Florida Coastal Everglades Long Term Ecological Research
Florida Coastal Everglades LTER - Site Information: TS/Ph9
Site Information - TS/Ph9

 
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Sampling Attributes
  • % Humic carbon
  • % Non-Humic Carbon
  • %Carbohydrate Carbon
  • %Dissolved Organic Carbon
  • %PAR:Epiphyte light transmissions
  • Absorbance at 254 nm
  • Algal Energetics Light Curve Slope Brown
  • Algal Energetics Light Curve Slope Cyanobacteria
  • Algal Energetics Light Curve Slope Green
  • Alkaline Phosphatase Activity in Water
  • Ammonium in Water
  • Average Saltwater Turbidity
  • Bacteria Abundance
  • Bacteria Daily Production
  • Bacteria Hourly Production
  • CO2 in Air
  • CO2 in Water
  • CaCO3 per Quadrant
  • Carbohydrates
  • Channel 1 Alpha
  • Channel 1 Electron Transport Rate Max
  • Channel 1 Initial Slope Irradiance
  • Channel 2 Alpha
  • Channel 2 Electron Transport Rate Max
  • Channel 2 Initial Slope Irradiance
  • Channel 3 Alpha
  • Channel 3 Electron Transport Rate Max
  • Channel 3 Initial Slope Irradiance
  • Channel 4 Alpha
  • Channel 4 Electron Transport Rate Max
  • Channel 4 Initial Slope Irradiance
  • Chl a Blue
  • Chl a Brown
  • Chl a Green
  • Chlorophyll a in Water
  • Delta Sigma-T
  • Diffuse Light Attenuation Coefficient
  • Dissolved Inorganic Carbon
  • Dissolved Inorganic Nitrogen To Total Phosphorus Ratio
  • Dissolved Inorganic Nitrogen in Water
  • Dissolved Organic Carbon
  • Dissolved Oxygen in Bottom Water
  • Dissolved Oxygen in Surface Water
  • Electron Transport Rate Maximum Brown
  • Electron Transport Rate Maximum Cyanobacteria
  • Electron Transport Rate Maximum Green
  • Epiphyte Chlorophyll a Load
  • Epiphyte Chlorophyll a Load Mean
  • Fixed humic substance peak
  • Fluorescence Index
  • Growth Period
  • Halodule wrightii % Dry Weight Carbon
  • Halodule wrightii % Dry Weight Nitrogen
  • Halodule wrightii % Dry Weight Phosphorus
  • Halodule wrightii Abundance
  • Halodule wrightii Carbon:Nitrogen Ratio
  • Halodule wrightii Carbon:Phosphorus Ratio
  • Halodule wrightii Density
  • Halodule wrightii Frequency
  • Halodule wrightii Nitrogen:Phosphorus Ratio
  • Humic Carbon
  • Incubation Days
  • Initial Slope Irradiance Maximum Brown
  • Initial Slope Irradiance Maximum Cyanobacteria
  • Initial Slope Irradiance Maximum Green
  • Macroalgae Biomass per Quadrant
  • Macroalgae DryWeight per Quadrant
  • Maximum Emission Intensity
  • Maximum Wavelength
  • Natural Carbon 14
  • Nitrate and Nitrite in Water
  • Nitrate in Water
  • Nitrite in Water
  • Nitrogen to carbon ratio
  • Non-Humic Carbon
  • Number of Thalassia testudinum Leaves Per Short Shoot
  • Peak 1 at Maximum Emission Intensity
  • Percent 285
  • Percent Organic Carbon in Soil
  • Percent Organic content
  • Percentage of Calcium Carbonate in Soil
  • Percentage of Carbon
  • Percentage of Hydrogen
  • Percentage of Inorganic Carbon
  • Percentage of Nitrogen
  • Percentage of Organic Carbon
  • Percentage of protein-like material (high molecular weight fraction)
  • Percentage of the maximum emission intensity of the First Peak
  • Periphyton Ash Free Dry Mass Production
  • Periphyton Dry Weight Production
  • Periphyton Gross Production per Mass
  • Periphyton Net Carbon Production
  • Periphyton Net Respiration per Mass
  • Periphyton Total Phosphorus
  • Protein derived T1
  • Quantum Yield Mean
  • Saltwater Secchi
  • Saltwater Surface Salinity
  • Saltwater Surface Temperature
  • Seagrass Canopy Water Temperature (UTC)
  • Seagrass Carbon Stable Isotope
  • Seagrass Nitrogen Stable Isotope
  • Seagrass Species Name
  • Silicate to Dissolved Inorganic Nitrogen Ratio
  • Silicon Dioxide in Water
  • Slope Ratio
  • Soil %Aromatic C
  • Soil Acid Volatile Sulfide
  • Soil AlkylC/O Alkyl C
  • Soil Aromatic C
  • Soil Bulk Density
  • Soil C/N
  • Soil Cabonyl C
  • Soil Chromium-Reducible Sulfide
  • Soil Delta 13C
  • Soil Extractable Iron
  • Soil Extractable Phosphorus
  • Soil Inorganic Phosphorus Step 1
  • Soil Inorganic Phosphorus Step 2
  • Soil Inorganic Phosphorus Step 3
  • Soil Inorganic Phosphorus Step 4
