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Long-term declining in carbon monoxide(CO)at a rural site of Beijing during 2006-2018 implies the improved combustion efficiency and effective emission control 被引量:1

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摘要 Carbon monoxide(CO)is primarily the result of incomplete combustion,which has impor-tant impacts on the atmospheric chemical cycle and climate.Improved quantitative char-acterization of long-term CO trends is important for both atmospheric modeling and the design and implementation of policies to efficiently control multiple pollutants.Due to the limitations of high time-resolution and high-quality long-term observational data,studies on long-term trends in the CO concentration in China are quite limited.In this study,the observational data of the concentration of CO in a rural site of Beijing during 2006-2018 was used to analyze the long-term trend in CO concentration in Beijing.The Theil-Sen method and the generalized additive model(GAM)-based method,were used to conduct the trend estimation analysis.We found that the concentration of CO at the Shangdianzi site showed a significant downward trend during 2006-2018,with a decline rate of 22.8±5.1 ppbV per year.The declining trend in CO also showed phasic characteristics,with a fast decreasing rate during the period of 2006-2008,stable variations during the period of 2009-2013 and a continuous downward trend after 2013.The declining trend in the CO concentration in the south to west(S-W)sectors where the polluted air masses come from is more rapid than that in the sectors where the clean air masses come from.The declining trend in the CO concentration implies the improved combustion efficiency and the successful air pollution control policies in Beijing and the surrounding area.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2022年第5期432-442,共11页 环境科学学报(英文版)
基金 This study was supported by the National Natural Science Foundation of China(No.41905119) the National Key R&D Program of China(No.2017YFC0209803) the Key Laboratory of Atmospheric Chemistry,China Meteorological Administration,LAC/CMA(No.2019B03) the Beijing Meteorological Service,BMB(No.BMBKJ201901005).
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  • 1Aumann, H. H., D. Gregorich, and S. Gaiser, 2005: AIRS hyperspectral measurements for climate research: Carbon dioxide and nitrous oxide effects. Geophys. Res. Lett., 32, L05806, doi: 10.1029/2004GL021784.
  • 2Barkley, M. P., U. Friefi, and P. S. Monks, 2006a: Measuring atmospheric CO2 from space using Full Spectral Initiation (FSI) WFM-DOAS. Atmos. Chem. Phys., 6, 3517-3534.
  • 3Barkley, M. P., U. Friefi, and P. S. Monks, P. S. Monks, U. Friefi, et al., 2006b: Comparisonsbetween SCIAMACHY atmospheric CO2 retrieved using (FSI) WFM-DOAS to ground based FTIR data and the TM3 chemistry transport model. Atmos. Chem. Phys., 6, 4483-4498.
  • 4Barkley, M. P., U. Friefi, and P. S. Monks, and R. J. Engelen, 2006c: Comparison ofSCIAMACHY and AIRS CO2 measurements over North America during the summer and autumn of 2003. Geophys. Res. Lett., 33, L20805, doi: 10.1029/2006GL026807.
  • 5Barkley, M. P., U. Friefi, and P. S. Monks,A. J. Hewitt, et al., 2007: Assessing the nearsurface sensitivity of SCIAMACHY atmospheric CO2 retrieved using (FSI) WFM-DOAS. Atmos. Chem. _ Phys., 7, 3597-3619.
  • 6Bosch, H., G. C. Toon, B. Sen, et al., 2006: Space-based near-infrared CO2 measurements: Testing the Orbiting Carbon Observatory retrieval algorithm and validation concept using SCIAMACHY observations over Park Falls, Wisconsin. J. Geophys. Res., Ill, D23302, doi: 10.1029/2006JD007080.
  • 7Buchwitz, M., R. de Beek, J. P. Burrows, et al., 2005a: Atmospheric methane and carbon dioxide from SCIAMACHY satellite data: Initial comparison with chemistry and transport models. Atmos. Chem. Phys., 5, 941-962.
  • 8Buchwitz, M., R. de Beek, J. P. Burrows, S. Noel, et al., 2005b: Carbon monoxide,methane, and carbon dioxide retrieved from SCIAMACHY by WFM-DOAS: Year 2003 initial data set. Atmos. Chem. Phys., 5, 3313-3329.
  • 9Buchwitz, M., R. de Beek, J. P. Burrows, et al., 2006: Atmospheric carbon gases retrieved from SCIAMACHY by WFM-DOAS: version0.5 CO and CH4 and impact of calibration improvements on CO2 retrieval. Atmos. Chem. Phys., 6, 2727-2751.
  • 10Buchwitz, M., R. de Beek, J. P. Burrows, O. Schneising, J. P. Burrows, et al., 2007: Firstdirect observation of the atmospheric CO2 yeax-to-year increase from space. Atmos. Chem. Phys., 7, 4249-4256.

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