Coastal Ocean Data Analysis Product in North America (CODAP-NA, Version 2021) (NCEI Accession 0219960)
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abstract: This data package contains an internally consistent data product for discrete inorganic carbon, oxygen, and nutrients on the U.S. North American ocean margins, i.e., Coastal Ocean Data Analysis Product (CODAP-NA). It is created by compiling, quality controlling (QC), and synthesizing two decades of discrete measurements of inorganic carbon, oxygen, and nutrient chemistry data from North America’s U.S. coastal oceans. Due to the lack of deep-water sampling (>1500m), cross-over analyses were not conducted like the open ocean data products. Instead, only core data sets from laboratories with known quality assurance are included. Internal consistency checks and outlier detections are used to quality control the data. We worked closely with the investigators who collected and measured these data during the QC process. This version of the CODAP-NA is composed of 3,391 oceanographic profiles from 61 research cruises covering all continental shelves in North America (U.S. west coast, U.S. east coast, Gulf of Mexico, and Alaska coast). Data for 14 variables (temperature; salinity; dissolved oxygen concentration; dissolved inorganic carbon concentration; total alkalinity; pH on the Total Scale; carbonate ion concentration; fugacity of carbon dioxide; and concentrations of silicate, phosphate, nitrate, nitrite, nitrate plus nitrite, and ammonium) have been subjected to extensive quality control. Funding for this work comes from the National Oceanic and Atmospheric Administration (NOAA) Ocean Acidification Program (OAP, Project #: OAP 1903-1903).
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initiativeType: (DS_InitiativeTypeCode) project
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aggregateDataSetName: (CI_Citation)
title: NOAA National Centers for Environmental Information (2022). Ocean Carbon and Acidification Data System (OCADS). NOAA National Centers for Environmental Information. https://www.ncei.noaa.gov/products/ocean-carbon-acidification-data-system
date: (CI_Date)
date: 2022-04
dateType: (CI_DateTypeCode) publication
citedResponsibleParty: (CI_ResponsibleParty)
positionName: (unknown)
contactInfo: (CI_Contact)
onlineResource: (CI_OnlineResource)
linkage: https://www.ncei.noaa.gov/products/ocean-carbon-acidification-data-system
protocol: HTTPS
name: https://www.ncei.noaa.gov/products/ocean-carbon-acidification-data-system
description: OCADS website
function: (CI_OnLineFunctionCode) information
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citedResponsibleParty: (CI_ResponsibleParty)
organisationName:
Anchor: https://www.ncei.noaa.gov/archive/archive-management-system/OAS/bin/prd/jquery/institution/details/1730 NOAA National Centers for Environmental Information
role: (CI_RoleCode) author
citedResponsibleParty: (CI_ResponsibleParty)
organisationName:
Anchor: https://www.ncei.noaa.gov/archive/archive-management-system/OAS/bin/prd/jquery/institution/details/1730 US DOC; NOAA; NESDIS; National Centers for Environmental Information (NCEI)
role: (CI_RoleCode) publisher
presentationForm: (CI_PresentationFormCode) documentDigital
otherCitationDetails: [accessed 2024-02-08]
associationType: (DS_AssociationTypeCode) crossReference
initiativeType: (DS_InitiativeTypeCode) program
language:
LanguageCode: eng; USA
characterSet: (MD_CharacterSetCode) utf8
topicCategory: (MD_TopicCategoryCode) environment
topicCategory: (MD_TopicCategoryCode) oceans
extent: (EX_Extent)
geographicElement: (EX_GeographicBoundingBox)
westBoundLongitude: -179.44
eastBoundLongitude: -65.45
southBoundLatitude: 18.83
northBoundLatitude: 62.78
temporalElement: (EX_TemporalExtent)
extent:
TimePeriod:
beginPosition: 2003-12-05
endPosition: 2018-11-22
supplementalInformation: To access the paper, please refer to https://doi.org/10.5194/essd-2020-402.
