As a consequence of land use change and the burning of fossil fuels, atmospheric concentrations of CO2 are increasing and altering the dynamics of the carbon cycle in forest ecosystems. In a number of studies using single tree species, fine root biomass has been shown to be strongly increased by elevated CO2. However, natural forests are often intimate mixtures of a number of co-occurring species. To investigate the interaction between tree mixture and elevated CO2, Alnus glutinosa, Betula pendula and Fagus sylvatica were planted in areas of single species and a three species polyculture in a free-air CO2 enrichment study (BangorFACE). The trees were exposed to ambient or elevated CO2 (580 µmol mol-1) for four years. Fine and coarse root bi...
We evaluated the root response to elevated CO2 fumigation of 3 birches (Betula sp.) and 1 deciduous ...
Abstract: We investigated the effects of CO2 enrichment on fine root chemical composition of two tre...
With their dominant share in global plant biomass carbon (C), forests and their responses to atmosph...
As a consequence of land-use change and the burning of fossil fuels, atmospheric concentrations of C...
As a consequence of land-use change and the burning of fossil fuels, atmospheric concentrations of C...
In a free-air carbon dioxide (CO2) enrichment study (BangorFACE), Alnus glutinosa, Betula pendula an...
In a free-air carbon dioxide (CO2) enrichment study (BangorFACE), Alnus glutinosa, Betula pendula an...
In a free-air carbon dioxide (CO2) enrichment study (BangorFACE), Alnus glutinosa, Betula pendula an...
Summary In a free-air carbon dioxide (CO2) enrichment study (BangorFACE), Alnus glutinosa, Betul...
• In a free-air CO2 enrichment study (BangorFACE) Alnus glutinosa, Betula pendula and Fagus sylvatic...
Root growth and respiration in elevated CO2 (700 ?mol mol?1) was studied in three tree species, Frax...
Plant species vary in response to atmospheric CO2 concentration due to differences in physiology, mo...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Plant species vary in response to atmospheric CO2 concentration due to differences in physiology, mo...
We evaluated the root response to elevated CO2 fumigation of 3 birches (Betula sp.) and 1 deciduous ...
Abstract: We investigated the effects of CO2 enrichment on fine root chemical composition of two tre...
With their dominant share in global plant biomass carbon (C), forests and their responses to atmosph...
As a consequence of land-use change and the burning of fossil fuels, atmospheric concentrations of C...
As a consequence of land-use change and the burning of fossil fuels, atmospheric concentrations of C...
In a free-air carbon dioxide (CO2) enrichment study (BangorFACE), Alnus glutinosa, Betula pendula an...
In a free-air carbon dioxide (CO2) enrichment study (BangorFACE), Alnus glutinosa, Betula pendula an...
In a free-air carbon dioxide (CO2) enrichment study (BangorFACE), Alnus glutinosa, Betula pendula an...
Summary In a free-air carbon dioxide (CO2) enrichment study (BangorFACE), Alnus glutinosa, Betul...
• In a free-air CO2 enrichment study (BangorFACE) Alnus glutinosa, Betula pendula and Fagus sylvatic...
Root growth and respiration in elevated CO2 (700 ?mol mol?1) was studied in three tree species, Frax...
Plant species vary in response to atmospheric CO2 concentration due to differences in physiology, mo...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
Plant species vary in response to atmospheric CO2 concentration due to differences in physiology, mo...
We evaluated the root response to elevated CO2 fumigation of 3 birches (Betula sp.) and 1 deciduous ...
Abstract: We investigated the effects of CO2 enrichment on fine root chemical composition of two tre...
With their dominant share in global plant biomass carbon (C), forests and their responses to atmosph...