Fertilization of nitrogen (N)-limited ecosystems by anthropogenic atmospheric nitrogen deposition (Ndep) may promote CO2 removal from the atmosphere, thereby buffering human effects on global radiative forcing. We used the biogeochemical ecosystem model N14CP, which considers interactions among C (carbon), N and P (phosphorus), driven by a new reconstruction of historical Ndep, to assess the responses of soil organic carbon (SOC) stocks in British semi-natural landscapes to anthropogenic change. We calculate that increased net primary production due to Ndep has enhanced detrital inputs of C to soils, causing an average increase of 1.2 kgCm−2 (c. 10%) in soil SOC over the period 1750–2010. The simulation results are consistent with observed ...
A model of the interacting global carbon and nitrogen cycles (CQUESTN) is developed to explore the p...
Understanding how agricultural practices alter biogeochemical cycles is vital for maintaining land p...
Humans dominate many important Earth system processes including the nitrogen (N) cycle. Atmospheric ...
Fertilization of nitrogen (N)-limited ecosystems by anthropogenic atmospheric nitrogen deposition (N...
AbstractUnderstanding changes in plant-soil C, N and P using data alone is difficult due to the link...
Understanding changes in plant-soil C, N and P using data alone is difficult due to the linkages bet...
Understanding changes in plant-soil C, N and P using data alone is difficult due to the linkages bet...
Understanding changes in plant-soil C, N and P using data alone is difficult due to the linkages bet...
Models are needed to understand how plant-soil nutrient stores and fluxes have responded to the last...
Throughout the Anthropocene, the conversion of land to agriculture and atmospheric deposition of nit...
Anthropogenic fossil fuel burning increases atmospheric carbon dioxide (CO2) concentration, which is...
The dynamic model N14C simulates changes in the plant-soil dynamics of nitrogen and carbon, brought ...
Carbon stores in the terrestrial biosphere globally represent over 50 % of present-day organic carbo...
Models are needed to understand how plant‐soil nutrient stores and fluxes have responded to the last...
Plant growth in nitrogen (N)-limited, unfertilised terrestrial ecosystems should respond to addition...
A model of the interacting global carbon and nitrogen cycles (CQUESTN) is developed to explore the p...
Understanding how agricultural practices alter biogeochemical cycles is vital for maintaining land p...
Humans dominate many important Earth system processes including the nitrogen (N) cycle. Atmospheric ...
Fertilization of nitrogen (N)-limited ecosystems by anthropogenic atmospheric nitrogen deposition (N...
AbstractUnderstanding changes in plant-soil C, N and P using data alone is difficult due to the link...
Understanding changes in plant-soil C, N and P using data alone is difficult due to the linkages bet...
Understanding changes in plant-soil C, N and P using data alone is difficult due to the linkages bet...
Understanding changes in plant-soil C, N and P using data alone is difficult due to the linkages bet...
Models are needed to understand how plant-soil nutrient stores and fluxes have responded to the last...
Throughout the Anthropocene, the conversion of land to agriculture and atmospheric deposition of nit...
Anthropogenic fossil fuel burning increases atmospheric carbon dioxide (CO2) concentration, which is...
The dynamic model N14C simulates changes in the plant-soil dynamics of nitrogen and carbon, brought ...
Carbon stores in the terrestrial biosphere globally represent over 50 % of present-day organic carbo...
Models are needed to understand how plant‐soil nutrient stores and fluxes have responded to the last...
Plant growth in nitrogen (N)-limited, unfertilised terrestrial ecosystems should respond to addition...
A model of the interacting global carbon and nitrogen cycles (CQUESTN) is developed to explore the p...
Understanding how agricultural practices alter biogeochemical cycles is vital for maintaining land p...
Humans dominate many important Earth system processes including the nitrogen (N) cycle. Atmospheric ...