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典型文献
Characterization of Regional Combustion Efficiency using △XCO∶△XCO2 Observed by a Portable Fourier-Transform Spectrometer at an Urban Site in Beijing
文献摘要:
Measurements of column-averaged dry-air mole fractions of carbon dioxide and carbon monoxide,CO2(XCO2)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 CO2 emissions of urban Beijing by analyzing the correlated daily anomalies of XCO and XCO2(e.g.,△XCO and △XCO2).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 △XCO over △XCO2(△XCO:△XCO2)is used to estimate the combustion efficiency in the Beijing region.A high correlation coefficient(0.86)between △XCO and △XCO2 is observed.The CO:CO2 emission ratio estimated from inventories is higher than the observed △XCO:△XCO2(10.46±0.11 ppb ppm-1)by 42.54%-101.15%,indicating an underestimation in combustion efficiency in the inventories.Daily △XCO:△XCO2 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(umol 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 CO2 and CO were used to evaluate the regional emissions.The CO2 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.
文献关键词:
作者姓名:
Ke CHE;Yi LIU;Zhaonan CAI;Dongxu YANG;Haibo WANG;Denghui JI;Yang YANG;Pucai WANG
作者机构:
Key Laboratory of Middle Atmosphere and Global Environment Observation,Institute of Atmospheric Physics,Chinese Academy of Science,Beijing 100029,China;Carbon Neutrality Research Center,Institute of Atmospheric Physics,Chinese Academy of Science,Beijing 100029,China;University of Chinese Academy of Science,Beijing 100049,China
引用格式:
[1]Ke CHE;Yi LIU;Zhaonan CAI;Dongxu YANG;Haibo WANG;Denghui JI;Yang YANG;Pucai WANG-.Characterization of Regional Combustion Efficiency using △XCO∶△XCO2 Observed by a Portable Fourier-Transform Spectrometer at an Urban Site in Beijing)[J].大气科学进展(英文版),2022(08):1299-1315
A类:
XCO,EM27,125HR,Xianghe,convolving,STILT
B类:
Characterization,Regional,Combustion,Efficiency,using,XCO2,Observed,by,Portable,Fourier,Transform,Spectrometer,Urban,Site,Beijing,Measurements,column,averaged,dry,air,mole,fractions,carbon,dioxide,monoxide,were,performed,throughout,urban,compact,FTS,SUN,This,data,set,used,assess,characteristics,combustion,emissions,analyzing,correlated,daily,anomalies,measurements,calibrated,station,extra,instrument,transferred,between,two,sites,ratio,efficiency,correlation,coefficient,observed,from,inventories,higher,than,ppb,ppm,indicating,underestimation,Daily,influenced,transportation,governed,weather,conditions,except,days,summer,when,low,due,terrestrial,biotic,activity,By,footprint,umol,generated,Weather,Research,Forecasting,Stochastic,Time,Inverted,Lagrangian,Transport,models,WRF,fossil,fuel,Multi,resolution,Emission,Inventory,China,MEIC,Peking,University,PKU,inventory,enhancements,evaluate,regional,appear,underestimated,respectively,while,overestimated,area
AB值:
0.466654
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