Florida Coastal Everglades Long Term Ecological Research
Florida Coastal Everglades LTER - Site Information: TS/Ph4
Site Information - TS/Ph4

 
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Publications

Journal articles
Julian, P., R.M. Chambers and T. Russell 2017. Iron and pyritization in wetland soils of the Florida Coastal Everglades. Estuaries and Coasts, 40(3): 822-831.

He, D., B.R.T. Simoneit, Y. Xu and R. Jaffe 2016. Occurrence of unsaturated C25 highly branched isoprenoids (HBIs) in a freshwater wetland. Organic Geochemistry, 93: 59-67.

Long, S.A., G.I. Tachiev, R. Fennema, A.M. Cook, M. Sukop and F. Miralles-Wilhelm 2015. Modeling the impact of restoration efforts on phosphorus loading and transport through Everglades National Park, FL, USA. Science of The Total Environment, 520(1): 81-95.

He, D., B.R.T. Simoneit, B. Jara and R. Jaffe 2014. Occurrence and distribution of monomethylalkanes in the freshwater wetland ecosystem of the Florida Everglades. Chemosphere, 119: 258-266.

Ikenaga, M., R. Guevara, C. Pisani, A. Dean and J.N. Boyer 2010. Changes in Community Structure of Sediment Bacteria Along the Florida Coastal Everglades Marsh-Mangrove-Seagrass Salinity Gradient. Microbial Ecology, 59(2): 284-295.

Wozniak, J., D.L. Childers, W.T. Anderson, D.T. Rudnick and C.J. Madden 2008. An In Situ Mesocosm Method for Quantifying Nitrogen Cycling Rates in Oligotrophic Wetlands Using 15N Tracer Techniques. Wetlands, 28(2): 502-512.

Gao, M., B.R.T. Simoneit, M. Gantar and R. Jaffe 2007. Occurrence and distribution of novel botryococcene hydrocarbons in freshwater wetlands of the Florida Everglades. Chemosphere, 70: 224-236.

Chambers, R.M. and K.A. Pederson 2006. Variation in soil phosphorus, sulfur, and iron pools among south Florida wetlands. Hydrobiologia, 569(1): 63-70.

Davis, S.E., D.L. Childers and G.B. Noe 2006. The contribution of leaching to the rapid release of nutrients and carbon in the early decay of wetland vegetation. Hydrobiologia, 569(1): 87-97.

Lu, X.Q., N. Maie, J.V. Hanna, D.L. Childers and R. Jaffe 2003. Molecular characterization of dissolved organic matter in freshwater wetlands of the Florida Everglades. Water Research, 37(11): 2599-2606.

Troxler-Gann, T. 2002. Response of Everglades tree islands to increased freshwater flow (Florida). Ecological Restoration, 20(3): 211-212.



















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National Science Foundation logo This material is based upon work supported by the National Science Foundation through the Florida Coastal Everglades Long-Term Ecological Research program under Cooperative Agreements #DEB-1237517, #DBI-0620409, and #DEB-9910514. Any opinions, findings, conclusions, or recommendations expressed in the material are those of the author(s) and do not necessarily reflect the views of the National Science Foundation.
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