BCO-DMO ERDDAP
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Row Type | Variable Name | Attribute Name | Data Type | Value |
---|---|---|---|---|
attribute | NC_GLOBAL | access_formats | String | .htmlTable,.csv,.json,.mat,.nc,.tsv,.esriCsv,.geoJson |
attribute | NC_GLOBAL | acquisition_description | String | Sediment cores were collected by divers, sealed in the field with rubber\nstoppers and returned to the lab for processing. Pore waters were collected by\ninserting rhizon samplers (Seeberg-Elverfeldt et al., 2005) through pre-\ndrilled holes in the core tubes. Samples were collected in gas-tight glass\nsyringes and filtered through 0.45 \\u00b5m nylon filters into storage vials.\nAlkalinity samples were titrated within 12hr of collection; other samples were\nreturned to the lab for analysis, using techniques routinely used in my lab:\nalkalinity and initial pH - Hu and Burdige (2008); sulfate, DIC, ammonium and\nDOC - Burdige and Komada (2011), Komada et al. (2016); sulfide - Cline (1969),\nAbdulla et al. (in prep.).\n \nAlkalinity and initial pH were determined by Gran Titration using a Metrohm\nautomatic titrator (model 785 DMP Titrino) combined with a Cole-Parmer pH\nelectrode, calibrated using pH 4.00, 7.00 and 10.00 NIST-traceable buffers (Hu\nand Burdige, 2008).\n \nSulfate was determined by ion chromatography and conductivity detection with a\nThermo-Fisher Dionex ICS-5000 ion chromatograph.\n \nDOC was determined by high temperature combustion using a Shimadzu TOC-V total\ncarbon analyzer (Burdige and Komada, 2011; Komada et al. 2016).\n \nDIC were determined by FIA analysis using a home-built system consisting of a\nRainin Rabbit peristaltic pump and a Dionex CDM-II conductivity detector (Hall\nand Aller, 1992; Lustwerk and Burdige, 1995).\n \nNote:\\u00a0\\\"ns\\\" stands for \\\"samples not collected for this analysis\\\". |
attribute | NC_GLOBAL | awards_0_award_nid | String | 648650 |
attribute | NC_GLOBAL | awards_0_award_number | String | OCE-1635403 |
attribute | NC_GLOBAL | awards_0_funder_name | String | NSF Division of Ocean Sciences |
attribute | NC_GLOBAL | awards_0_funding_acronym | String | NSF OCE |
attribute | NC_GLOBAL | awards_0_funding_source_nid | String | 355 |
attribute | NC_GLOBAL | awards_0_program_manager | String | David L. Garrison |
attribute | NC_GLOBAL | awards_0_program_manager_nid | String | 50534 |
attribute | NC_GLOBAL | awards_1_award_nid | String | 710233 |
attribute | NC_GLOBAL | awards_1_award_number | String | OCE-1633951 |
attribute | NC_GLOBAL | awards_1_data_url | String | http://www.nsf.gov/awardsearch/showAward.do?AwardNumber=1633951 |
attribute | NC_GLOBAL | awards_1_funder_name | String | NSF Division of Ocean Sciences |
attribute | NC_GLOBAL | awards_1_funding_acronym | String | NSF OCE |
attribute | NC_GLOBAL | awards_1_funding_source_nid | String | 355 |
attribute | NC_GLOBAL | awards_1_program_manager | String | Michael E. Sieracki |
attribute | NC_GLOBAL | awards_1_program_manager_nid | String | 50446 |
attribute | NC_GLOBAL | cdm_data_type | String | Other |
attribute | NC_GLOBAL | comment | String | Bottom water analysis \n collected May 2017 in the northern Gulf of Mexico \n PI: D. Burdige (ODU) \n Co-PIs: R. Zimmerman (ODU), M. Long (WHOI) \n version date: 2018-09-04 \n NOTES: nd indicates that only 1 of 3 bottles was analyzed so there is no standard deviation |
attribute | NC_GLOBAL | Conventions | String | COARDS, CF-1.6, ACDD-1.3 |
attribute | NC_GLOBAL | creator_email | String | info at bco-dmo.org |
attribute | NC_GLOBAL | creator_name | String | BCO-DMO |
attribute | NC_GLOBAL | creator_type | String | institution |
attribute | NC_GLOBAL | creator_url | String | https://www.bco-dmo.org/ |
attribute | NC_GLOBAL | data_source | String | extract_data_as_tsv version 2.3 19 Dec 2019 |
attribute | NC_GLOBAL | date_created | String | 2018-09-11T16:58:21Z |
attribute | NC_GLOBAL | date_modified | String | 2019-03-20T15:40:05Z |
