Litter decomposition plays a critical role in regulating biogeochemical cycles in terrestrial ecosystems and is profoundly impacted by increasing atmospheric nitrogen (N) deposition. Here, a N manipulation experiment was conducted to explore the effects of N additions (0 kg N ha yr, 20 kg N ha yr and 40 kg N ha yr) on decay rates and nutrients release of two contrasting species, the evergreen and nutrient-poor Michelia wilsonii and the deciduous and nutrient-rich Camptotheca acuminata, using a litterbag approach at the western edge of the Sichuan Basin of China. The decay rate and the mineralization of N and phosphorus (P) was faster in nutrient-rich C. acuminata litter than in nutrient-poor M. wilsonii litter, regardless of N regimes. N ad...
This study aims to evaluate the impacts of changes in litter quantity under simulated N deposition o...
Understory vegetation plays a crucial role in carbon and nutrient cycling in forest ecosystems; howe...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
Litter decomposition plays a critical role in regulating biogeochemical cycles in terrestrial ecosys...
The responses of litter decomposition to nitrogen (N) and phosphorus (P) additions were examined in ...
The effects of nitrogen (N) and phosphorus (P) addition on litter decomposition are poorly understoo...
Forest litter decomposition is a major component of the global carbon (C) budget, and is greatly aff...
Human activities have increased the input of nitrogen (N) to forest ecosystems and have greatly affe...
The litter decomposition process is closely correlated with nutrient cycling and the maintenance of ...
Background: Forest litter decomposition is a major component of the global carbon (C) budget, and is...
Human activities have increased the input of nitrogen (N) to forest ecosystems and have greatly affe...
Human activities have increased the input of nitrogen (N) to forest ecosystems and have greatly affe...
We conducted a field experiment with four levels of simulated N deposition (0, 2.5, 5, and 7.5 g N m...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
We conducted a field experiment with four levels of simulated N deposition (0, 2.5, 5, and 7.5 g N m...
This study aims to evaluate the impacts of changes in litter quantity under simulated N deposition o...
Understory vegetation plays a crucial role in carbon and nutrient cycling in forest ecosystems; howe...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
Litter decomposition plays a critical role in regulating biogeochemical cycles in terrestrial ecosys...
The responses of litter decomposition to nitrogen (N) and phosphorus (P) additions were examined in ...
The effects of nitrogen (N) and phosphorus (P) addition on litter decomposition are poorly understoo...
Forest litter decomposition is a major component of the global carbon (C) budget, and is greatly aff...
Human activities have increased the input of nitrogen (N) to forest ecosystems and have greatly affe...
The litter decomposition process is closely correlated with nutrient cycling and the maintenance of ...
Background: Forest litter decomposition is a major component of the global carbon (C) budget, and is...
Human activities have increased the input of nitrogen (N) to forest ecosystems and have greatly affe...
Human activities have increased the input of nitrogen (N) to forest ecosystems and have greatly affe...
We conducted a field experiment with four levels of simulated N deposition (0, 2.5, 5, and 7.5 g N m...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...
We conducted a field experiment with four levels of simulated N deposition (0, 2.5, 5, and 7.5 g N m...
This study aims to evaluate the impacts of changes in litter quantity under simulated N deposition o...
Understory vegetation plays a crucial role in carbon and nutrient cycling in forest ecosystems; howe...
Scant information is available on how soil phosphorus (P) availability responds to atmospheric nitro...