Climate change is expected to alter hourly and daily rainfall regimes and, in turn, the dynamics of ecosystem processes controlling greenhouse gas emissions that affect climate. Here, we investigate the effects of expected twenty-first century changes in hourly and daily rainfall on soil carbon and nitrogen emissions, soil organic matter (SOM) stocks, and leaching using a coupled mechanistic carbon and nitrogen soil biogeochemical model (BAMS2). The model represents various abiotic and biotic processes involving 11 SOM pools. These processes include fungal depolymerization, heterotrophic bacterial mineralization, nitrification, denitrification, microbial mortality, necromass decomposition, microbial response to water stress, protection, aqu...
Climate change and increases in nitrogen deposition impact ecosystems globally. Projected atmospheri...
Research on the impacts of climate change on soil organic carbon (SOC) stocks has focused on the eff...
Increases in atmospheric carbon dioxide (CO2) and global air temperature affect all terrestrial ecos...
Climate change is expected to alter hourly and daily rainfall regimes and, in turn, the dynamics of ...
Aims: We evaluated the impacts of altered precipitation regimes on multiple aspects of the C cycle, ...
Changing rainfall patterns will alter soil water availability to plants and microbes and likely impa...
International audienceHigher nitrogen (N) deposition and altered precipitation patterns are two impo...
The effects of climate change on nitrogen turnover processes in soils are still not completely under...
One of the greatest contemporary challenges in terrestrial ecology is to determine the impact of cli...
Grassland ecosystems, which are known to be sensitive to climate change, have shown minimal response...
When trees are planted onto former pastures, soil carbon stocks typically either remain constant or ...
Changing rainfall patterns will alter soil water availability to plants and microbes and likely impa...
Climate warming, altered precipitation and nitrogen deposition may critically affect plant growth an...
Extreme droughts have serious impacts on the pools, fluxes and processes of terrestrial carbon (C) a...
Afforestation of agricultural land is increasing, partly because it is an important biological metho...
Climate change and increases in nitrogen deposition impact ecosystems globally. Projected atmospheri...
Research on the impacts of climate change on soil organic carbon (SOC) stocks has focused on the eff...
Increases in atmospheric carbon dioxide (CO2) and global air temperature affect all terrestrial ecos...
Climate change is expected to alter hourly and daily rainfall regimes and, in turn, the dynamics of ...
Aims: We evaluated the impacts of altered precipitation regimes on multiple aspects of the C cycle, ...
Changing rainfall patterns will alter soil water availability to plants and microbes and likely impa...
International audienceHigher nitrogen (N) deposition and altered precipitation patterns are two impo...
The effects of climate change on nitrogen turnover processes in soils are still not completely under...
One of the greatest contemporary challenges in terrestrial ecology is to determine the impact of cli...
Grassland ecosystems, which are known to be sensitive to climate change, have shown minimal response...
When trees are planted onto former pastures, soil carbon stocks typically either remain constant or ...
Changing rainfall patterns will alter soil water availability to plants and microbes and likely impa...
Climate warming, altered precipitation and nitrogen deposition may critically affect plant growth an...
Extreme droughts have serious impacts on the pools, fluxes and processes of terrestrial carbon (C) a...
Afforestation of agricultural land is increasing, partly because it is an important biological metho...
Climate change and increases in nitrogen deposition impact ecosystems globally. Projected atmospheri...
Research on the impacts of climate change on soil organic carbon (SOC) stocks has focused on the eff...
Increases in atmospheric carbon dioxide (CO2) and global air temperature affect all terrestrial ecos...