A comparison of carbon monoxide retrievals between the MOPITT satellite and Canadian high-Arctic ground-based NDACC and TCCON FTIR measurements
Measurements of Pollution In The Troposphere (MOPITT) is an instrument on NASA's Terra satellite that has measured tropospheric carbon monoxide (CO) from early 2000 to the present day. Validation of data from satellite instruments like MOPITT is often conducted using ground-based measurements t...
Published in: | Atmospheric Measurement Techniques |
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Main Authors: | , , , , , , , , , , , , |
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Copernicus Publications
2022
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Online Access: | https://doi.org/10.5194/amt-15-6837-2022 https://doaj.org/article/48474e1e52bd41f281299074cfd73386 |
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author | A. Jalali K. A. Walker K. Strong R. R. Buchholz M. N. Deeter D. Wunch S. Roche T. Wizenberg E. Lutsch E. McGee H. M. Worden P. Fogal J. R. Drummond |
author_facet | A. Jalali K. A. Walker K. Strong R. R. Buchholz M. N. Deeter D. Wunch S. Roche T. Wizenberg E. Lutsch E. McGee H. M. Worden P. Fogal J. R. Drummond |
author_sort | A. Jalali |
collection | Directory of Open Access Journals: DOAJ Articles |
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container_title | Atmospheric Measurement Techniques |
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description | Measurements of Pollution In The Troposphere (MOPITT) is an instrument on NASA's Terra satellite that has measured tropospheric carbon monoxide (CO) from early 2000 to the present day. Validation of data from satellite instruments like MOPITT is often conducted using ground-based measurements to ensure the continued accuracy of the space-based instrument's measurements and its scientific results. Previous MOPITT validation studies generally found a larger bias in the MOPITT data poleward of 60 ∘ N. In this study, we use data from 2006 to 2019 from the Bruker IFS 125HR Fourier Transform Infrared spectrometer (FTIR) located at the Polar Environment Atmospheric Research Laboratory (PEARL) in Eureka, Nunavut, Canada, to validate the MOPITT version 8 (V8) retrievals. These comparisons utilize mid- and near-infrared FTIR measurements made as part of the Network for the Detection for Atmospheric Composition Change (NDACC) and the Total Carbon Column Observing Network (TCCON), respectively. All MOPITT version 8 retrievals within a radius of 110 km (1 ∘ ) from the PEARL Ridge Laboratory and within a 24 h time interval are used in this validation study. MOPITT retrieval products include those from the near-infrared (NIR) channel, the thermal infrared (TIR) channel, and a joint product from the thermal and near-infrared (TIR–NIR) channels. Each channel's detector has 4 pixels. We calculated the MOPITT pixel-to-pixel biases for each pixel, which were found to vary based on the season and surface type (land or water). The systematic bias for pixel 1 over land is larger than that for other pixels, which can reach up to 20 ppb. We use a small-region approximation method to find filtering criteria. We then apply the filters to the MOPITT dataset to minimize the MOPITT pixel bias and the number of outliers in the dataset. The sensitivity of each MOPITT pixel and each product is examined over the Canadian high Arctic. We then follow the methodologies recommended by NDACC and TCCON for the comparison between the FTIR and satellite ... |
format | Article in Journal/Newspaper |
genre | Arctic Eureka Nunavut |
genre_facet | Arctic Eureka Nunavut |
geographic | Arctic Canada Eureka Nunavut |
geographic_facet | Arctic Canada Eureka Nunavut |
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op_doi | https://doi.org/10.5194/amt-15-6837-2022 |
op_relation | https://amt.copernicus.org/articles/15/6837/2022/amt-15-6837-2022.pdf https://doaj.org/toc/1867-1381 https://doaj.org/toc/1867-8548 doi:10.5194/amt-15-6837-2022 1867-1381 1867-8548 https://doaj.org/article/48474e1e52bd41f281299074cfd73386 |
op_source | Atmospheric Measurement Techniques, Vol 15, Pp 6837-6863 (2022) |
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publisher | Copernicus Publications |
