Since May of 1996, we have conducted an experiment in Florida Scrub Oak to determine the impact of elevated atmospheric CO2 and climate change on carbon, water, and nutrient cycling in this important terrestrial ecosystem. Florida scrub oak is the name for a collective of species occupying much of the Florida peninsula. The dominant tree species are oaks and the dwarf structure of this community makes it an excellent system in which to test hypotheses regarding the potential capacity of woody ecosystems to assimilate and sequester anthropogenic carbon. Scrub oak is fire dependent with a return cycle of 10-15 years, a time which would permit an experiment to follow the entire cycle. Our site is located on Cape Canaveral at the Kennedy Space ...
Fine root dynamics play an important role in the cycling of carbon belowground. Previous studies hav...
Fine root dynamics play an important role in the cycling of carbon belowground. Previous studies hav...
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...
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...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
A Florida (USA) scrub-oak ecosystem was exposed to elevated atmospheric CO2 in open-top chambers fro...
A Florida (USA) scrub-oak ecosystem was exposed to elevated atmospheric CO2 in open-top chambers fro...
A Florida (USA) scrub-oak ecosystem was exposed to elevated atmospheric CO2 in open-top chambers fro...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
A Florida (USA) scrub-oak ecosystem was exposed to elevated atmospheric CO2 in open-top chambers fro...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
Fine root dynamics play an important role in the cycling of carbon belowground. Previous studies hav...
Fine root dynamics play an important role in the cycling of carbon belowground. Previous studies hav...
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...
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...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
This study reports the aboveground biomass response of a fire-regenerated Florida scrub-oak ecosyste...
A Florida (USA) scrub-oak ecosystem was exposed to elevated atmospheric CO2 in open-top chambers fro...
A Florida (USA) scrub-oak ecosystem was exposed to elevated atmospheric CO2 in open-top chambers fro...
A Florida (USA) scrub-oak ecosystem was exposed to elevated atmospheric CO2 in open-top chambers fro...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
A Florida (USA) scrub-oak ecosystem was exposed to elevated atmospheric CO2 in open-top chambers fro...
Disturbance affects most terrestrial ecosystems and has the potential to shape their responses to ch...
Fine root dynamics play an important role in the cycling of carbon belowground. Previous studies hav...
Fine root dynamics play an important role in the cycling of carbon belowground. Previous studies hav...
Uncertainty surrounds belowground plant responses to rising atmospheric CO2 because roots are diffic...