A review of datasets and methods for deriving spatiotemporal distributions of atmospheric CO2

C He, M Ji, ML Grieneisen, Y Zhan - Journal of Environmental …, 2022 - Elsevier
As the most abundant greenhouse gas, atmospheric carbon dioxide (CO 2) is considered
one of the main attributors to climate change. Atmospheric CO 2 concentrations can be …

[HTML][HTML] Seamless mapping of long-term (2010–2020) daily global XCO and XCH from the Greenhouse Gases Observing Satellite (GOSAT), Orbiting Carbon …

Y Wang, Q Yuan, T Li, Y Yang, S Zhou… - Earth System Science …, 2023 - essd.copernicus.org
Precise and continuous monitoring of long-term carbon dioxide (CO 2) and methane (CH 4)
over the globe is of great importance, which can help study global warming and achieve the …

Full-coverage mapping high-resolution atmospheric CO2 concentrations in China from 2015 to 2020: Spatiotemporal variations and coupled trends with particulate …

Q He, T Ye, X Chen, H Dong, W Wang, Y Liang… - Journal of Cleaner …, 2023 - Elsevier
Understanding the spatiotemporal dynamics of atmospheric carbon dioxide (CO 2) is crucial
for achieving carbon neutrality and safeguarding planetary well-being. Satellite-based …

Mapping contiguous XCO2 by machine learning and analyzing the spatio-temporal variation in China from 2003 to 2019

M Zhang, G Liu - Science of the Total Environment, 2023 - Elsevier
As China is the world's largest CO 2 emitter, it is important to understand the spatio-temporal
variation of atmospheric CO 2 to reduce carbon emissions. Satellite remote sensing for …

[HTML][HTML] Deriving gapless CO2 concentrations using a geographically weighted neural network: China, 2014–2020

L Zhang, T Li, J Wu - International Journal of Applied Earth Observation and …, 2022 - Elsevier
In recent years, China has been experiencing increasing carbon dioxide (CO 2)
concentration. Spaceborne satellites provide important support to monitor CO 2, but the …

Global land 1° mapping dataset of XCO2 from satellite observations of GOSAT and OCO-2 from 2009 to 2020

M Sheng, L Lei, ZC Zeng, W Rao, H Song, C Wu - Big Earth Data, 2023 - Taylor & Francis
ABSTRACT A global mapping data of atmospheric carbon dioxide (CO2) concentrations can
help us to better understand the spatiotemporal variations of CO2 and the driving factors of …

The spatiotemporal evolution and impact mechanism of energy consumption carbon emissions in China from 2010 to 2020 by integrating multisource remote sensing …

M Wang, Y Wang, F Teng, Y Ji - Journal of Environmental Management, 2023 - Elsevier
The spatiotemporal evolution patterns of carbon emissions and their influence mechanisms
are important topics for regional climate change monitoring and research on sustainable …

Deriving Full‐Coverage and Fine‐Scale XCO2 Across China Based on OCO‐2 Satellite Retrievals and CarbonTracker Output

C He, M Ji, T Li, X Liu, D Tang, S Zhang… - Geophysical …, 2022 - Wiley Online Library
Due to the coarse spatial resolution, the column‐averaged dry‐air mole fraction of CO2
(XCO2) data from the CarbonTracker may be inadequate to reflect the spatial heterogeneity …

Examining the role of the main terrestrial factors won the seasonal distribution of atmospheric carbon dioxide concentration over Iran

SM Mousavi, NM Dinan, S Ansarifard, F Borhani… - Journal of the Indian …, 2023 - Springer
Global warming is one of the most important environmental issues from the last few decades
and is causing climate change due to carbon dioxide (CO2) emissions and other …

Generating daily high-resolution and full-coverage XCO2 across China from 2015 to 2020 based on OCO-2 and CAMS data

T Li, J Wu, T Wang - Science of The Total Environment, 2023 - Elsevier
China has set a goal to achieve carbon neutrality by 2060, and satellite remote sensing
allows for acquiring large-range and high-resolution carbon dioxide (CO 2) data, which can …