In the latest projections of future greenhouse gas emissions for the Intergovernmental Panel on Climate Change (IPCC), few Earth System Models included the effect of nitrogen limitation, a key process limiting forest regrowth. Few included forest management (wood harvest). We estimate the impacts of nitrogen limitation on the CO2 emissions from land use and land use change (LULUC), including wood harvest, for the period 1900–2100. We use a land surface model that includes a fully coupled carbon and nitrogen cycle and accounts for forest regrowth processes following agricultural abandonment and wood harvest. Future projections are based on the four Representation Concentration Pathways used in the IPCC Fifth Assessment Report, and we ...
Carbon emissions from anthropogenic land use (LU) and land use change (LUC) are quantified with a Dy...
Anthropogenic activities such as fossil fuel production and Land Use and Land Use Changes (LULCC) ha...
The effects of nitrogen (N) constraints on future terrestrial carbon (C) dynamics are investigated u...
In the latest projections of future greenhouse gas emissions for the Intergovernmental Panel on Cli...
We examine the impact of land use and land cover change (LULCC) over the period from 1850 to 2005 us...
Abstract Background The amount of reactive nitrogen deposited on land has doubled globally and becom...
Background: The amount of reactive nitrogen deposited on land has doubled globally and become at lea...
The distribution of sources and sinks of carbon over the land surface is dominated by changes in lan...
We use a terrestrial carbon-nitrogen cycle component of the Integrated Science Assessment Model (ISA...
BACKGROUND:The amount of reactive nitrogen deposited on land has doubled globally and become at leas...
BACKGROUND:The amount of reactive nitrogen deposited on land has doubled globally and become at leas...
Increase of forest areas has the potential to increase the terrestrial carbon (C) sink. However, the...
Increase of forest areas has the potential to increase the terrestrial carbon (C) sink. However, the...
Carbon emissions from anthropogenic land use (LU) and land use change (LUC) are quantified with a Dy...
Carbon emissions from anthropogenic land use (LU) and land use change (LUC) are quantified with a Dy...
Carbon emissions from anthropogenic land use (LU) and land use change (LUC) are quantified with a Dy...
Anthropogenic activities such as fossil fuel production and Land Use and Land Use Changes (LULCC) ha...
The effects of nitrogen (N) constraints on future terrestrial carbon (C) dynamics are investigated u...
In the latest projections of future greenhouse gas emissions for the Intergovernmental Panel on Cli...
We examine the impact of land use and land cover change (LULCC) over the period from 1850 to 2005 us...
Abstract Background The amount of reactive nitrogen deposited on land has doubled globally and becom...
Background: The amount of reactive nitrogen deposited on land has doubled globally and become at lea...
The distribution of sources and sinks of carbon over the land surface is dominated by changes in lan...
We use a terrestrial carbon-nitrogen cycle component of the Integrated Science Assessment Model (ISA...
BACKGROUND:The amount of reactive nitrogen deposited on land has doubled globally and become at leas...
BACKGROUND:The amount of reactive nitrogen deposited on land has doubled globally and become at leas...
Increase of forest areas has the potential to increase the terrestrial carbon (C) sink. However, the...
Increase of forest areas has the potential to increase the terrestrial carbon (C) sink. However, the...
Carbon emissions from anthropogenic land use (LU) and land use change (LUC) are quantified with a Dy...
Carbon emissions from anthropogenic land use (LU) and land use change (LUC) are quantified with a Dy...
Carbon emissions from anthropogenic land use (LU) and land use change (LUC) are quantified with a Dy...
Anthropogenic activities such as fossil fuel production and Land Use and Land Use Changes (LULCC) ha...
The effects of nitrogen (N) constraints on future terrestrial carbon (C) dynamics are investigated u...