• In a free-air CO2 enrichment study (BangorFACE) Alnus glutinosa, Betula pendula and Fagus sylvatica were planted in areas of one, two and three species mixtures (n=4). The trees were exposed to ambient or elevated CO2 (580 µmol mol-1) for four years, and aboveground growth characteristics measured. • In monoculture, the mean effect of CO2 enrichment on aboveground woody biomass was +29, +22 and +16% for A. glutinosa, F. sylvatica, and B. pendula respectively. When the same species were grown in polyculture, the response to CO2 switched to +10, +7 and 0%, for A. glutinosa, B. pendula, and F. sylvatica respectively. • In ambient atmosphere our species grown in polyculture increased aboveground woody biomass from 12.9 ± 1.4 kg m-2 to 18.9...
Whether rising atmospheric carbon dioxide (CO2) concentrations will cause forests to grow faster and...
To study the responses of Scots pine (Pinus sylvestris L.), a commercially important tree species in...
Whether rising atmospheric carbon dioxide (CO2) concentrations will cause forests to grow faster and...
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...
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...
As a consequence of land use change and the burning of fossil fuels, atmospheric concentrations of C...
Plant species vary in response to atmospheric CO2 concentration due to differences in physiology, mo...
Plant species vary in response to atmospheric CO2 concentration due to differences in physiology, mo...
Nitrogen-fixing plant species may respond more positively to elevated atmospheric carbon dioxide con...
106 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2001.Forests are a major component...
I examined the effects of long-term CO2 enrichment on leaf physiology, chemistry and phenology of ov...
Whether rising atmospheric carbon dioxide (CO2) concentrations will cause forests to grow faster and...
To study the responses of Scots pine (Pinus sylvestris L.), a commercially important tree species in...
Whether rising atmospheric carbon dioxide (CO2) concentrations will cause forests to grow faster and...
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...
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...
As a consequence of land use change and the burning of fossil fuels, atmospheric concentrations of C...
Plant species vary in response to atmospheric CO2 concentration due to differences in physiology, mo...
Plant species vary in response to atmospheric CO2 concentration due to differences in physiology, mo...
Nitrogen-fixing plant species may respond more positively to elevated atmospheric carbon dioxide con...
106 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2001.Forests are a major component...
I examined the effects of long-term CO2 enrichment on leaf physiology, chemistry and phenology of ov...
Whether rising atmospheric carbon dioxide (CO2) concentrations will cause forests to grow faster and...
To study the responses of Scots pine (Pinus sylvestris L.), a commercially important tree species in...
Whether rising atmospheric carbon dioxide (CO2) concentrations will cause forests to grow faster and...