Benjamin R K Runkle
Datos Biográficos
| ID | 6822490 |
|---|---|
| NOMBRE | Benjamin R K Runkle |
| NOMBRES | Benjamin R K |
| APELLIDO | Runkle |
| FIRMA | RUNKLE B R K |
| AFILIACIONES | Universität Hamburg |
| ORCID | 0000-0002-2583-1199 |
| VERIFICADO | Sí |
| TOTAL DE OBRAS | 4 |
| TOTAL DE CITAS | 0 |
| TOTAL COMO AUTOR | 4 |
| TOTAL COMO EDITOR | 0 |
| PRIMER AÑO DE PUBLICACIÓN | 2014 |
| AÑO MÁS RECIENTE DE PUBLICACIÓN | 2025 |
| ÍNDICE H | 0 |
Advancements and opportunities to improve bottom–up estimates of global wetland methane emissions
Wetlands are the single largest natural source of atmospheric methane (CH 4 ), contributing approximately 30% of total surface CH 4 emissions, and they have been identified as the largest source of uncertainty in the global CH 4 budget based on the most recent Global Carbon Project CH 4 report. High uncertainties in the bottom–up estimates of wetland CH 4 emissions pose significant challenges for accurately understanding their spatiotemporal vari…
Assessing the methane mitigation potential of innovative management in US rice production
Rice is an important global crop while also contributing significant anthropogenic methane (CH 4 ) emissions. To support the future of rice production, more information is needed on the impacts of sustainability-driven management used to grow rice with lower associated methane emissions. Recent support for the impacts of different growing practices in the US has prompted the application of a regional methodology (Tier 2) to estimate methane emiss…
The biophysical climate mitigation potential of boreal peatlands during the growing season
Peatlands and forests cover large areas of the boreal biome and are critical for global climate regulation. They also regulate regional climate through heat and water vapour exchange with the atmosphere. Understanding how land-atmosphere interactions in peatlands differ from forests may therefore be crucial for modelling boreal climate system dynamics and for assessing climate benefits of peatland conservation and restoration. To assess the bioph…
Seasonal variability as a source of uncertainty in the West Siberian regional CH 4 flux upscaling
This study compares seasonal and spatial variations in methane fluxes as sources of uncertainty in regional CH 4 flux upscaling from the wetlands of West Siberia. The study examined variability in summertime CH 4 emissions from boreal peatlands, with a focus on two subtaiga fen sites in the southern part of West Siberia (Novosibirskaya oblast). We measured CH 4 flux, water table depth, air and peat temperature, pH and electric conductivity of pea…
Sin obras prominentes en esta página.
Seasonal variability as a source of uncertainty in the West Siberian regional CH 4 flux upscaling
This study compares seasonal and spatial variations in methane fluxes as sources of uncertainty in regional CH 4 flux upscaling from the wetlands of West Siberia. The study examined variability in summertime CH 4 emissions from boreal peatlands, with a focus on two subtaiga fen sites in the southern part of West Siberia (Novosibirskaya oblast). We measured CH 4 flux, water table depth, air and peat temperature, pH and electric conductivity of pea…
The biophysical climate mitigation potential of boreal peatlands during the growing season
Peatlands and forests cover large areas of the boreal biome and are critical for global climate regulation. They also regulate regional climate through heat and water vapour exchange with the atmosphere. Understanding how land-atmosphere interactions in peatlands differ from forests may therefore be crucial for modelling boreal climate system dynamics and for assessing climate benefits of peatland conservation and restoration. To assess the bioph…
Assessing the methane mitigation potential of innovative management in US rice production
Rice is an important global crop while also contributing significant anthropogenic methane (CH 4 ) emissions. To support the future of rice production, more information is needed on the impacts of sustainability-driven management used to grow rice with lower associated methane emissions. Recent support for the impacts of different growing practices in the US has prompted the application of a regional methodology (Tier 2) to estimate methane emiss…
Advancements and opportunities to improve bottom–up estimates of global wetland methane emissions
Wetlands are the single largest natural source of atmospheric methane (CH 4 ), contributing approximately 30% of total surface CH 4 emissions, and they have been identified as the largest source of uncertainty in the global CH 4 budget based on the most recent Global Carbon Project CH 4 report. High uncertainties in the bottom–up estimates of wetland CH 4 emissions pose significant challenges for accurately understanding their spatiotemporal vari…
Environmental Science (4 obras) · Atmospheric and Environmental Gas Dynamics (3 obras) · Ecology (3 obras) · Geography (3 obras) · Geology (3 obras) · Peatlands and Wetlands Ecology (3 obras) · Atmospheric sciences (2 obras) · Boreal (2 obras) · Climate change and permafrost (2 obras) · Climatology (2 obras)