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distributionInfo: (MD_Distribution)
distributor: (MD_Distributor)
distributorContact: (CI_ResponsibleParty)
organisationName:
Anchor: https://www.ncei.noaa.gov/archive/archive-management-system/OAS/bin/prd/jquery/institution/details/1730 NOAA National Centers for Environmental Information
contactInfo: (CI_Contact)
phone: (CI_Telephone)
voice: +1-301-713-3277
address: (CI_Address)
electronicMailAddress: NCEI.Info@noaa.gov
role: (CI_RoleCode) pointOfContact
distributionOrderProcess: (MD_StandardOrderProcess)
fees: In most cases, electronic downloads of the data are free. However, fees may apply for custom orders, data certifications, copies of analog materials, and data distribution on physical media.
orderingInstructions: Contact NCEI for other distribution options and instructions.
distributorFormat: (MD_Format)
name: Originator data format
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distributorTransferOptions: (MD_DigitalTransferOptions)
transferSize:
Real: 41.18
onLine: (CI_OnlineResource)
linkage: https://www.ncei.noaa.gov/data/oceans/ncei/ocads/metadata/0219960.html
protocol: HTTPS
applicationProfile: Web browser
name: Project Metadata
description: Navigate directly to the URL for a descriptive web page with download links.
function: (CI_OnLineFunctionCode) information
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linkage: https://doi.org/10.25921/531n-c230
protocol: HTTPS
applicationProfile: Web browser
name: NCEI Dataset Landing Page
description: Navigate directly to the URL for a descriptive web page with download links.
function: (CI_OnLineFunctionCode) information
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linkage: https://www.ncei.noaa.gov/archive/accession/oas/219960
protocol: HTTPS
applicationProfile: Web browser
name: Descriptive Information
description: Navigate directly to the URL for a descriptive web page with download links.
function: (CI_OnLineFunctionCode) information
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linkage: https://www.ncei.noaa.gov/archive/accession/download/219960
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function: (CI_OnLineFunctionCode) download
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linkage: ftp://ftp-oceans.ncei.noaa.gov/nodc/archive/arc0165/0219960/
protocol: FTP
applicationProfile: Any FTP client
name: FTP
description: These data are available through the File Transfer Protocol (FTP). FTP is no longer supported by most internet browsers. You may copy and paste the FTP link to the data into an FTP client (e.g., FileZilla or WinSCP).
function: (CI_OnLineFunctionCode) download
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dataQualityInfo: (DQ_DataQuality)
scope: (DQ_Scope)
level: (MD_ScopeCode) dataset
lineage: (LI_Lineage)
processStep: (LE_ProcessStep)
description: NCEI Accession 0219960 v1.1 was published.
dateTime:
DateTime: 2020-12-16T12:39:18Z
output: (LE_Source)
sourceCitation: (CI_Citation)
title: NCEI Accession 0219960 v1.1
date: (CI_Date)
date: (inapplicable)
dateType: (CI_DateTypeCode) publication
citedResponsibleParty: (CI_ResponsibleParty)
individualName: (inapplicable)
contactInfo: (CI_Contact)
onlineResource: (CI_OnlineResource)
linkage: https://www.ncei.noaa.gov/archive/accession/0219960/1.1
protocol: HTTPS
name: NCEI Accession 0219960 v1.1
description: published 2020-12-16T12:39:18Z
function: (CI_OnLineFunctionCode) download
role: (inapplicable)
processStep: (LE_ProcessStep)
description: NCEI Accession 0219960 was revised and v2.2 was published.
rationale: Updates were received for this dataset. These updates were copied into the data/0-data/ directory of this accession. These updates may provide additional files or replace obsolete files. This version contains the most complete and up-to-date representation of this archival information package. All of the files received prior to this update are available in the preceding version of this accession.
