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Anthropogenic CO2 emissions from a megacity in the Yangtze River Delta of China
by
Wang, Yongwei
, Liu, Shoudong
, Wang, Wei
, Zhang, Mi
, Xiao, Wei
, Hu, Cheng
, Xu, Jiaping
in
Anthropogenic factors
/ Aquatic Pollution
/ Atmospheric models
/ Atmospheric Protection/Air Quality Control/Air Pollution
/ autumn
/ Carbon dioxide
/ Carbon dioxide emissions
/ China
/ Cities
/ Climate change
/ Computer simulation
/ Diurnal
/ diurnal variation
/ Diurnal variations
/ Earth and Environmental Science
/ Ecotoxicology
/ Emission
/ Emissions
/ Environment
/ Environmental Chemistry
/ Environmental Health
/ Environmental science
/ greenhouse gas emissions
/ Laboratories
/ Mathematical models
/ Megacities
/ Methods
/ mixing
/ Mixing ratio
/ Population
/ Population density
/ Regions
/ Research Article
/ river deltas
/ Rivers
/ Science
/ Soil sciences
/ spring
/ summer
/ Urban areas
/ Waste Water Technology
/ Water Management
/ Water Pollution Control
/ Winter
/ Yangtze River
2018
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Anthropogenic CO2 emissions from a megacity in the Yangtze River Delta of China
by
Wang, Yongwei
, Liu, Shoudong
, Wang, Wei
, Zhang, Mi
, Xiao, Wei
, Hu, Cheng
, Xu, Jiaping
in
Anthropogenic factors
/ Aquatic Pollution
/ Atmospheric models
/ Atmospheric Protection/Air Quality Control/Air Pollution
/ autumn
/ Carbon dioxide
/ Carbon dioxide emissions
/ China
/ Cities
/ Climate change
/ Computer simulation
/ Diurnal
/ diurnal variation
/ Diurnal variations
/ Earth and Environmental Science
/ Ecotoxicology
/ Emission
/ Emissions
/ Environment
/ Environmental Chemistry
/ Environmental Health
/ Environmental science
/ greenhouse gas emissions
/ Laboratories
/ Mathematical models
/ Megacities
/ Methods
/ mixing
/ Mixing ratio
/ Population
/ Population density
/ Regions
/ Research Article
/ river deltas
/ Rivers
/ Science
/ Soil sciences
/ spring
/ summer
/ Urban areas
/ Waste Water Technology
/ Water Management
/ Water Pollution Control
/ Winter
/ Yangtze River
2018
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Do you wish to request the book?
Anthropogenic CO2 emissions from a megacity in the Yangtze River Delta of China
by
Wang, Yongwei
, Liu, Shoudong
, Wang, Wei
, Zhang, Mi
, Xiao, Wei
, Hu, Cheng
, Xu, Jiaping
in
Anthropogenic factors
/ Aquatic Pollution
/ Atmospheric models
/ Atmospheric Protection/Air Quality Control/Air Pollution
/ autumn
/ Carbon dioxide
/ Carbon dioxide emissions
/ China
/ Cities
/ Climate change
/ Computer simulation
/ Diurnal
/ diurnal variation
/ Diurnal variations
/ Earth and Environmental Science
/ Ecotoxicology
/ Emission
/ Emissions
/ Environment
/ Environmental Chemistry
/ Environmental Health
/ Environmental science
/ greenhouse gas emissions
/ Laboratories
/ Mathematical models
/ Megacities
/ Methods
/ mixing
/ Mixing ratio
/ Population
/ Population density
/ Regions
/ Research Article
/ river deltas
/ Rivers
/ Science
/ Soil sciences
/ spring
/ summer
/ Urban areas
/ Waste Water Technology
/ Water Management
/ Water Pollution Control
/ Winter
/ Yangtze River
2018
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Anthropogenic CO2 emissions from a megacity in the Yangtze River Delta of China
Journal Article
Anthropogenic CO2 emissions from a megacity in the Yangtze River Delta of China
2018
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Overview
Anthropogenic CO
2
emissions from cities represent a major source contributing to the global atmospheric CO
2
burden. Here, we examined the enhancement of atmospheric CO
2
mixing ratios by anthropogenic emissions within the Yangtze River Delta (YRD), China, one of the world’s most densely populated regions (population greater than 150 million). Tower measurements of CO
2
mixing ratios were conducted from March 2013 to August 2015 and were combined with numerical source footprint modeling to help constrain the anthropogenic CO
2
emissions. We simulated the CO
2
enhancements (i.e., fluctuations superimposed on background values) for winter season (December, January, and February). Overall, we observed mean diurnal variation of CO
2
enhancement of 23.5~49.7 μmol mol
−1
, 21.4~52.4 μmol mol
−1
, 28.1~55.4 μmol mol
−1
, and 29.5~42.4 μmol mol
−1
in spring, summer, autumn, and winter, respectively. These enhancements were much larger than previously reported values for other countries. The diurnal CO
2
enhancements reported here showed strong similarity for all 3 years of the study. Results from source footprint modeling indicated that our tower observations adequately represent emissions from the broader YRD area. Here, the east of Anhui and the west of Jiangsu province contributed significantly more to the anthropogenic CO
2
enhancement compared to the other sectors of YRD. The average anthropogenic CO
2
emission in 2014 was 0.162 (± 0.005) mg m
−2
s
−1
and was 7 ± 3% higher than 2010 for the YRD. Overall, our emission estimates were significantly smaller (9.5%) than those estimated (0.179 mg m
−2
s
−1
) from the EDGAR emission database.
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