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Phosphorus cycling and partitioning in an oligotrophic Everglades wetland ecosystem: a radioisotope tracing study

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Year
2003

Citation

Noe, Gregory B., Scinto, Leonard J., Taylor, Jonathan, Childers, Daniel L., and Jones, Ronald D., 2003, Phosphorus cycling and partitioning in an oligotrophic Everglades wetland ecosystem: a radioisotope tracing study: Freshwater Biology, v. 48, iss. 11, p. 1993-2008.

Summary

1. Our goal was to quantify short-term phosphorus (P) partitioning and identify the ecosystem components important to P cycling in wetland ecosystems. To do this, we added P radiotracer to oligotrophic, P-limited Everglades marshes. 32PO4 was added to the water column in six 1-m2 enclosed mesocosms located in long-hydroperiod marshes of Shark River Slough, Everglades National Park. Ecosystem components were then repeatedly sampled over 18 days.2. Water column particulates (>0.45 μm) incorporated radiotracer within the first minute after dosing and stored 95–99% of total water column 32P activity throughout the study. Soluble (<0.45 μm) 32P in the water column, in contrast, was always <5% of the 32P in surface water. Periphyton, both [...]

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  • USGS National Research Program

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Added to ScienceBase on Fri Apr 19 10:02:12 MDT 2013 by processing file <b>Former Project Limnological Phenomena in Impounded Rivers.xml</b> in item <a href="https://www.sciencebase.gov/catalog/item/513a730ce4b09608cc167758">https://www.sciencebase.gov/catalog/item/513a730ce4b09608cc167758</a>

Additional Information

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Type Scheme Key
DOI http://sciencebase.gov/vocab/identifierScheme 10.1046/j.1365-2427.2003.01143.x

Citation Extension

citationTypeJournal Article
journalFreshwater Biology
parts
typePages
value1993-2008
typeVolume
value48
typeIssue
value11

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