dateTime:
DateTime: 2020-12-24T11:40:41Z
output: (LE_Source)
sourceCitation: (CI_Citation)
title: NCEI Accession 0219960 v2.2
date: (CI_Date)
date: (inapplicable)
dateType: (CI_DateTypeCode) publication
citedResponsibleParty: (CI_ResponsibleParty)
individualName: (inapplicable)
contactInfo: (CI_Contact)
onlineResource: (CI_OnlineResource)
linkage: https://www.ncei.noaa.gov/archive/accession/0219960/2.2
protocol: HTTPS
name: NCEI Accession 0219960 v2.2
description: published 2020-12-24T11:40:41Z
function: (CI_OnLineFunctionCode) download
role: (inapplicable)
processStep: (LE_ProcessStep)
description: NCEI Accession 0219960 was revised and v3.3 was published.
rationale: Updates were received for this dataset. These updates were copied into the data/0-data/ directory of this accession. These updates may provide additional files or replace obsolete files. This version contains the most complete and up-to-date representation of this archival information package. All of the files received prior to this update are available in the preceding version of this accession.
dateTime:
DateTime: 2021-04-16T21:54:22Z
output: (LE_Source)
sourceCitation: (CI_Citation)
title: NCEI Accession 0219960 v3.3
date: (CI_Date)
date: (inapplicable)
dateType: (CI_DateTypeCode) publication
citedResponsibleParty: (CI_ResponsibleParty)
individualName: (inapplicable)
contactInfo: (CI_Contact)
onlineResource: (CI_OnlineResource)
linkage: https://www.ncei.noaa.gov/archive/accession/0219960/3.3
protocol: HTTPS
name: NCEI Accession 0219960 v3.3
description: published 2021-04-16T21:54:22Z
function: (CI_OnLineFunctionCode) download
role: (inapplicable)
processStep: (LE_ProcessStep)
description: NCEI Accession 0219960 was revised and v3.4 was published.
rationale: Additional metadata files were received or created for this dataset. These updates were copied into the about/ directory of this accession. These updates may provide additional files or replace obsolete files. This version contains the most complete and up-to-date representation of this archival information package. All of the files received prior to this update are available in the preceding version of this accession.
dateTime:
DateTime: 2021-04-27T11:25:34Z
output: (LE_Source)
sourceCitation: (CI_Citation)
title: NCEI Accession 0219960 v3.4
date: (CI_Date)
date: (inapplicable)
dateType: (CI_DateTypeCode) publication
citedResponsibleParty: (CI_ResponsibleParty)
individualName: (inapplicable)
contactInfo: (CI_Contact)
onlineResource: (CI_OnlineResource)
linkage: https://www.ncei.noaa.gov/archive/accession/0219960/3.4
protocol: HTTPS
name: NCEI Accession 0219960 v3.4
description: published 2021-04-27T11:25:34Z
function: (CI_OnLineFunctionCode) download
role: (inapplicable)
processStep: (LE_ProcessStep)
description: NCEI Accession 0219960 was revised and v4.5 was published.
rationale: Updates were received for this dataset. These updates were copied into the data/0-data/ directory of this accession. These updates may provide additional files or replace obsolete files. This version contains the most complete and up-to-date representation of this archival information package. All of the files received prior to this update are available in the preceding version of this accession.