attribute | NC_GLOBAL | defaultDataQuery | String | &time<now |
attribute | NC_GLOBAL | doi | String | 10.1575/1912/bco-dmo.745932.1 |
attribute | NC_GLOBAL | Easternmost_Easting | double | -84.456 |
attribute | NC_GLOBAL | geospatial_lat_max | double | 29.907 |
attribute | NC_GLOBAL | geospatial_lat_min | double | 29.853 |
attribute | NC_GLOBAL | geospatial_lat_units | String | degrees_north |
attribute | NC_GLOBAL | geospatial_lon_max | double | -84.456 |
attribute | NC_GLOBAL | geospatial_lon_min | double | -84.552 |
attribute | NC_GLOBAL | geospatial_lon_units | String | degrees_east |
attribute | NC_GLOBAL | infoUrl | String | https://www.bco-dmo.org/dataset/745932 |
attribute | NC_GLOBAL | institution | String | BCO-DMO |
attribute | NC_GLOBAL | instruments_0_acronym | String | TOC analyzer |
attribute | NC_GLOBAL | instruments_0_dataset_instrument_description | String | Used to measure dissolved organic carbon. |
attribute | NC_GLOBAL | instruments_0_dataset_instrument_nid | String | 748152 |
attribute | NC_GLOBAL | instruments_0_description | String | A unit that accurately determines the carbon concentrations of organic compounds typically by detecting and measuring its combustion product (CO2). See description document at: http://bcodata.whoi.edu/LaurentianGreatLakes_Chemistry/bs116.pdf |
attribute | NC_GLOBAL | instruments_0_instrument_external_identifier | String | https://vocab.nerc.ac.uk/collection/L05/current/LAB04/ |
attribute | NC_GLOBAL | instruments_0_instrument_name | String | Total Organic Carbon Analyzer |
attribute | NC_GLOBAL | instruments_0_instrument_nid | String | 652 |
attribute | NC_GLOBAL | instruments_0_supplied_name | String | Shimadzu TOC-V total carbon analyzer |
attribute | NC_GLOBAL | instruments_1_acronym | String | Ion Chromatograph |
attribute | NC_GLOBAL | instruments_1_dataset_instrument_description | String | Used to measure sulfate. |
attribute | NC_GLOBAL | instruments_1_dataset_instrument_nid | String | 748148 |
attribute | NC_GLOBAL | instruments_1_description | String | Ion chromatography is a form of liquid chromatography that measures concentrations of ionic species by separating them based on their interaction with a resin. Ionic species separate differently depending on species type and size. Ion chromatographs are able to measure concentrations of major anions, such as fluoride, chloride, nitrate, nitrite, and sulfate, as well as major cations such as lithium, sodium, ammonium, potassium, calcium, and magnesium in the parts-per-billion (ppb) range. (from http://serc.carleton.edu/microbelife/research_methods/biogeochemical/ic.html) |
attribute | NC_GLOBAL | instruments_1_instrument_name | String | Ion Chromatograph |
attribute | NC_GLOBAL | instruments_1_instrument_nid | String | 662 |
attribute | NC_GLOBAL | instruments_1_supplied_name | String | Thermo-Fisher Dionex ICS-5000 ion chromatograph |
attribute | NC_GLOBAL | instruments_2_acronym | String | Automatic titrator |
attribute | NC_GLOBAL | instruments_2_dataset_instrument_description | String | Used to measure alkalinity and initial pH. |
attribute | NC_GLOBAL | instruments_2_dataset_instrument_nid | String | 748146 |
attribute | NC_GLOBAL | instruments_2_description | String | Instruments that incrementally add quantified aliquots of a reagent to a sample until the end-point of a chemical reaction is reached. |
attribute | NC_GLOBAL | instruments_2_instrument_external_identifier | String | https://vocab.nerc.ac.uk/collection/L05/current/LAB12/ |
attribute | NC_GLOBAL | instruments_2_instrument_name | String | Automatic titrator |
attribute | NC_GLOBAL | instruments_2_instrument_nid | String | 682 |
attribute | NC_GLOBAL | instruments_2_supplied_name | String | Metrohm automatic titrator (model 785 DMP Titrino) |
attribute | NC_GLOBAL | instruments_3_acronym | String | Automatic titrator |
attribute | NC_GLOBAL | instruments_3_dataset_instrument_description | String | Used to measure alkalinity |
