The global methane budget 2000–2017

M Saunois, AR Stavert, B Poulter… - Earth System …, 2019 - essd.copernicus.org
Understanding and quantifying the global methane (CH 4) budget is important for assessing
realistic pathways to mitigate climate change. Atmospheric emissions and concentrations of …

The global methane budget: 2000–2012

M Saunois, P Bousquet, B Poulter… - Earth System …, 2016 - essd.copernicus.org
The global methane (CH 4) budget is becoming an increasingly important component for
managing realistic pathways to mitigate climate change. This relevance, due to a shorter …

Interpreting contemporary trends in atmospheric methane

AJ Turner, C Frankenberg, EA Kort - … of the National Academy of Sciences, 2019 - pnas.org
Atmospheric methane plays a major role in controlling climate, yet contemporary methane
trends (1982–2017) have defied explanation with numerous, often conflicting, hypotheses …

Tropical methane emissions explain large fraction of recent changes in global atmospheric methane growth rate

L Feng, PI Palmer, S Zhu, RJ Parker, Y Liu - Nature communications, 2022 - nature.com
Large variations in the growth of atmospheric methane, a prominent greenhouse gas, are
driven by a diverse range of anthropogenic and natural emissions and by loss from …

Satellite observations of atmospheric methane and their value for quantifying methane emissions

DJ Jacob, AJ Turner, JD Maasakkers… - Atmospheric …, 2016 - acp.copernicus.org
Methane is a greenhouse gas emitted by a range of natural and anthropogenic sources.
Atmospheric methane has been measured continuously from space since 2003, and new …

[HTML][HTML] Global distribution of methane emissions: a comparative inverse analysis of observations from the TROPOMI and GOSAT satellite instruments

Z Qu, DJ Jacob, L Shen, X Lu, Y Zhang… - Atmospheric …, 2021 - acp.copernicus.org
We evaluate the global atmospheric methane column retrievals from the new TROPOMI
satellite instrument and apply them to a global inversion of methane sources for 2019 at 2∘× …

Thermal and near-infrared sensor for carbon observation Fourier transform spectrometer-2 (TANSO-FTS-2) on the Greenhouse gases Observing SATellite-2 (GOSAT …

H Suto, F Kataoka, N Kikuchi… - Atmospheric …, 2021 - amt.copernicus.org
The Japanese Greenhouse gases Observing SATellite-2 (GOSAT-2), in orbit since 29
October 2018, follows up the GOSAT mission, itself in orbit since 23 January 2009. GOSAT-2 …

A global wetland methane emissions and uncertainty dataset for atmospheric chemical transport models (WetCHARTs version 1.0)

AA Bloom, KW Bowman, M Lee… - Geoscientific Model …, 2017 - gmd.copernicus.org
Wetland emissions remain one of the principal sources of uncertainty in the global
atmospheric methane (CH 4) budget, largely due to poorly constrained process controls on …

Global atmospheric carbon monoxide budget 2000–2017 inferred from multi-species atmospheric inversionsFree GPT-4 DeepSeek

B Zheng, F Chevallier, Y Yin, P Ciais… - Earth System …, 2019 - essd.copernicus.org
Atmospheric carbon monoxide (CO) concentrations have been decreasing since 2000, as
observed by both satellite-and ground-based instruments, but global bottom-up emission …

Greenhouse gases Observing SATellite 2 (GOSAT-2): mission overview

R Imasu, T Matsunaga, M Nakajima, Y Yoshida… - Progress in Earth and …, 2023 - Springer
Abstract The Greenhouse gases Observing SATellite 2 (GOSAT-2) was launched in October
2018 as a successor to GOSAT (launched in 2009), the first satellite to specialize in …