TCCON and NDACC X CO measurements: difference, discussion and application

Column-averaged dry-air mole fraction of CO (X CO ) measurements are obtained from two ground-based Fourier transform infrared (FTIR) spectrometer networks: the Total Carbon Column Observing Network (TCCON) and the Network for the Detection of Atmospheric Composition Change (NDACC). In this study, t...

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Published in:Atmospheric Measurement Techniques
Main Authors: M. Zhou, B. Langerock, C. Vigouroux, M. K. Sha, C. Hermans, J.-M. Metzger, H. Chen, M. Ramonet, R. Kivi, P. Heikkinen, D. Smale, D. F. Pollard, N. Jones, V. A. Velazco, O. E. García, M. Schneider, M. Palm, T. Warneke, M. De Mazière
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2019
Subjects:
Online Access:https://doi.org/10.5194/amt-12-5979-2019
https://doaj.org/article/4758b2954ff3436f9420559b0c56c578
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author M. Zhou
B. Langerock
C. Vigouroux
M. K. Sha
C. Hermans
J.-M. Metzger
H. Chen
M. Ramonet
R. Kivi
P. Heikkinen
D. Smale
D. F. Pollard
N. Jones
V. A. Velazco
O. E. García
M. Schneider
M. Palm
T. Warneke
M. De Mazière
author_facet M. Zhou
B. Langerock
C. Vigouroux
M. K. Sha
C. Hermans
J.-M. Metzger
H. Chen
M. Ramonet
R. Kivi
P. Heikkinen
D. Smale
D. F. Pollard
N. Jones
V. A. Velazco
O. E. García
M. Schneider
M. Palm
T. Warneke
M. De Mazière
author_sort M. Zhou
collection Directory of Open Access Journals: DOAJ Articles
container_issue 11
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container_title Atmospheric Measurement Techniques
container_volume 12
description Column-averaged dry-air mole fraction of CO (X CO ) measurements are obtained from two ground-based Fourier transform infrared (FTIR) spectrometer networks: the Total Carbon Column Observing Network (TCCON) and the Network for the Detection of Atmospheric Composition Change (NDACC). In this study, the differences between the TCCON and NDACC X CO measurements are investigated and discussed based on six NDACC–TCCON sites using data over the period 2007–2017. A direct comparison shows that the NDACC X CO measurements are about 5.5 % larger than the TCCON data at Ny-Ålesund, Bremen, and Izaña (Northern Hemisphere), and the absolute bias between the NDACC and TCCON data is within 2 % at Saint-Denis, Wollongong and Lauder (Southern Hemisphere). The hemispheric dependence of the bias is mainly attributed to their smoothing errors. The systematic smoothing error of the TCCON X CO data varies in the range between 0.2 % (Bremen) and 7.9 % (Lauder), and the random smoothing error varies in the range between 2.0 % and 3.6 %. The systematic smoothing error of NDACC data is between 0.1 % and 0.8 %, and the random smoothing error of NDACC data is about 0.3 %. For TCCON data, the smoothing error is significant because it is higher than the reported uncertainty, particularly at Southern Hemisphere sites. To reduce the influence from the a priori profiles and different vertical sensitivities, the scaled NDACC a priori profiles are used as the common a priori profiles for comparing TCCON and NDACC retrievals. As a result, the biases between TCCON and NDACC X CO measurements become more consistent (5.6 %–8.5 %) with a mean value of 6.8 % at these sites. To determine the sources of the remaining bias, regular AirCore measurements at Orléans and Sodankylä are compared to co-located TCCON measurements. It is found that TCCON X CO measurements are 6.1 ± 1.6 % and 8.0 ± 3.2 % smaller than the AirCore measurements at Orléans and Sodankylä, respectively, indicating that the scaling factor of TCCON X CO data should be around 1.0000 instead ...
