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A New Regional Background Atmospheric Station in the Yangtze River Delta Region for Carbon Monoxide: Assessment of Spatiotemporal Characteristics and Regional Significance
by
Li, Shan
, Chen, Bingjiang
, Zang, Kunpeng
, Fang, Shuangxi
, Chen, Yuanyuan
, Qi, Bing
, Yu, Yan
, Lin, Yi
, Lu, Meijing
, Liu, Shuo
in
Air monitoring
/ Air pollution
/ Air quality monitoring stations
/ Anthropogenic factors
/ Atmospheric chemistry
/ Atmospheric composition
/ Atmospheric monitoring
/ background observation
/ Calibration
/ Carbon cycle
/ Carbon monoxide
/ carbon monoxide (CO)
/ Climate action
/ Climate change
/ Datasets
/ Diurnal cycle
/ Diurnal variations
/ Emissions
/ Environmental aspects
/ Forests
/ Greenhouse gases
/ Human influences
/ Jupiter
/ Measurement techniques
/ Observations
/ Outdoor air quality
/ Oxidation
/ Regional analysis
/ regional representation
/ Remote sensing
/ Rivers
/ spatiotemporal variations
/ Sustainable development
/ Trajectory analysis
/ Weather stations
2025
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A New Regional Background Atmospheric Station in the Yangtze River Delta Region for Carbon Monoxide: Assessment of Spatiotemporal Characteristics and Regional Significance
by
Li, Shan
, Chen, Bingjiang
, Zang, Kunpeng
, Fang, Shuangxi
, Chen, Yuanyuan
, Qi, Bing
, Yu, Yan
, Lin, Yi
, Lu, Meijing
, Liu, Shuo
in
Air monitoring
/ Air pollution
/ Air quality monitoring stations
/ Anthropogenic factors
/ Atmospheric chemistry
/ Atmospheric composition
/ Atmospheric monitoring
/ background observation
/ Calibration
/ Carbon cycle
/ Carbon monoxide
/ carbon monoxide (CO)
/ Climate action
/ Climate change
/ Datasets
/ Diurnal cycle
/ Diurnal variations
/ Emissions
/ Environmental aspects
/ Forests
/ Greenhouse gases
/ Human influences
/ Jupiter
/ Measurement techniques
/ Observations
/ Outdoor air quality
/ Oxidation
/ Regional analysis
/ regional representation
/ Remote sensing
/ Rivers
/ spatiotemporal variations
/ Sustainable development
/ Trajectory analysis
/ Weather stations
2025
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A New Regional Background Atmospheric Station in the Yangtze River Delta Region for Carbon Monoxide: Assessment of Spatiotemporal Characteristics and Regional Significance
by
Li, Shan
, Chen, Bingjiang
, Zang, Kunpeng
, Fang, Shuangxi
, Chen, Yuanyuan
, Qi, Bing
, Yu, Yan
, Lin, Yi
, Lu, Meijing
, Liu, Shuo
in
Air monitoring
/ Air pollution
/ Air quality monitoring stations
/ Anthropogenic factors
/ Atmospheric chemistry
/ Atmospheric composition
/ Atmospheric monitoring
/ background observation
/ Calibration
/ Carbon cycle
/ Carbon monoxide
/ carbon monoxide (CO)
/ Climate action
/ Climate change
/ Datasets
/ Diurnal cycle
/ Diurnal variations
/ Emissions
/ Environmental aspects
/ Forests
/ Greenhouse gases
/ Human influences
/ Jupiter
/ Measurement techniques
/ Observations
/ Outdoor air quality
/ Oxidation
/ Regional analysis
/ regional representation
/ Remote sensing
/ Rivers
/ spatiotemporal variations
/ Sustainable development
/ Trajectory analysis
/ Weather stations
2025
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A New Regional Background Atmospheric Station in the Yangtze River Delta Region for Carbon Monoxide: Assessment of Spatiotemporal Characteristics and Regional Significance
Journal Article
A New Regional Background Atmospheric Station in the Yangtze River Delta Region for Carbon Monoxide: Assessment of Spatiotemporal Characteristics and Regional Significance
2025
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Overview
A new meteorological station (DMS) was established at the Morning Glory summit in Zhejiang Province to provide regional background information on atmospheric composition in the Yangtze River Delta (YRD) region, China. This study investigated the first carbon monoxide (CO) records at DMS from September 2020 to January 2022. The annual average concentration of CO was 233.4 ± 3.8 ppb, which exceeded the measurements recorded at the other Asian background sites. The winter CO concentration remained elevated but peaked in March in the early spring due to the combined effect of regional emissions within the YRD and transportation impacts of North China and Southeast Asia sources. The diurnal cycle had a nocturnal peak and a morning valley but with a distinct afternoon climb, as the metropolis in the YRD contributed to a local concentration enhancement. The back trajectory analysis and the Weighted Potential Sources Contribution Function (WPSCF) maps highlighted emissions from Anhui, Jiangxi, Zhejiang, and Jiangsu provinces as significant sources. Due to well-mixed air conditions and fewer anthropogenic influences, DMS records closely aligned with the CO averages derived from the Copernicus Atmospheric Monitoring Service (CAMS) covering the YRD, confirming its representativeness for regional CO levels. This study underscored DMS as a valuable station for monitoring and understanding CO spatiotemporal characteristics in the YRD region.
Publisher
MDPI AG
Subject
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