Although numerous studies have addressed the effects of increased N deposition on nutrient-poor environments such as raised bogs, few studies have dealt with to what extent, and on what time-scale, reductions in atmospheric N supply would lead to recovery of the ecosystems in question. Since a considerable part of the negative effects of elevated N deposition on raised bogs can be related to an imbalance in tissue nutrient concentrations of the dominant peat-former Sphagnum, changes in Sphagnum nutrient concentration after excess N supply may be used as an early indicator of ecosystem response. This study focuses on the N and P concentrations of Sphagnum magellanicum and Sphagnum fallax before, during and after a factorial fertilization exp...
Peatlands in the northern hemisphere have accumulated more atmospheric C during the Holocene than an...
Peatlands in the northern hemisphere have accumulated more atmospheric carbon (C) during the Holocen...
International audiencePeatlands in the northern hemisphere have accumulated more atmospheric carbon ...
Although numerous studies have addressed the effects of increased N deposition on nutrient-poor envi...
Nitrogen deposition may cause shifts in the Sphagnum species composition of bogs, ultimately affecti...
Human alteration of the global nitrogen (N) cycle has had major impacts on naturally N-limited ecosy...
1 In a 4-year fertilization experiment we studied the effects of increased nitrogen (N) or phosphoru...
Peatland ecosystems only cover 2-3 % of the Earth‟s surface but they represent significant carbon st...
S phagnum bogs harbour a wealth of rare vascular plant and bryophyte species, preserve an amazing po...
To elucidate the impact of high nitrogen (N) deposition on intact bog vegetation, as affected by pho...
Sphagnum-bog ecosystems have a limited capability to retain carbon and nutrients when subjected to i...
Sphagnum-bog ecosystems have a limited capability to retain carbon and nutrients when subjected to i...
Sphagnum-bog ecosystems have a limited capability to retain carbon and nutrients when subjected to i...
Boreal peatlands play important roles in global C and nutrient cycling. Oligotrophic bogs are natura...
We investigated the variation of N:P and N:K ratio in ombrotrophic Sphagnum plants along a gradient ...
Peatlands in the northern hemisphere have accumulated more atmospheric C during the Holocene than an...
Peatlands in the northern hemisphere have accumulated more atmospheric carbon (C) during the Holocen...
International audiencePeatlands in the northern hemisphere have accumulated more atmospheric carbon ...
Although numerous studies have addressed the effects of increased N deposition on nutrient-poor envi...
Nitrogen deposition may cause shifts in the Sphagnum species composition of bogs, ultimately affecti...
Human alteration of the global nitrogen (N) cycle has had major impacts on naturally N-limited ecosy...
1 In a 4-year fertilization experiment we studied the effects of increased nitrogen (N) or phosphoru...
Peatland ecosystems only cover 2-3 % of the Earth‟s surface but they represent significant carbon st...
S phagnum bogs harbour a wealth of rare vascular plant and bryophyte species, preserve an amazing po...
To elucidate the impact of high nitrogen (N) deposition on intact bog vegetation, as affected by pho...
Sphagnum-bog ecosystems have a limited capability to retain carbon and nutrients when subjected to i...
Sphagnum-bog ecosystems have a limited capability to retain carbon and nutrients when subjected to i...
Sphagnum-bog ecosystems have a limited capability to retain carbon and nutrients when subjected to i...
Boreal peatlands play important roles in global C and nutrient cycling. Oligotrophic bogs are natura...
We investigated the variation of N:P and N:K ratio in ombrotrophic Sphagnum plants along a gradient ...
Peatlands in the northern hemisphere have accumulated more atmospheric C during the Holocene than an...
Peatlands in the northern hemisphere have accumulated more atmospheric carbon (C) during the Holocen...
International audiencePeatlands in the northern hemisphere have accumulated more atmospheric carbon ...