[2006] The contribution of leaching to the rapid release of nutrients and carbon in the early decay of wetland vegetation

The contribution of leaching to the rapid release of nutrients and carbon in the early decay of wetland vegetation  

Publication Date:  2006
Creator:  Childers, Dan
Davis, Stephen E.
Noe, Gregory B.
Publisher.Display:  Springer
Subjects.Display:  Carbon dioxide -- Florida -- Everglades
Phosphorus -- Florida -- Everglades
Biodegradation -- Florida -- Everglades
Nitrogen -- Florida -- Everglades
Source Institution:  Florida International University
[2006] The contribution of leaching to the rapid release of nutrients and carbon in the early decay of wetland vegetation
[2009] Physiological responses of red mangroves to the climate in the Florida Everglades

Physiological responses of red mangroves to the climate in the Florida Everglades  

Publication Date:  2009
Creator:  Barr, Jordan G.
Engel, Vic
Fuentes, Jose D.
Zieman, Joseph C.
Publisher.Display:  John Wiley & Sons
Subjects.Display:  Everglades (Fla.)
Mangrove ecology -- Florida -- Everglades
Carbon dioxide -- Florida -- Everglades
Red mangrove -- Florida -- Everglades
Source Institution:  Florida International University
[2009] Physiological responses of red mangroves to the climate in the Florida Everglades
[2010] Controls on mangrove forest-atmosphere carbon dioxide exchanges in western Everglades National Park

Controls on mangrove forest-atmosphere carbon dioxide exchanges in western Everglades National Park  

Publication Date:  2010
Creator:  Barr, Jordan G.
Engel, Vic
Fuentes, Jose D.
Zieman, Joseph C.
O’Halloran, Thomas L.
Smith III, Thomas J.
Anderson, Gordon H.
Publisher.Display:  American Geophysical Union
Subjects.Display:  Mangrove ecology -- Florida -- Everglades National Park
Carbon dioxide -- Florida -- Everglades National Park
Source Institution:  Florida International University
[2010] Controls on mangrove forest-atmosphere carbon dioxide exchanges in western Everglades National Park
[2010] Seasonal differences in the CO2 exchange of a short-hydroperiod Florida Everglades marsh

Seasonal differences in the CO2 exchange of a short-hydroperiod Florida Everglades marsh  

Publication Date:  2010
Creator:  Schedlbauer, Jessica L.
Oberbauer, Steven F.
Starr, Gregory
Jimenez, Kristine L.
Publisher.Display:  Elsevier
Subjects.Display:  Everglades (Fla.)
Wetland ecology -- Florida -- Everglades
Marshes -- Florida -- Everglades
Carbon dioxide -- Florida -- Everglades
Source Institution:  Florida International University
[2010] Seasonal differences in the CO2 exchange of a short-hydroperiod Florida Everglades marsh
[2011] Radiative forcing of natural forest disturbances

Radiative forcing of natural forest disturbances  

Publication Date:  2011
Creator:  Barr, Jordan G.
O'Halloran, Thomas L.
Law, Beverly E.
Goulden, Michael L.
Wang, Zhuosen
Schaaf, Crystal
Brown, Mathew
Fuentes, José D.
Göckede, Mathias
Black, Andrew
Engel, Vic
Publisher.Display:  Blackwell Publishing Ltd.
Subjects.Display:  Mangrove ecology -- Florida -- Everglades
Carbon dioxide -- Florida -- Everglades
Climatic changes -- Florida -- Everglades
Radiative forcing -- Florida -- Everglades
Albedo -- Florida -- Everglades
Source Institution:  Florida International University
[2011] Radiative forcing of natural forest disturbances
[2012] Controls on ecosystems carbon dioxide exchange in short- and long-hydroperiod Florida Everglades freshwater marshes

Controls on ecosystems carbon dioxide exchange in short- and long-hydroperiod Florida Everglades freshwater marshes  

Publication Date:  2012
Creator:  Gaiser, Evelyn E.
Schedlbauer, Jessica L.
Munyon, Jay W.
Oberbauer, Steven F.
Starr, Gregory
Publisher.Display:  Florida Coastal Everglades Long Term Ecological Research
Subjects.Display:  Freshwater ecology -- Florida -- Everglades
Marshes -- Florida -- Everglades
Carbon dioxide -- Florida -- Everglades
Source Institution:  Florida International University
[2012] Controls on ecosystems carbon dioxide exchange in short- and long-hydroperiod Florida Everglades freshwater marshes