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spelling | ftdoajarticles:oai:doaj.org/article:48474e1e52bd41f281299074cfd73386 2025-01-16T20:35:31+00:00 A comparison of carbon monoxide retrievals between the MOPITT satellite and Canadian high-Arctic ground-based NDACC and TCCON FTIR measurements A. Jalali K. A. Walker K. Strong R. R. Buchholz M. N. Deeter D. Wunch S. Roche T. Wizenberg E. Lutsch E. McGee H. M. Worden P. Fogal J. R. Drummond 2022-11-01T00:00:00Z https://doi.org/10.5194/amt-15-6837-2022 https://doaj.org/article/48474e1e52bd41f281299074cfd73386 EN eng Copernicus Publications https://amt.copernicus.org/articles/15/6837/2022/amt-15-6837-2022.pdf https://doaj.org/toc/1867-1381 https://doaj.org/toc/1867-8548 doi:10.5194/amt-15-6837-2022 1867-1381 1867-8548 https://doaj.org/article/48474e1e52bd41f281299074cfd73386 Atmospheric Measurement Techniques, Vol 15, Pp 6837-6863 (2022) Environmental engineering TA170-171 Earthwork. Foundations TA715-787 article 2022 ftdoajarticles https://doi.org/10.5194/amt-15-6837-2022 2022-12-30T19:37:55Z Measurements of Pollution In The Troposphere (MOPITT) is an instrument on NASA's Terra satellite that has measured tropospheric carbon monoxide (CO) from early 2000 to the present day. Validation of data from satellite instruments like MOPITT is often conducted using ground-based measurements to ensure the continued accuracy of the space-based instrument's measurements and its scientific results. Previous MOPITT validation studies generally found a larger bias in the MOPITT data poleward of 60 ∘ N. In this study, we use data from 2006 to 2019 from the Bruker IFS 125HR Fourier Transform Infrared spectrometer (FTIR) located at the Polar Environment Atmospheric Research Laboratory (PEARL) in Eureka, Nunavut, Canada, to validate the MOPITT version 8 (V8) retrievals. These comparisons utilize mid- and near-infrared FTIR measurements made as part of the Network for the Detection for Atmospheric Composition Change (NDACC) and the Total Carbon Column Observing Network (TCCON), respectively. All MOPITT version 8 retrievals within a radius of 110 km (1 ∘ ) from the PEARL Ridge Laboratory and within a 24 h time interval are used in this validation study. MOPITT retrieval products include those from the near-infrared (NIR) channel, the thermal infrared (TIR) channel, and a joint product from the thermal and near-infrared (TIR–NIR) channels. Each channel's detector has 4 pixels. We calculated the MOPITT pixel-to-pixel biases for each pixel, which were found to vary based on the season and surface type (land or water). The systematic bias for pixel 1 over land is larger than that for other pixels, which can reach up to 20 ppb. We use a small-region approximation method to find filtering criteria. We then apply the filters to the MOPITT dataset to minimize the MOPITT pixel bias and the number of outliers in the dataset. The sensitivity of each MOPITT pixel and each product is examined over the Canadian high Arctic. We then follow the methodologies recommended by NDACC and TCCON for the comparison between the FTIR and satellite ... Article in Journal/Newspaper Arctic Eureka Nunavut Directory of Open Access Journals: DOAJ Articles Arctic Canada Eureka ENVELOPE(-85.940,-85.940,79.990,79.990) Nunavut Atmospheric Measurement Techniques 15 22 6837 6863 |
spellingShingle | Environmental engineering TA170-171 Earthwork. Foundations TA715-787 A. Jalali K. A. Walker K. Strong R. R. Buchholz M. N. Deeter D. Wunch S. Roche T. Wizenberg E. Lutsch E. McGee H. M. Worden P. Fogal J. R. Drummond A comparison of carbon monoxide retrievals between the MOPITT satellite and Canadian high-Arctic ground-based NDACC and TCCON FTIR measurements |
title | A comparison of carbon monoxide retrievals between the MOPITT satellite and Canadian high-Arctic ground-based NDACC and TCCON FTIR measurements |
title_full | A comparison of carbon monoxide retrievals between the MOPITT satellite and Canadian high-Arctic ground-based NDACC and TCCON FTIR measurements |
title_fullStr | A comparison of carbon monoxide retrievals between the MOPITT satellite and Canadian high-Arctic ground-based NDACC and TCCON FTIR measurements |
title_full_unstemmed | A comparison of carbon monoxide retrievals between the MOPITT satellite and Canadian high-Arctic ground-based NDACC and TCCON FTIR measurements |
title_short | A comparison of carbon monoxide retrievals between the MOPITT satellite and Canadian high-Arctic ground-based NDACC and TCCON FTIR measurements |
title_sort | comparison of carbon monoxide retrievals between the mopitt satellite and canadian high-arctic ground-based ndacc and tccon ftir measurements |
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-15-6837-2022 https://doaj.org/article/48474e1e52bd41f281299074cfd73386 |