attribute | NC_GLOBAL | instruments_3_dataset_instrument_nid | String | 745940 |
attribute | NC_GLOBAL | instruments_3_description | String | Instruments that incrementally add quantified aliquots of a reagent to a sample until the end-point of a chemical reaction is reached. |
attribute | NC_GLOBAL | instruments_3_instrument_external_identifier | String | https://vocab.nerc.ac.uk/collection/L05/current/LAB12/ |
attribute | NC_GLOBAL | instruments_3_instrument_name | String | Automatic titrator |
attribute | NC_GLOBAL | instruments_3_instrument_nid | String | 682 |
attribute | NC_GLOBAL | instruments_4_acronym | String | Conductivity Meter |
attribute | NC_GLOBAL | instruments_4_dataset_instrument_description | String | Used to measure dissolved inorganic carbon. |
attribute | NC_GLOBAL | instruments_4_dataset_instrument_nid | String | 748153 |
attribute | NC_GLOBAL | instruments_4_description | String | Conductivity Meter - An electrical conductivity meter (EC meter) measures the electrical conductivity in a solution. Commonly used in hydroponics, aquaculture and freshwater systems to monitor the amount of nutrients, salts or impurities in the water. |
attribute | NC_GLOBAL | instruments_4_instrument_name | String | Conductivity Meter |
attribute | NC_GLOBAL | instruments_4_instrument_nid | String | 719 |
attribute | NC_GLOBAL | instruments_4_supplied_name | String | Dionex CDM-II conductivity detector |
attribute | NC_GLOBAL | keywords | String | alk, Alk_stdev, bco, bco-dmo, biological, bottles, chemical, collected, commerce, data, dataset, date, department, deviation, dic, DIC_stdev, dmo, doc, DOC_stdev, erddap, initial, initial_pH, initial_pH_stdev, iso, latitude, local, longitude, management, num, num_replicate_bottles, oceanography, office, preliminary, replicate, sample, sample_id, site, standard, standard deviation, stdev, sulfate, Sulfate_stdev, time |
attribute | NC_GLOBAL | license | String | https://www.bco-dmo.org/dataset/745932/license |
attribute | NC_GLOBAL | metadata_source | String | https://www.bco-dmo.org/api/dataset/745932 |
attribute | NC_GLOBAL | Northernmost_Northing | double | 29.907 |
attribute | NC_GLOBAL | param_mapping | String | {'745932': {'lat': 'master - latitude', 'lon': 'master - longitude'}} |
attribute | NC_GLOBAL | parameter_source | String | https://www.bco-dmo.org/mapserver/dataset/745932/parameters |
attribute | NC_GLOBAL | people_0_affiliation | String | Old Dominion University |
attribute | NC_GLOBAL | people_0_affiliation_acronym | String | ODU |
attribute | NC_GLOBAL | people_0_person_name | String | David J Burdige |
attribute | NC_GLOBAL | people_0_person_nid | String | 648653 |
attribute | NC_GLOBAL | people_0_role | String | Principal Investigator |
attribute | NC_GLOBAL | people_0_role_type | String | originator |
attribute | NC_GLOBAL | people_1_affiliation | String | Woods Hole Oceanographic Institution |
attribute | NC_GLOBAL | people_1_affiliation_acronym | String | WHOI |
attribute | NC_GLOBAL | people_1_person_name | String | Matthew Long |
attribute | NC_GLOBAL | people_1_person_nid | String | 560155 |
attribute | NC_GLOBAL | people_1_role | String | Co-Principal Investigator |
attribute | NC_GLOBAL | people_1_role_type | String | originator |
attribute | NC_GLOBAL | people_2_affiliation | String | Old Dominion University |
attribute | NC_GLOBAL | people_2_affiliation_acronym | String | ODU |
attribute | NC_GLOBAL | people_2_person_name | String | Richard C. Zimmerman |
attribute | NC_GLOBAL | people_2_person_nid | String | 51308 |
attribute | NC_GLOBAL | people_2_role | String | Co-Principal Investigator |
attribute | NC_GLOBAL | people_2_role_type | String | originator |
attribute | NC_GLOBAL | people_3_affiliation | String | Woods Hole Oceanographic Institution |
attribute | NC_GLOBAL | people_3_affiliation_acronym | String | WHOI BCO-DMO |
attribute | NC_GLOBAL | people_3_person_name | String | Nancy Copley |
attribute | NC_GLOBAL | people_3_person_nid | String | 50396 |
