Global change, like droughts, can destabilize the carbon sink function of peatlands, either directly or indirectly through changes in plant community composition. While the effects of drought and plant community composition on individual carbon (C) related processes are well understood, their effect on multiple C-related processes simultaneously—multifunctionality—is poorly known. We studied the effect of drought on four C-related processes (net and gross CO2 exchange, methane fluxes, and dissolved organic carbon content) in a plant removal experiment. Plant functional type (PFT) removal (graminoids, herbs, Polytrichum spp., incl. combinations) negatively affected multifunctionality; most markedly when all PFTs were removed. Our results cor...
Northern peatlands represent a long-term net sink for atmospheric CO2, but these ecosystems can shif...
Ecosystems are increasingly prone to climate extremes, such as drought, with long-lasting effects on...
Background and aims: Northern peatlands are large repositories of carbon. Peatland vascular plant c...
Global change, like droughts, can destabilize the carbon sink function of peatlands, either directly...
Peatlands are important sinks for atmospheric carbon (C), yet the role of plant functional types (PF...
Dominant plant functional groups (PFGs) found in boreal rich fens include sedges, grasses, horsetail...
Globally, peatlands play an important role in the carbon (C) cycle. High water level is a key factor...
A small imbalance in plant productivity and decomposition accounts for the carbon (C) accumulation c...
Northern peatlands represent a large global carbon store that potentially can be destabilised by sum...
Northern peatlands represent a large global carbon store that can potentially be destabilized by sum...
Peatlands store one-third of Earth\u27s soil carbon, the stability of which is uncertain due to clim...
Peatlands store one-third of Earth's soil carbon, the stability of which is uncertain due to climate...
Peatlands store one-third of Earth's soil carbon, the stability of which is uncertain due to climate...
Northern peatlands represent a large global carbon store that potentially can be destabilised by sum...
Climate change can alter peatland plant community composition by promoting the growth of vascular pl...
Northern peatlands represent a long-term net sink for atmospheric CO2, but these ecosystems can shif...
Ecosystems are increasingly prone to climate extremes, such as drought, with long-lasting effects on...
Background and aims: Northern peatlands are large repositories of carbon. Peatland vascular plant c...
Global change, like droughts, can destabilize the carbon sink function of peatlands, either directly...
Peatlands are important sinks for atmospheric carbon (C), yet the role of plant functional types (PF...
Dominant plant functional groups (PFGs) found in boreal rich fens include sedges, grasses, horsetail...
Globally, peatlands play an important role in the carbon (C) cycle. High water level is a key factor...
A small imbalance in plant productivity and decomposition accounts for the carbon (C) accumulation c...
Northern peatlands represent a large global carbon store that potentially can be destabilised by sum...
Northern peatlands represent a large global carbon store that can potentially be destabilized by sum...
Peatlands store one-third of Earth\u27s soil carbon, the stability of which is uncertain due to clim...
Peatlands store one-third of Earth's soil carbon, the stability of which is uncertain due to climate...
Peatlands store one-third of Earth's soil carbon, the stability of which is uncertain due to climate...
Northern peatlands represent a large global carbon store that potentially can be destabilised by sum...
Climate change can alter peatland plant community composition by promoting the growth of vascular pl...
Northern peatlands represent a long-term net sink for atmospheric CO2, but these ecosystems can shif...
Ecosystems are increasingly prone to climate extremes, such as drought, with long-lasting effects on...
Background and aims: Northern peatlands are large repositories of carbon. Peatland vascular plant c...