The objective of this study is to globally assess the effects of atmospheric nitrogen deposition and climate, associated with rising levels of atmospheric CO2, on the variability of carbon isotope discrimination (Δ13C) and intrinsic water-use efficiency (iWUE) of angiosperm and conifer tree species. Eighty-nine long-term isotope tree-ring chronologies, representing 23 conifer and 13 angiosperm species for 53 sites worldwide, were extracted from the literature, and used to obtain long-term time series of Δ13C and iWUE. Δ13C and iWUE were related to the increasing concentration of atmospheric CO2 over the industrial period (1850-2000) and to the variation of simulated atmospheric nitrogen deposition and climatic variables over the period 1950...
The importance that nitrogen (N) deposition has in driving the carbon (C) sequestration of forests h...
We study the applicability of the Farquhar model for carbon isotopic discrimination (change in carbo...
Nitrogen (N) deposition and changing climate patterns in the northeastern USA can influence forest p...
The objective of this study is to globally assess the effects of atmospheric nitrogen deposition and...
The objective of this study is to globally assess the effects of atmospheric nitrogen deposition and...
The objective of this study is to globally assess the effects of atmospheric nitrogen deposition and...
In order to predict accurately how elevated atmospheric CO2 concentrations will affect the global ca...
Measurements of the stable carbon isotope ratio (δ13C) on annual tree rings offer new opportunities ...
Supporting dataset for the paper "Climate and atmospheric deposition effects on forest water‑use eff...
Elevated CO2 increases intrinsic water use efficiency (WUEi) of forests, but the magnitude of this e...
Graduation date: 1996To understand the effect of human-induced stresses on forests, there is a need ...
Reduced stomatal conductance is a common plant response to rising atmospheric CO2 and increases wate...
The efficiency with which trees use water is a major determinant of growth under water-limited condi...
Purpose This study analysed tree-ring stable carbon isotope composition (delta C-13) of Pinus tabula...
Rising atmospheric CO (c) has been shown to increase forest carbon uptake. Yet, whether the c-fertil...
The importance that nitrogen (N) deposition has in driving the carbon (C) sequestration of forests h...
We study the applicability of the Farquhar model for carbon isotopic discrimination (change in carbo...
Nitrogen (N) deposition and changing climate patterns in the northeastern USA can influence forest p...
The objective of this study is to globally assess the effects of atmospheric nitrogen deposition and...
The objective of this study is to globally assess the effects of atmospheric nitrogen deposition and...
The objective of this study is to globally assess the effects of atmospheric nitrogen deposition and...
In order to predict accurately how elevated atmospheric CO2 concentrations will affect the global ca...
Measurements of the stable carbon isotope ratio (δ13C) on annual tree rings offer new opportunities ...
Supporting dataset for the paper "Climate and atmospheric deposition effects on forest water‑use eff...
Elevated CO2 increases intrinsic water use efficiency (WUEi) of forests, but the magnitude of this e...
Graduation date: 1996To understand the effect of human-induced stresses on forests, there is a need ...
Reduced stomatal conductance is a common plant response to rising atmospheric CO2 and increases wate...
The efficiency with which trees use water is a major determinant of growth under water-limited condi...
Purpose This study analysed tree-ring stable carbon isotope composition (delta C-13) of Pinus tabula...
Rising atmospheric CO (c) has been shown to increase forest carbon uptake. Yet, whether the c-fertil...
The importance that nitrogen (N) deposition has in driving the carbon (C) sequestration of forests h...
We study the applicability of the Farquhar model for carbon isotopic discrimination (change in carbo...
Nitrogen (N) deposition and changing climate patterns in the northeastern USA can influence forest p...