Fast-growing forests such as tropical secondary forests can accumulate large amounts of carbon (C), and thereby play an important role in the atmospheric CO2 balance. Because nitrogen (N) cycling is inextricably linked with C cycling, the question becomes: Where does the N come from to match high rates of C accumulation? In unique experimental 16-y-old plantations established in abandoned pasture in lowland Costa Rica, we used a mass-balance approach to quantify N accumulation in vegetation, identify sources of N, and evaluate differences among tree species in N cycling. The replicated design contained four broad-leaved evergreen tree species growing under similar environmental conditions. Nitrogen uptake was rapid, reaching 409 (±30) kg⋅ha...
Humid tropical forests are often characterized by large nitrogen (N) pools, and are known to have la...
Understanding how plant functional traits shape nutrient limitation and cycling on land is a major c...
BACKGROUND:The amount of reactive nitrogen deposited on land has doubled globally and become at leas...
A major uncertainty in the land carbon cycle is whether symbiotic nitrogen fixation acts to enhance ...
The observation of high losses of bioavailable nitrogen (N) and N richness in tropical forests is pa...
Nitrogen availability in terrestrial ecosystems strongly influences plant productivity and nutrient ...
Tropical rain forests represent some of the most diverse ecosystems on earth, yet mechanistic links ...
Biological nitrogen fixation is critical for the nitrogen cycle of tropical forests, yet we know lit...
Secondary and managed plantation forests comprise a rapidly increasing portion of the humid tropical...
Tropical forests play a dominant role in the global carbon (C) cycle, and models predict increases i...
Denitrification and hydrologic leaching are the two major pathways by which nitrogen is lost from th...
Forests contribute a significant portion of the land carbon sink, but their ability to sequester CO2...
The impacts of enhanced nitrogen (N) deposition on the global forest carbon (C) sink and other ecosy...
Tropical forests exhibit significant heterogeneity in plant functional and chemical traits that may ...
Temperate forest 15N isotope trace experiments find nitrogen (N) addition-driven carbon (C) uptake i...
Humid tropical forests are often characterized by large nitrogen (N) pools, and are known to have la...
Understanding how plant functional traits shape nutrient limitation and cycling on land is a major c...
BACKGROUND:The amount of reactive nitrogen deposited on land has doubled globally and become at leas...
A major uncertainty in the land carbon cycle is whether symbiotic nitrogen fixation acts to enhance ...
The observation of high losses of bioavailable nitrogen (N) and N richness in tropical forests is pa...
Nitrogen availability in terrestrial ecosystems strongly influences plant productivity and nutrient ...
Tropical rain forests represent some of the most diverse ecosystems on earth, yet mechanistic links ...
Biological nitrogen fixation is critical for the nitrogen cycle of tropical forests, yet we know lit...
Secondary and managed plantation forests comprise a rapidly increasing portion of the humid tropical...
Tropical forests play a dominant role in the global carbon (C) cycle, and models predict increases i...
Denitrification and hydrologic leaching are the two major pathways by which nitrogen is lost from th...
Forests contribute a significant portion of the land carbon sink, but their ability to sequester CO2...
The impacts of enhanced nitrogen (N) deposition on the global forest carbon (C) sink and other ecosy...
Tropical forests exhibit significant heterogeneity in plant functional and chemical traits that may ...
Temperate forest 15N isotope trace experiments find nitrogen (N) addition-driven carbon (C) uptake i...
Humid tropical forests are often characterized by large nitrogen (N) pools, and are known to have la...
Understanding how plant functional traits shape nutrient limitation and cycling on land is a major c...
BACKGROUND:The amount of reactive nitrogen deposited on land has doubled globally and become at leas...