i.e. CH4, CO, H2O, NO2, N2O, and O3). This quality assessment was carried out on different timescales to examine what temporal signals are captured by the FTIR records, and to what extent. After 20 years of operation, the IZO NDACC FTIR observations have been found to be very consistent and reliable over time, demonstrating great potential for climate research. Long-term NDACC FTIR data sets, such as IZO, are indispensable tools for the investigation of atmospheric composition trends, multi-year phenomena, and complex climate feedback processes, as well as for the validation of past and present space-based missions and chemistry climate models.
Funder
Bundesministerium für Wirtschaft und Energie Helmholtz Association European Commission Deutsche Forschungsgemeinschaft Ministerio de Economía y Competitividad European Organization for the Exploitation of Meteorological Satellites
Publisher
Copernicus GmbH
Subject
Atmospheric Science
Reference79 articles.
1. Almansa, A., Cuevas, E., Barreto, Á., Torres, B., García, O., García, R.,
Velasco-Merino, C., Cachorro, V., Berjón, A., Mallorquín, M., López, C.,
Ramos, R., Guirado-Fuentes, C., Negrillo, R., and de Frutos, Á. M.: Column
Integrated Water Vapor and Aerosol Load Characterization with the New ZEN-R52
Radiometer, Remote Sensing, 12, 1424, https://doi.org/10.3390/rs12091424, 2020. a, b, c 2. Bader, W., Bovy, B., Conway, S., Strong, K., Smale, D., Turner, A. J., Blumenstock, T., Boone, C., Collaud Coen, M., Coulon, A., Garcia, O., Griffith, D. W. T., Hase, F., Hausmann, P., Jones, N., Krummel, P., Murata, I., Morino, I., Nakajima, H., O'Doherty, S., Paton-Walsh, C., Robinson, J., Sandrin, R., Schneider, M., Servais, C., Sussmann, R., and Mahieu, E.: The recent increase of atmospheric methane from 10 years of ground-based NDACC FTIR observations since 2005, Atmos. Chem. Phys., 17, 2255–2277, https://doi.org/10.5194/acp-17-2255-2017, 2017. a, b 3. Barthlott, S., Schneider, M., Hase, F., Wiegele, A., Christner, E., González, Y., Blumenstock, T., Dohe, S., García, O. E., Sepúlveda, E., Strong, K., Mendonca, J., Weaver, D., Palm, M., Deutscher, N. M., Warneke, T., Notholt, J., Lejeune, B., Mahieu, E., Jones, N., Griffith, D. W. T., Velazco, V. A., Smale, D., Robinson, J., Kivi, R., Heikkinen, P., and Raffalski, U.: Using XCO2 retrievals for assessing the long-term consistency of NDACC/FTIR data sets, Atmos. Meas. Tech., 8, 1555–1573, https://doi.org/10.5194/amt-8-1555-2015, 2015. a, b, c, d, e, f, g, h 4. Barthlott, S., Schneider, M., Hase, F., Blumenstock, T., Kiel, M., Dubravica, D., García, O. E., Sepúlveda, E., Mengistu Tsidu, G., Takele Kenea, S., Grutter, M., Plaza-Medina, E. F., Stremme, W., Strong, K., Weaver, D., Palm, M., Warneke, T., Notholt, J., Mahieu, E., Servais, C., Jones, N., Griffith, D. W. T., Smale, D., and Robinson, J.: Tropospheric water vapour isotopologue data (H216O, H218O, and HD16O) as obtained from NDACC/FTIR solar absorption spectra, Earth Syst. Sci. Data, 9, 15–29, https://doi.org/10.5194/essd-9-15-2017, 2017. a, b, c, d, e, f, g, h 5. Birk, M. and Wagner, G.: A new spectroscopic database for chlorine nitrate, in:
6th Biennial HITRAN Conference, Cambridge, USA, 2000. a
Cited by
14 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|