  • Soil O Alkyl C
  • Soil Percent Organics
  • Soil Total Phosphorus
  • Soil Total Sulfide
  • Soil alkyl_C
  • Soluble Reactive Phosphorus in Water
  • Specific UV Absorbance
  • Station Depth
  • Sum Chl a PAM
  • Surface Din To SRP Ratio
  • Surface Total Nitrogen To Total Phosphorus Ratio
  • Surface Water 1,2,3-trimethoxybenzene
  • Surface Water 3,4-Dimethoxytoluene
  • Surface Water Alkyl/o-Alkyl ratio
  • Surface Water Benzaldehyde, 3,4,5-trimethoxy-
  • Surface Water Benzaldehyde, 3,4-dimethoxy-
  • Surface Water Benzene, 1,2,3-trimethoxy-5-methyl-
  • Surface Water Benzene, 1,2-dimethoxy-
  • Surface Water Benzene, 1,2-dimethoxy-4-(1-propenyl)-
  • Surface Water Benzenepropanoic acid, 3,4-dimethoxy-, methyl ester
  • Surface Water Benzoic acid, 3,4,5-trimethoxy-, methyl ester
  • Surface Water Benzoic acid, 3,4-dimethoxy-, methyl ester
  • Surface Water Carbon to Nitrogen Ratio
  • Surface Water Dissolved Organic Carbon
  • Surface Water Ethanone, 1-(3,4,5)-trimethoxyphenyl-
  • Surface Water Ethanone, 1-(3,4-dimethoxyphenyl)-
  • Surface Water Fluorescence Index
  • Surface Water Maximum Emission Intensity
  • Surface Water Maximum Wavelength
  • Surface Water Neutral Sugars
  • Surface Water Percent 285
  • Surface Water Percent Arabinose
  • Surface Water Percent Aromaticity
  • Surface Water Percent Fucose
  • Surface Water Percent Galactose
  • Surface Water Percent Glucose
  • Surface Water Percent Mannose
  • Surface Water Percent Rhamnose
  • Surface Water Percent Ribose
  • Surface Water Percent Xylose
  • Surface Water Percentage Alkyl Carbon
  • Surface Water Percentage Aromatic Carbon
  • Surface Water Percentage Carbonyl Carbon
  • Surface Water Percentage O-alkyl carbon
  • Surface Water Phenol 2-methoxy-
  • Surface Water Salinity
  • Surface Water Slope of the UV-Vis spectrum
  • Surface Water Specific UV Absorbance
  • Syringodium filiforme % Dry Weight Carbon
  • Syringodium filiforme % Dry Weight Nitrogen
  • Syringodium filiforme % Dry Weight Phosphorus
  • Syringodium filiforme Abundance
  • Syringodium filiforme Carbon:Nitrogen Ratio
  • Syringodium filiforme Carbon:Phosphorus Ratio
  • Syringodium filiforme Density
  • Syringodium filiforme Frequency
  • Syringodium filiforme Nirtogen:Phosphorus Ratio
  • Thalassia testudinum % Dry Weight Carbon
  • Thalassia testudinum % Dry Weight Nitrogen
  • Thalassia testudinum % Dry Weight Phosphorus
  • Thalassia testudinum Abundance
  • Thalassia testudinum Carbon:Nitrogen Ratio
  • Thalassia testudinum Carbon:Phosphorus Ratio
  • Thalassia testudinum Density
  • Thalassia testudinum Frequency
  • Thalassia testudinum Leaf Area
  • Thalassia testudinum Leaf Area Production per Meter Square per Day
  • Thalassia testudinum Leaf Length
  • Thalassia testudinum Leaf Mass
  • Thalassia testudinum Leaf Width
  • Thalassia testudinum Mass Specific Productivity
  • Thalassia testudinum Nitrogen:Phosphorus Ratio
  • Thalassia testudinum Plastochrone Interval
  • Thalassia testudinum Short Shoot Density
  • Thalassia testudinum Short Shoot Productivity
  • Thalassia testudinum Standing Crop
  • Thalassia testudinum leaf Area Production per Short Shoot per Day
  • Thalassia testudinumAreal Productivity
  • Total Calcareous Green Abundance
  • Total Calcareous Green Density
  • Total Calcareous Green Frequency
  • Total Epiphyte Load
  • Total Epiphyte Load Mean
  • Total Nitrogen in Water
  • Total Organic Carbon in Water
  • Total Organic Nitrogen in Water
  • Total Phosphorus in Water
  • Tryptophan
  • Turbidity
  • UV humic peak
  • Visible humic peak
  • Water Bottom Salinity
  • Water Bottom Temperature
  • Water Surface Salinity
  • Water Surface Temperature
  • Water pH
  • Weight of Sample
  • component 1 of EEM-PARAFAC
  • component 1 of EEM-PARAFAC
  • component 2 of EEM-PARAFAC
  • component 3 of EEM-PARAFAC
  • component 4 of EEM-PARAFAC
  • component 5 of EEM-PARAFAC
  • component 6 of EEM-PARAFAC
  • component 7 of EEM-PARAFAC
  • component 8 of EEM-PARAFAC
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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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