attribute | NC_GLOBAL | people_3_role | String | BCO-DMO Data Manager |
attribute | NC_GLOBAL | people_3_role_type | String | related |
attribute | NC_GLOBAL | project | String | Seagrass Blue Carbon |
attribute | NC_GLOBAL | projects_0_acronym | String | Seagrass Blue Carbon |
attribute | NC_GLOBAL | projects_0_description | String | NSF abstract:\nThis research will develop a quantitative understanding of the factors controlling carbon cycling in seagrass meadows that will improve our ability to quantify their potential as blue carbon sinks and predict their future response to climate change, including sea level rise, ocean warming and ocean acidification. This project will advance a new generation of bio-optical-geochemical models and tools (ECHOES) that have the potential to be transform our ability to measure and predict carbon dynamics in shallow water systems.\nThis study will utilize cutting-edge methods for evaluating oxygen and carbon exchange (Eulerian and eddy covariance techniques) combined with biomass, sedimentary, and water column measurements to develop and test numerical models that can be scaled up to quantify the dynamics of carbon cycling and sequestration in seagrass meadows in temperate and tropical environments of the West Atlantic continental margin that encompass both siliciclastic and carbonate sediments. The comparative analysis across latitudinal and geochemical gradients will address the relative contributions of different species and geochemical processes to better constrain the role of seagrass carbon sequestration to global biogeochemical cycles. Specifically the research will quantify: (i) the relationship between C stocks and standing biomass for different species with different life histories and structural complexity, (ii) the influence of above- and below-ground metabolism on carbon exchange, and (iii) the influence of sediment type (siliciclastic vs. carbonate) on Blue Carbon storage. Seagrass biomass, growth rates, carbon content and isotope composition (above- and below-ground), organic carbon deposition and export will be measured. Sedimentation rates and isotopic composition of PIC, POC, and iron sulfide precipitates, as well as porewater concentrations of dissolved sulfide, CO2, alkalinity and salinity will be determined in order to develop a bio-optical-geochemical model that will predict the impact of seagrass metabolism on sediment geochemical processes that control carbon cycling in shallow waters. Model predictions will be validated against direct measurements of DIC and O2 exchange in seagrass meadows, enabling us to scale-up the density-dependent processes to predict the impacts of seagrass distribution and density on carbon cycling and sequestration across the submarine landscape.\nStatus, as of 09 June 2016: This project has been recommended for funding by NSF's Division of Ocean Sciences. |
attribute | NC_GLOBAL | projects_0_end_date | String | 2019-07 |
attribute | NC_GLOBAL | projects_0_geolocation | String | Chesapeake Bay, Northern Gulf of Mexico, and Bahamas Banks |
attribute | NC_GLOBAL | projects_0_name | String | Toward an Improved Understanding of Blue Carbon: The Role of Seagrasses in Sequestering CO2 |
attribute | NC_GLOBAL | projects_0_project_nid | String | 648649 |
attribute | NC_GLOBAL | projects_0_start_date | String | 2016-08 |
attribute | NC_GLOBAL | publisher_name | String | Biological and Chemical Oceanographic Data Management Office (BCO-DMO) |
attribute | NC_GLOBAL | publisher_type | String | institution |
attribute | NC_GLOBAL | sourceUrl | String | (local files) |
attribute | NC_GLOBAL | Southernmost_Northing | double | 29.853 |
attribute | NC_GLOBAL | standard_name_vocabulary | String | CF Standard Name Table v55 |
attribute | NC_GLOBAL | summary | String | This dataset includes results of analysis on sediment core bottom water samples collected from the northern Gulf of Mexico in May 2017 - initial pH, alkalinity, sulfate, DIC, and DOC. |
