<div><p>Temperate forests are assumed to be organic carbon (OC) sinks, either because of biomass increases upon elevated CO<sub>2</sub> in the atmosphere and large nitrogen deposition, or due to their age structure. Respective changes in soil OC and total nitrogen (TN) storage have rarely been proven. We analysed OC, TN, and bulk densities of 100 soil cores sampled along a regular grid in an old-growth deciduous forest at the Hainich National Park, Germany, in 2004 and again in 2009. Concentrations of OC and TN increased significantly from 2004 to 2009, mostly in the upper 0–20 cm of the mineral soil. Changes in the fine earth masses per soil volume impeded the detection of OC changes based on fixed soil volumes. When calculated on average ...
Increased anthropogenic nitrogen (N) inputs can alter the N cycle and affect forest ecosystem functi...
Forest management and associated litter inputs and decomposition rates are thought to affect the car...
Increased anthropogenic nitrogen (N) inputs can alter the N cycle and affect forest ecosystem functi...
Temperate forests are assumed to be organic carbon (OC) sinks, either because of biomass increases u...
Temperate forests are assumed to be organic carbon (OC) sinks, either because of biomass increases u...
Temperate forests are assumed to be organic carbon (OC) sinks, either because of biomass increases u...
Temperate forests are assumed to be organic carbon (OC) sinks, either because of biomass increases u...
High carbon uptake of old-growth forests contradict the assumption that old-growth forests are carbo...
High carbon uptake of old-growth forests contradict the assumption that old-growth forests are carbo...
© 2014, Springer International Publishing Switzerland. The terrestrial biosphere sequesters up to a ...
The terrestrial biosphere sequesters up to a third of annual anthropogenic carbon dioxide emissions,...
The terrestrial biosphere sequesters up to a third of annual anthropogenic carbon dioxide emissions,...
The terrestrial biosphere sequesters up to a third of annual anthropogenic carbon dioxide emissions,...
The terrestrial biosphere sequesters up to a third of annual anthropogenic carbon dioxide emissions,...
Forest cover in Switzerland and other European countries has gradually increased in the past century...
Increased anthropogenic nitrogen (N) inputs can alter the N cycle and affect forest ecosystem functi...
Forest management and associated litter inputs and decomposition rates are thought to affect the car...
Increased anthropogenic nitrogen (N) inputs can alter the N cycle and affect forest ecosystem functi...
Temperate forests are assumed to be organic carbon (OC) sinks, either because of biomass increases u...
Temperate forests are assumed to be organic carbon (OC) sinks, either because of biomass increases u...
Temperate forests are assumed to be organic carbon (OC) sinks, either because of biomass increases u...
Temperate forests are assumed to be organic carbon (OC) sinks, either because of biomass increases u...
High carbon uptake of old-growth forests contradict the assumption that old-growth forests are carbo...
High carbon uptake of old-growth forests contradict the assumption that old-growth forests are carbo...
© 2014, Springer International Publishing Switzerland. The terrestrial biosphere sequesters up to a ...
The terrestrial biosphere sequesters up to a third of annual anthropogenic carbon dioxide emissions,...
The terrestrial biosphere sequesters up to a third of annual anthropogenic carbon dioxide emissions,...
The terrestrial biosphere sequesters up to a third of annual anthropogenic carbon dioxide emissions,...
The terrestrial biosphere sequesters up to a third of annual anthropogenic carbon dioxide emissions,...
Forest cover in Switzerland and other European countries has gradually increased in the past century...
Increased anthropogenic nitrogen (N) inputs can alter the N cycle and affect forest ecosystem functi...
Forest management and associated litter inputs and decomposition rates are thought to affect the car...
Increased anthropogenic nitrogen (N) inputs can alter the N cycle and affect forest ecosystem functi...