Methane (CH4) atmospheric mixing ratio measurements are analyzed for the period between June 2013 and November 2018 at the Amazon Tall Tower Observatory (ATTO). We describe the seasonal and diurnal patterns of nighttime events in which CH4 mixing ratios at the uppermost (79 m a.g.l.) inlet are significantly higher than the lowermost inlet (4 m a.g.l.) by 8 ppb or more. These nighttime events were found to be associated with a wind direction originating from the southeast and wind speeds between 2 and 5 m s−1. We found that these events happen under specific nighttime atmospheric conditions when compared to other nights, exhibiting less variable sensible heat flux, low net radiation and a strong thermal stratification above the canopy. Our a...
Methane (CH4) is an important trace gas and the most potent greenhouse gas in the global atmosphere....
High-quality atmospheric CO2 measurements are sparse in Amazonia, but can provide critical insights ...
It is well known that methane (CH4) is emitted from soil, water and wetlands under anaerobic conditi...
Measurements of CH4 mixing ratio, vertical gradients and turbulent fluxes were carried out in a trop...
[1] We sampled air in the canopy layer of undisturbed upland forests during wet and dry seasons at t...
The present study examines the spatiotemporal variability and interrelations of the atmospheric meth...
Nocturnal turbulent kinetic energy (TKE) and fluxes of energy, CO2 and O3 between the Amazon forest ...
Nocturnal turbulent kinetic energy (TKE) and fluxes of energy, CO2 and O3 between the Amazon forest ...
International audienceThe Amazon Basin plays key roles in the carbon and water cycles, climate chang...
Tropical regions, especially the Amazon region, account for large emissions of methane (CH4). Here, ...
The Amazon Basin plays key roles in the carbon and water cycles, climate change, atmospheric chemist...
The Amazon Basin plays key roles in the carbon and water cycles, climate change, atmospheric chemist...
Nocturnal turbulent kinetic energy (TKE) and fluxes of energy, CO2 and O3 between the Amazon forest ...
Tropical forest represents significant sources/sinks for trace gases (C02, O], CH4), and the exchang...
Methane (CH4) is an important trace gas and the most potent greenhouse gas in the global atmosphere....
High-quality atmospheric CO2 measurements are sparse in Amazonia, but can provide critical insights ...
It is well known that methane (CH4) is emitted from soil, water and wetlands under anaerobic conditi...
Measurements of CH4 mixing ratio, vertical gradients and turbulent fluxes were carried out in a trop...
[1] We sampled air in the canopy layer of undisturbed upland forests during wet and dry seasons at t...
The present study examines the spatiotemporal variability and interrelations of the atmospheric meth...
Nocturnal turbulent kinetic energy (TKE) and fluxes of energy, CO2 and O3 between the Amazon forest ...
Nocturnal turbulent kinetic energy (TKE) and fluxes of energy, CO2 and O3 between the Amazon forest ...
International audienceThe Amazon Basin plays key roles in the carbon and water cycles, climate chang...
Tropical regions, especially the Amazon region, account for large emissions of methane (CH4). Here, ...
The Amazon Basin plays key roles in the carbon and water cycles, climate change, atmospheric chemist...
The Amazon Basin plays key roles in the carbon and water cycles, climate change, atmospheric chemist...
Nocturnal turbulent kinetic energy (TKE) and fluxes of energy, CO2 and O3 between the Amazon forest ...
Tropical forest represents significant sources/sinks for trace gases (C02, O], CH4), and the exchang...
Methane (CH4) is an important trace gas and the most potent greenhouse gas in the global atmosphere....
High-quality atmospheric CO2 measurements are sparse in Amazonia, but can provide critical insights ...
It is well known that methane (CH4) is emitted from soil, water and wetlands under anaerobic conditi...