attribute | NC_GLOBAL | title | String | [Gulf of Mexico bottom water analysis] - Chemical analysis from sediment core bottom water samples collected in the northern Gulf of Mexico, May 2017 (Toward an Improved Understanding of Blue Carbon: The Role of Seagrasses in Sequestering CO2) |
attribute | NC_GLOBAL | version | String | 1 |
attribute | NC_GLOBAL | Westernmost_Easting | double | -84.552 |
attribute | NC_GLOBAL | xml_source | String | osprey2erddap.update_xml() v1.3 |
variable | sample_id | byte | ||
attribute | sample_id | _FillValue | byte | 127 |
attribute | sample_id | actual_range | byte | 1, 11 |
attribute | sample_id | bcodmo_name | String | core_id |
attribute | sample_id | description | String | sample id |
attribute | sample_id | long_name | String | Sample Id |
attribute | sample_id | units | String | unitless |
variable | site | String | ||
attribute | site | bcodmo_name | String | site |
attribute | site | description | String | site |
attribute | site | long_name | String | Site |
attribute | site | units | String | unitless |
variable | latitude | double | ||
attribute | latitude | _CoordinateAxisType | String | Lat |
attribute | latitude | _FillValue | double | NaN |
attribute | latitude | actual_range | double | 29.853, 29.907 |
attribute | latitude | axis | String | Y |
attribute | latitude | bcodmo_name | String | latitude |
attribute | latitude | colorBarMaximum | double | 90.0 |
attribute | latitude | colorBarMinimum | double | -90.0 |
attribute | latitude | description | String | latitude; north is positive |
attribute | latitude | ioos_category | String | Location |
attribute | latitude | long_name | String | Latitude |
attribute | latitude | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P09/current/LATX/ |
attribute | latitude | standard_name | String | latitude |
attribute | latitude | units | String | degrees_north |
variable | longitude | double | ||
attribute | longitude | _CoordinateAxisType | String | Lon |
attribute | longitude | _FillValue | double | NaN |
attribute | longitude | actual_range | double | -84.552, -84.456 |
attribute | longitude | axis | String | X |
attribute | longitude | bcodmo_name | String | longitude |
attribute | longitude | colorBarMaximum | double | 180.0 |
attribute | longitude | colorBarMinimum | double | -180.0 |
attribute | longitude | description | String | longitude; east is positive |
attribute | longitude | ioos_category | String | Location |
attribute | longitude | long_name | String | Longitude |
attribute | longitude | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P09/current/LONX/ |
attribute | longitude | standard_name | String | longitude |
attribute | longitude | units | String | degrees_east |
variable | ISO_DateTime_Local_collected | String | ||
attribute | ISO_DateTime_Local_collected | bcodmo_name | String | date_local |
attribute | ISO_DateTime_Local_collected | description | String | local date and time collected formatted as YYYY-MM-DDTHH:MM:SS (ISO 8601:2004€ ) |
attribute | ISO_DateTime_Local_collected | long_name | String | ISO Date Time Local Collected |
attribute | ISO_DateTime_Local_collected | source_name | String | ISO_DateTime_Local_collected |
attribute | ISO_DateTime_Local_collected | time_precision | String | 1970-01-01T00:00:00Z |
attribute | ISO_DateTime_Local_collected | units | String | unitless |
variable | num_replicate_bottles | byte | ||
attribute | num_replicate_bottles | _FillValue | byte | 127 |
attribute | num_replicate_bottles | actual_range | byte | 2, 3 |
attribute | num_replicate_bottles | bcodmo_name | String | num_reps |
attribute | num_replicate_bottles | description | String | number of replicate bottles collected |
attribute | num_replicate_bottles | long_name | String | Num Replicate Bottles |
attribute | num_replicate_bottles | units | String | bottles |
variable | initial_pH | String | ||
attribute | initial_pH | bcodmo_name | String | pH |
attribute | initial_pH | description | String | initial pH determined during alkalinity titrations |
