Nicola Gedney
Datos Biográficos
| ID | 7994498 |
|---|---|
| NOMBRE | Nicola Gedney |
| NOMBRES | Nicola |
| APELLIDO | Gedney |
| FIRMA | GEDNEY N |
| AFILIACIONES | Met Office |
| ORCID | 0000-0002-2165-5239 |
| VERIFICADO | Sí |
| TOTAL DE OBRAS | 4 |
| TOTAL DE CITAS | 0 |
| TOTAL COMO AUTOR | 4 |
| TOTAL COMO EDITOR | 0 |
| PRIMER AÑO DE PUBLICACIÓN | 2017 |
| AÑO MÁS RECIENTE DE PUBLICACIÓN | 2024 |
| ÍNDICE H | 0 |
Critical needs to close monitoring gaps in pan-tropical wetland CH 4 emissions
Global wetlands are the largest and most uncertain natural source of atmospheric methane (CH 4 ). The FLUXNET-CH 4 synthesis initiative has established a global network of flux tower infrastructure, offering valuable data products and fostering a dedicated community for the measurement and analysis of methane flux data. Existing studies using the FLUXNET-CH 4 Community Product v1.0 have provided invaluable insights into the drivers of ecosystem-t…
The Global Methane Budget 2000–2017
Understanding and quantifying the global methane (CH4) budget is important for assessing realistic pathways to mitigate climate change. Atmospheric emissions and concentrations of CH4 continue to increase, making CH4 the second most important human-influenced greenhouse gas in terms of climate forcing, after carbon dioxide (CO2). The relative importance of CH4 compared to CO2 depends on its shorter atmospheric lifetime, stronger warming potential…
Significant feedbacks of wetland methane release on climate change and the causes of their uncertainty
Emissions from wetlands are the single largest source of the atmospheric greenhouse gas (GHG) methane (CH 4 ). This may increase in a warming climate, leading to a positive feedback on climate change. For the first time, we extend interactive wetland CH 4 emissions schemes to include the recently quantified, significant process of CH 4 transfer through tropical trees. We constrain the parameterisations using a multi-site flux study, and biogeoche…
Global wetland contribution to 2000–2012 atmospheric methane growth rate dynamics
Increasing atmospheric methane (CH 4 ) concentrations have contributed to approximately 20% of anthropogenic climate change. Despite the importance of CH 4 as a greenhouse gas, its atmospheric growth rate and dynamics over the past two decades, which include a stabilization period (1999–2006), followed by renewed growth starting in 2007, remain poorly understood. We provide an updated estimate of CH 4 emissions from wetlands, the largest natural …
Sin obras prominentes en esta página.
Global wetland contribution to 2000–2012 atmospheric methane growth rate dynamics
Increasing atmospheric methane (CH 4 ) concentrations have contributed to approximately 20% of anthropogenic climate change. Despite the importance of CH 4 as a greenhouse gas, its atmospheric growth rate and dynamics over the past two decades, which include a stabilization period (1999–2006), followed by renewed growth starting in 2007, remain poorly understood. We provide an updated estimate of CH 4 emissions from wetlands, the largest natural …
Significant feedbacks of wetland methane release on climate change and the causes of their uncertainty
Emissions from wetlands are the single largest source of the atmospheric greenhouse gas (GHG) methane (CH 4 ). This may increase in a warming climate, leading to a positive feedback on climate change. For the first time, we extend interactive wetland CH 4 emissions schemes to include the recently quantified, significant process of CH 4 transfer through tropical trees. We constrain the parameterisations using a multi-site flux study, and biogeoche…
The Global Methane Budget 2000–2017
Understanding and quantifying the global methane (CH4) budget is important for assessing realistic pathways to mitigate climate change. Atmospheric emissions and concentrations of CH4 continue to increase, making CH4 the second most important human-influenced greenhouse gas in terms of climate forcing, after carbon dioxide (CO2). The relative importance of CH4 compared to CO2 depends on its shorter atmospheric lifetime, stronger warming potential…
Critical needs to close monitoring gaps in pan-tropical wetland CH 4 emissions
Global wetlands are the largest and most uncertain natural source of atmospheric methane (CH 4 ). The FLUXNET-CH 4 synthesis initiative has established a global network of flux tower infrastructure, offering valuable data products and fostering a dedicated community for the measurement and analysis of methane flux data. Existing studies using the FLUXNET-CH 4 Community Product v1.0 have provided invaluable insights into the drivers of ecosystem-t…
Atmospheric and Environmental Gas Dynamics (4 obras) · Environmental Science (4 obras) · Ecology (3 obras) · Methane (3 obras) · Wetland (3 obras) · Atmospheric sciences (2 obras) · Biogeochemical cycle (2 obras) · Chemistry (2 obras) · Climate change (2 obras) · Climate variability and models (2 obras)