From 2007 to 2013, the globally averaged mole fraction of methane in the atmosphere increased by 5.7 ± 1.2 ppb yr−1. Simultaneously, δ13CCH4 (a measure of the 13C/12C isotope ratio in methane) has shifted to significantly more negative values since 2007. Growth was extreme in 2014, at 12.5 ± 0.4 ppb, with a further shift to more negative values being observed at most latitudes. The isotopic evidence presented here suggests that the methane rise was dominated by significant increases in biogenic methane emissions, particularly in the tropics, for example, from expansion of tropical wetlands in years with strongly positive rainfall anomalies or emissions from increased agricultural sources such as ruminants and rice paddies. Changes in the re...
Atmospheric methane plays a major role in controlling climate, yet contemporary methane trends (1982...
International audienceAtmospheric methane grew very rapidly in 2014 (12.7 ± 0.5 ppb/year), 2015 (10....
International audienceAbstract. After stagnating in the early 2000s, the atmospheric methane growth ...
From 2007 to 2013, the globally averaged mole fraction of methane in the atmosphere increased by 5.7...
From 2007 to 2013, the globally averaged mole fraction of methane in the atmosphere increased by 5.7...
Atmospheric methane grew very rapidly in 2014 (12.7 ± 0.5 ppb/year), 2015 (10.1 ± 0.7 ppb/year), 201...
Atmospheric methane (CH4) concentrations have shown a puzzling resumption in growth since 2007 follo...
Atmospheric methane grew very rapidly in 2014 (12.7±0.5 ppb/yr), 2015 (10.1±0.7 ppb/yr), 2016 (7.0± ...
Atmospheric methane's rapid growth from late 2006 is unprecedented in the observational record. Ass...
Atmospheric methane's rapid growth from late 2006 is unprecedented in the observational record. Asse...
Methane is the second strongest anthropogenic greenhouse gas and its atmospheric burden has more tha...
Atmospheric methane grew very rapidly in 2014 (12.7 +/- 0.5 ppb/year), 2015 (10.1 +/- 0.7 ppb/year),...
Several viable but conflicting explanations have been proposed to explain the recent ~8 p.p.b. per y...
The availability δ13C-CH4 measurements from atmospheric samples has significantly improved in recent...
Atmospheric methane plays a major role in controlling climate, yet contemporary methane trends (1982...
International audienceAtmospheric methane grew very rapidly in 2014 (12.7 ± 0.5 ppb/year), 2015 (10....
International audienceAbstract. After stagnating in the early 2000s, the atmospheric methane growth ...
From 2007 to 2013, the globally averaged mole fraction of methane in the atmosphere increased by 5.7...
From 2007 to 2013, the globally averaged mole fraction of methane in the atmosphere increased by 5.7...
Atmospheric methane grew very rapidly in 2014 (12.7 ± 0.5 ppb/year), 2015 (10.1 ± 0.7 ppb/year), 201...
Atmospheric methane (CH4) concentrations have shown a puzzling resumption in growth since 2007 follo...
Atmospheric methane grew very rapidly in 2014 (12.7±0.5 ppb/yr), 2015 (10.1±0.7 ppb/yr), 2016 (7.0± ...
Atmospheric methane's rapid growth from late 2006 is unprecedented in the observational record. Ass...
Atmospheric methane's rapid growth from late 2006 is unprecedented in the observational record. Asse...
Methane is the second strongest anthropogenic greenhouse gas and its atmospheric burden has more tha...
Atmospheric methane grew very rapidly in 2014 (12.7 +/- 0.5 ppb/year), 2015 (10.1 +/- 0.7 ppb/year),...
Several viable but conflicting explanations have been proposed to explain the recent ~8 p.p.b. per y...
The availability δ13C-CH4 measurements from atmospheric samples has significantly improved in recent...
Atmospheric methane plays a major role in controlling climate, yet contemporary methane trends (1982...
International audienceAtmospheric methane grew very rapidly in 2014 (12.7 ± 0.5 ppb/year), 2015 (10....
International audienceAbstract. After stagnating in the early 2000s, the atmospheric methane growth ...