attribute | initial_pH | long_name | String | Initial P H |
attribute | initial_pH | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/PHXXZZXX/ |
attribute | initial_pH | units | String | NBS scale |
variable | initial_pH_stdev | float | ||
attribute | initial_pH_stdev | _FillValue | float | NaN |
attribute | initial_pH_stdev | actual_range | float | 0.0, 0.05 |
attribute | initial_pH_stdev | bcodmo_name | String | pH |
attribute | initial_pH_stdev | description | String | initial pH determined during alkalinity titrations |
attribute | initial_pH_stdev | long_name | String | Initial P H Stdev |
attribute | initial_pH_stdev | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/PHXXZZXX/ |
attribute | initial_pH_stdev | units | String | NBS scale |
variable | Alk | String | ||
attribute | Alk | bcodmo_name | String | TALK |
attribute | Alk | description | String | pore water alkalinity |
attribute | Alk | long_name | String | Alk |
attribute | Alk | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/MDMAP014/ |
attribute | Alk | units | String | milliMoles |
variable | Alk_stdev | float | ||
attribute | Alk_stdev | _FillValue | float | NaN |
attribute | Alk_stdev | actual_range | float | 0.002, 0.06 |
attribute | Alk_stdev | bcodmo_name | String | TALK |
attribute | Alk_stdev | description | String | pore water sulfate |
attribute | Alk_stdev | long_name | String | Alk Stdev |
attribute | Alk_stdev | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/MDMAP014/ |
attribute | Alk_stdev | units | String | milliMoles |
variable | Sulfate | String | ||
attribute | Sulfate | bcodmo_name | String | SO4 |
attribute | Sulfate | description | String | standard deviation of sulfate concentration |
attribute | Sulfate | long_name | String | Sulfate |
attribute | Sulfate | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/SPHTMAXX/ |
attribute | Sulfate | units | String | milliMoles |
variable | Sulfate_stdev | float | ||
attribute | Sulfate_stdev | _FillValue | float | NaN |
attribute | Sulfate_stdev | actual_range | float | 0.07, 0.65 |
attribute | Sulfate_stdev | bcodmo_name | String | SO4 |
attribute | Sulfate_stdev | description | String | pore water dissolved inorganic carbon |
attribute | Sulfate_stdev | long_name | String | Sulfate Stdev |
attribute | Sulfate_stdev | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/SPHTMAXX/ |
attribute | Sulfate_stdev | units | String | milliMoles |
variable | DIC | float | ||
attribute | DIC | _FillValue | float | NaN |
attribute | DIC | actual_range | float | 1.63, 2.17 |
attribute | DIC | bcodmo_name | String | DIC |
attribute | DIC | description | String | pore water dissolved iron |
attribute | DIC | long_name | String | DIC |
attribute | DIC | units | String | microMoles |
variable | DIC_stdev | float | ||
attribute | DIC_stdev | _FillValue | float | NaN |
attribute | DIC_stdev | actual_range | float | 0.01, 0.04 |
attribute | DIC_stdev | bcodmo_name | String | DIC |
attribute | DIC_stdev | description | String | pore water dissolved ammonium |
attribute | DIC_stdev | long_name | String | DIC Stdev |
attribute | DIC_stdev | units | String | microMoles |
variable | DOC | String | ||
attribute | DOC | bcodmo_name | String | DOC |
attribute | DOC | description | String | pore water total dissolved sulfide |
attribute | DOC | long_name | String | DOC |
attribute | DOC | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/CORGZZZX/ |
attribute | DOC | units | String | microMoles |
variable | DOC_stdev | float | ||
attribute | DOC_stdev | _FillValue | float | NaN |
attribute | DOC_stdev | actual_range | float | 9.92, 57.19 |
attribute | DOC_stdev | bcodmo_name | String | DOC |
attribute | DOC_stdev | description | String | pore water dissolved organic carbon |
attribute | DOC_stdev | long_name | String | DOC Stdev |
attribute | DOC_stdev | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/CORGZZZX/ |
attribute | DOC_stdev | units | String | microMoles |