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Characterization of Regional Combustion Efficiency using ΔXCO: ΔXCO(2) Observed by a Portable Fourier-Transform Spectrometer at an Urban Site in Beijing

Measurements of column-averaged dry-air mole fractions of carbon dioxide and carbon monoxide, CO(2) (XCO(2)) and CO (XCO), were performed throughout 2019 at an urban site in Beijing using a compact Fourier Transform Spectrometer (FTS) EM27/SUN. This data set is used to assess the characteristics of...

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Autores principales: Che, Ke, Liu, Yi, Cai, Zhaonan, Yang, Dongxu, Wang, Haibo, Ji, Denghui, Yang, Yang, Wang, Pucai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Science Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9093556/
https://www.ncbi.nlm.nih.gov/pubmed/35578720
http://dx.doi.org/10.1007/s00376-022-1247-7
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author Che, Ke
Liu, Yi
Cai, Zhaonan
Yang, Dongxu
Wang, Haibo
Ji, Denghui
Yang, Yang
Wang, Pucai
author_facet Che, Ke
Liu, Yi
Cai, Zhaonan
Yang, Dongxu
Wang, Haibo
Ji, Denghui
Yang, Yang
Wang, Pucai
author_sort Che, Ke
collection PubMed
description Measurements of column-averaged dry-air mole fractions of carbon dioxide and carbon monoxide, CO(2) (XCO(2)) and CO (XCO), were performed throughout 2019 at an urban site in Beijing using a compact Fourier Transform Spectrometer (FTS) EM27/SUN. This data set is used to assess the characteristics of combustion-related CO(2) emissions of urban Beijing by analyzing the correlated daily anomalies of XCO and XCO(2) (e.g., ΔXCO and ΔXCO(2)). The EM27/SUN measurements were calibrated to a 125HR-FTS at the Xianghe station by an extra EM27/SUN instrument transferred between two sites. The ratio of ΔXCO over ΔXCO(2) (ΔXCO:ΔXCO(2)) is used to estimate the combustion efficiency in the Beijing region. A high correlation coefficient (0.86) between ΔXCO and ΔXCO(2) is observed. The CO:CO(2) emission ratio estimated from inventories is higher than the observed ΔXCO:ΔXCO(2) (10.46 ± 0.11 ppb ppm(−1)) by 42.54%–101.15%, indicating an underestimation in combustion efficiency in the inventories. Daily ΔXCO:ΔXCO(2) are influenced by transportation governed by weather conditions, except for days in summer when the correlation is low due to the terrestrial biotic activity. By convolving the column footprint [ppm (µmol m(−2) s(−1))(−1)] generated by the Weather Research and Forecasting-X-Stochastic Time-Inverted Lagrangian Transport models (WRF-X-STILT) with two fossil-fuel emission inventories (the Multi-resolution Emission Inventory for China (MEIC) and the Peking University (PKU) inventory), the observed enhancements of CO(2) and CO were used to evaluate the regional emissions. The CO(2) emissions appear to be underestimated by 11% and 49% for the MEIC and PKU inventories, respectively, while CO emissions were overestimated by MEIC (30%) and PKU (35%) in the Beijing area.
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spelling pubmed-90935562022-05-12 Characterization of Regional Combustion Efficiency using ΔXCO: ΔXCO(2) Observed by a Portable Fourier-Transform Spectrometer at an Urban Site in Beijing Che, Ke Liu, Yi Cai, Zhaonan Yang, Dongxu Wang, Haibo Ji, Denghui Yang, Yang Wang, Pucai Adv Atmos Sci Original Paper Measurements of column-averaged dry-air mole fractions of carbon dioxide and carbon monoxide, CO(2) (XCO(2)) and CO (XCO), were performed throughout 2019 at an urban site in Beijing using a compact Fourier Transform Spectrometer (FTS) EM27/SUN. This data set is used to assess the characteristics of combustion-related CO(2) emissions of urban Beijing by analyzing the correlated daily anomalies of XCO and XCO(2) (e.g., ΔXCO and ΔXCO(2)). The EM27/SUN measurements were calibrated to a 125HR-FTS at the Xianghe station by an extra EM27/SUN instrument transferred between two sites. The ratio of ΔXCO over ΔXCO(2) (ΔXCO:ΔXCO(2)) is used to estimate the combustion efficiency in the Beijing region. A high correlation coefficient (0.86) between ΔXCO and ΔXCO(2) is observed. The CO:CO(2) emission ratio estimated from inventories is higher than the observed ΔXCO:ΔXCO(2) (10.46 ± 0.11 ppb ppm(−1)) by 42.54%–101.15%, indicating an underestimation in combustion efficiency in the inventories. Daily ΔXCO:ΔXCO(2) are influenced by transportation governed by weather conditions, except for days in summer when the correlation is low due to the terrestrial biotic activity. By convolving the column footprint [ppm (µmol m(−2) s(−1))(−1)] generated by the Weather Research and Forecasting-X-Stochastic Time-Inverted Lagrangian Transport models (WRF-X-STILT) with two fossil-fuel emission inventories (the Multi-resolution Emission Inventory for China (MEIC) and the Peking University (PKU) inventory), the observed enhancements of CO(2) and CO were used to evaluate the regional emissions. The CO(2) emissions appear to be underestimated by 11% and 49% for the MEIC and PKU inventories, respectively, while CO emissions were overestimated by MEIC (30%) and PKU (35%) in the Beijing area. Science Press 2022-05-11 2022 /pmc/articles/PMC9093556/ /pubmed/35578720 http://dx.doi.org/10.1007/s00376-022-1247-7 Text en © Institute of Atmospheric Physics/Chinese Academy of Sciences, and Science Press and Springer-Verlag GmbH Germany, part of Springer Nature 2022 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Original Paper
Che, Ke
Liu, Yi
Cai, Zhaonan
Yang, Dongxu
Wang, Haibo
Ji, Denghui
Yang, Yang
Wang, Pucai
Characterization of Regional Combustion Efficiency using ΔXCO: ΔXCO(2) Observed by a Portable Fourier-Transform Spectrometer at an Urban Site in Beijing
title Characterization of Regional Combustion Efficiency using ΔXCO: ΔXCO(2) Observed by a Portable Fourier-Transform Spectrometer at an Urban Site in Beijing
title_full Characterization of Regional Combustion Efficiency using ΔXCO: ΔXCO(2) Observed by a Portable Fourier-Transform Spectrometer at an Urban Site in Beijing
title_fullStr Characterization of Regional Combustion Efficiency using ΔXCO: ΔXCO(2) Observed by a Portable Fourier-Transform Spectrometer at an Urban Site in Beijing
title_full_unstemmed Characterization of Regional Combustion Efficiency using ΔXCO: ΔXCO(2) Observed by a Portable Fourier-Transform Spectrometer at an Urban Site in Beijing
title_short Characterization of Regional Combustion Efficiency using ΔXCO: ΔXCO(2) Observed by a Portable Fourier-Transform Spectrometer at an Urban Site in Beijing
title_sort characterization of regional combustion efficiency using δxco: δxco(2) observed by a portable fourier-transform spectrometer at an urban site in beijing
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9093556/
https://www.ncbi.nlm.nih.gov/pubmed/35578720
http://dx.doi.org/10.1007/s00376-022-1247-7
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