dateTime:
DateTime: 2021-08-10T21:52:28Z
output: (LE_Source)
sourceCitation: (CI_Citation)
title: NCEI Accession 0219960 v4.5
date: (CI_Date)
date: (inapplicable)
dateType: (CI_DateTypeCode) publication
citedResponsibleParty: (CI_ResponsibleParty)
individualName: (inapplicable)
contactInfo: (CI_Contact)
onlineResource: (CI_OnlineResource)
linkage: https://www.ncei.noaa.gov/archive/accession/0219960/4.5
protocol: HTTPS
name: NCEI Accession 0219960 v4.5
description: published 2021-08-10T21:52:28Z
function: (CI_OnLineFunctionCode) download
role: (inapplicable)
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dataQualityInfo: (DQ_DataQuality)
scope: (DQ_Scope)
level: (MD_ScopeCode) dataset
lineage: (LI_Lineage)
processStep: (LE_ProcessStep)
description: Parameter or Variable: Dissolved Inorganic Carbon; Abbreviation: DIC; Unit: umol/kg; Observation type: Profile and discrete sampling; Measured or calculated: measured; Sampling instrument: Niskin bottle or flow-through system; Uncertainty: 0.1%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Total alkalinity; Abbreviation: TALK; Unit: umol/kg; Observation type: Profile and discrete sampling; Measured or calculated: measured; Sampling instrument: Niskin bottle or flow-through system; Uncertainty: 0.2%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: pH; Abbreviation: pH_TS_measured, TEMP_pH, pH_TS_insitu_measured; pH scale: Total scale; Observation type: Profile and discrete sampling; Measured or calculated: measured; Sampling instrument: Niskin bottle or flow-through system; Analyzing instrument: Spectrophotometer; Temperature of pH measurement: various; Detailed sampling and analyzing information: pH_TS_insitu_measured was recalculated from its measurement conditions (i.e., pH_TS_measured at TEMP_pH and ambient pressure) using the MATLAB version 3.01 (Sharp et al., 2020) of the CO2SYS program (Lewis and Wallace, 1998), with the dissociation constants for carbonic acid of Lueker et al. (2000), bisulfate (HSO4-) of Dickson (1990), hydrofluoric acid (HF) of Perez and Fraga (1987), and with the total borate equations of Lee et al., (2010). TALK was preferentially used as the second carbon parameter. When it was not available, DIC was used. If neither of them was available, TALK derived from salinity with the locally interpolated alkalinity regression (LIARv2) method was used for the adjustment from measurement to in-situ conditions (Carter et al., 2018). When either silicate or phosphate data were unavailable, their mean values during the cruise were used for the calculation. Samples with a salinity of less than 15 were excluded from this calculation, due to the potentially large uncertainties.; At what temperature was pH reported: in-situ; Uncertainty: plus/minus 0.003; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: pCO2 (fCO2) autonomous; Abbreviation: fCO2_insitu_calculated; Unit: uatm; Measured or calculated: calculated; Calculation method and parameters: The carbonate system calculations were conducted using the MATLAB version 3.01 (Sharp et al., 2020) of the CO2SYS program (Lewis and Wallace, 1998), with the dissociation constants for carbonic acid of Lueker et al. (2000), bisulfate (HSO4-) of Dickson (1990), hydrofluoric acid (HF) of Perez and Fraga (1987), and with the total borate equations of Lee et al., (2010). When either silicate or phosphate data were unavailable, their mean values during the cruise were used for the calculation. Samples with a salinity of less than 15 were excluded from this calculation, due to the potentially large uncertainties.; Uncertainty: 3%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: pCO2 (fCO2) discrete; Abbreviation: fCO2_measured, TEMP_fCO2, and fCO2_insitu_measured; Unit: uatm; Observation type: Profile and discrete sampling; Measured or calculated: measured; Sampling instrument: Niskin bottle; Detailed sampling and analyzing information: fCO2_insitu_measured was recalculated from its measurement conditions (i.e., fCO2_measured at TEMP_fCO2 and ambient pressure) using the MATLAB version 3.01 (Sharp et al., 2020) of the CO2SYS program (Lewis and Wallace, 1998), with the dissociation constants for carbonic acid of Lueker et al. (2000), bisulfate (HSO4-) of Dickson (1990), hydrofluoric acid (HF) of Perez and Fraga (1987), and with the total borate equations of Lee et al., (2010). TALK was preferentially used as the second carbon parameter. When it was not available, DIC was used. If neither of them was available, TALK derived from salinity with the locally interpolated alkalinity regression (LIARv2) method was used for the adjustment from measurement to in-situ conditions (Carter et al., 2018). When either silicate or phosphate data were unavailable, their mean values during the cruise were used for the calculation. Samples with a salinity of less than 15 were excluded from this calculation, due to the potentially large uncertainties.; Uncertainty: n/a; Researcher name: Rik Wanninkhof; Researcher institution: NOAA Atlantic Oceanographic and Meteorological Laboratory and University of Maimi.