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spelling ftdoajarticles:oai:doaj.org/article:4758b2954ff3436f9420559b0c56c578 2025-01-17T00:01:20+00:00 TCCON and NDACC X CO measurements: difference, discussion and application M. Zhou B. Langerock C. Vigouroux M. K. Sha C. Hermans J.-M. Metzger H. Chen M. Ramonet R. Kivi P. Heikkinen D. Smale D. F. Pollard N. Jones V. A. Velazco O. E. García M. Schneider M. Palm T. Warneke M. De Mazière 2019-11-01T00:00:00Z https://doi.org/10.5194/amt-12-5979-2019 https://doaj.org/article/4758b2954ff3436f9420559b0c56c578 EN eng Copernicus Publications https://www.atmos-meas-tech.net/12/5979/2019/amt-12-5979-2019.pdf https://doaj.org/toc/1867-1381 https://doaj.org/toc/1867-8548 doi:10.5194/amt-12-5979-2019 1867-1381 1867-8548 https://doaj.org/article/4758b2954ff3436f9420559b0c56c578 Atmospheric Measurement Techniques, Vol 12, Pp 5979-5995 (2019) Environmental engineering TA170-171 Earthwork. Foundations TA715-787 article 2019 ftdoajarticles https://doi.org/10.5194/amt-12-5979-2019 2022-12-31T02:54:38Z Column-averaged dry-air mole fraction of CO (X CO ) measurements are obtained from two ground-based Fourier transform infrared (FTIR) spectrometer networks: the Total Carbon Column Observing Network (TCCON) and the Network for the Detection of Atmospheric Composition Change (NDACC). In this study, the differences between the TCCON and NDACC X CO measurements are investigated and discussed based on six NDACC–TCCON sites using data over the period 2007–2017. A direct comparison shows that the NDACC X CO measurements are about 5.5 % larger than the TCCON data at Ny-Ålesund, Bremen, and Izaña (Northern Hemisphere), and the absolute bias between the NDACC and TCCON data is within 2 % at Saint-Denis, Wollongong and Lauder (Southern Hemisphere). The hemispheric dependence of the bias is mainly attributed to their smoothing errors. The systematic smoothing error of the TCCON X CO data varies in the range between 0.2 % (Bremen) and 7.9 % (Lauder), and the random smoothing error varies in the range between 2.0 % and 3.6 %. The systematic smoothing error of NDACC data is between 0.1 % and 0.8 %, and the random smoothing error of NDACC data is about 0.3 %. For TCCON data, the smoothing error is significant because it is higher than the reported uncertainty, particularly at Southern Hemisphere sites. To reduce the influence from the a priori profiles and different vertical sensitivities, the scaled NDACC a priori profiles are used as the common a priori profiles for comparing TCCON and NDACC retrievals. As a result, the biases between TCCON and NDACC X CO measurements become more consistent (5.6 %–8.5 %) with a mean value of 6.8 % at these sites. To determine the sources of the remaining bias, regular AirCore measurements at Orléans and Sodankylä are compared to co-located TCCON measurements. It is found that TCCON X CO measurements are 6.1 ± 1.6 % and 8.0 ± 3.2 % smaller than the AirCore measurements at Orléans and Sodankylä, respectively, indicating that the scaling factor of TCCON X CO data should be around 1.0000 instead ... Article in Journal/Newspaper Ny Ålesund Ny-Ålesund Sodankylä Directory of Open Access Journals: DOAJ Articles Ny-Ålesund Sodankylä ENVELOPE(26.600,26.600,67.417,67.417) Atmospheric Measurement Techniques 12 11 5979 5995
spellingShingle Environmental engineering
TA170-171
Earthwork. Foundations
TA715-787
M. Zhou
B. Langerock
C. Vigouroux
M. K. Sha
C. Hermans
J.-M. Metzger
H. Chen
M. Ramonet
R. Kivi
P. Heikkinen
D. Smale
D. F. Pollard
N. Jones
V. A. Velazco
O. E. García
M. Schneider
M. Palm
T. Warneke
M. De Mazière
TCCON and NDACC X CO measurements: difference, discussion and application
title TCCON and NDACC X CO measurements: difference, discussion and application
title_full TCCON and NDACC X CO measurements: difference, discussion and application
title_fullStr TCCON and NDACC X CO measurements: difference, discussion and application
title_full_unstemmed TCCON and NDACC X CO measurements: difference, discussion and application
title_short TCCON and NDACC X CO measurements: difference, discussion and application
title_sort tccon and ndacc x co measurements: difference, discussion and application
topic Environmental engineering
TA170-171
Earthwork. Foundations
TA715-787
topic_facet Environmental engineering
TA170-171
Earthwork. Foundations
TA715-787
url https://doi.org/10.5194/amt-12-5979-2019
https://doaj.org/article/4758b2954ff3436f9420559b0c56c578