processStep: (LE_ProcessStep)
description: Parameter or Variable: pH that is calculated from CO2SYS with DIC and TALK; Abbreviation: pH_TS_insitu_calculated; Unit: umol/kg; Observation type: calculated; Detailed sampling and analyzing information: The carbonate system calculations were conducted using the MATLAB version 3.01 (Sharp et al., 2020) of the CO2SYS program (Lewis and Wallace, 1998), with the dissociation constants for carbonic acid of Lueker et al. (2000), bisulfate (HSO4-) of Dickson (1990), hydrofluoric acid (HF) of Perez and Fraga (1987), and with the total borate equations of Lee et al., (2010). When either silicate or phosphate data were unavailable, their mean values during the cruise were used for the calculation. Samples with a salinity of less than 15 were excluded from this calculation, due to the potentially large uncertainties.; Uncertainty: plus/minus 0.01; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: The concentration of carbonate measured from spectrophotometers; Abbreviation: Carbonatre_measured, TEMP_Carbonate, and Carbonate_insitu_measured; Unit: umol/kg; Observation type: Profile and discrete sampling; Sampling instrument: Niskin bottle; Detailed sampling and analyzing information: Carbonate_insitu_measured was recalculated from its measurement conditions (Carbonate_measured at TEMP_Carbonate and ambient pressure) using the MATLAB version 3.01 (Sharp et al., 2020) of the CO2SYS program (Lewis and Wallace, 1998), with the dissociation constants for carbonic acid of Lueker et al. (2000), bisulfate (HSO4-) of Dickson (1990), hydrofluoric acid (HF) of Perez and Fraga (1987), and with the total borate equations of Lee et al., (2010). TALK was preferentially used as the second carbon parameter. When it was not available, DIC was used. If neither of them was available, TALK derived from salinity with the locally interpolated alkalinity regression (LIARv2) method was used for the adjustment from measurement to in-situ conditions (Carter et al., 2018). When either silicate or phosphate data were unavailable, their mean values during the cruise were used for the calculation. Samples with a salinity of less than 15 were excluded from this calculation, due to the potentially large uncertainties.; Uncertainty: 2%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: The concentration of carbonate calculated from the CO2SYS with DIC and TALK; Abbreviation: Carbonate_insitu_calculated; Unit: umol/kg; Observation type: calculated; Detailed sampling and analyzing information: The carbonate system calculations were conducted using the MATLAB version 3.01 (Sharp et al., 2020) of the CO2SYS program (Lewis and Wallace, 1998), with the dissociation constants for carbonic acid of Lueker et al. (2000), bisulfate (HSO4-) of Dickson (1990), hydrofluoric acid (HF) of Perez and Fraga (1987), and with the total borate equations of Lee et al., (2010). When either silicate or phosphate data were unavailable, their mean values during the cruise were used for the calculation. Samples with a salinity of less than 15 were excluded from this calculation, due to the potentially large uncertainties.; Uncertainty: 3%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Aragonite saturation state; Abbreviation: Aragonite; Unit: (none); Observation type: calculated; Detailed sampling and analyzing information: The carbonate system calculations were conducted using the MATLAB version 3.01 (Sharp et al., 2020) of the CO2SYS program (Lewis and Wallace, 1998), with the dissociation constants for carbonic acid of Lueker et al. (2000), bisulfate (HSO4-) of Dickson (1990), hydrofluoric acid (HF) of Perez and Fraga (1987), and with the total borate equations of Lee et al., (2010). When either silicate or phosphate data were unavailable, their mean values during the cruise were used for the calculation. Samples with a salinity of less than 15 were excluded from this calculation, due to the potentially large uncertainties.; Uncertainty: 5%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Calcite saturation state; Abbreviation: Calcite; Unit: (none); Observation type: calculated; Detailed sampling and analyzing information: The carbonate system calculations were conducted using the MATLAB version 3.01 (Sharp et al., 2020) of the CO2SYS program (Lewis and Wallace, 1998), with the dissociation constants for carbonic acid of Lueker et al. (2000), bisulfate (HSO4-) of Dickson (1990), hydrofluoric acid (HF) of Perez and Fraga (1987), and with the total borate equations of Lee et al., (2010). When either silicate or phosphate data were unavailable, their mean values during the cruise were used for the calculation. Samples with a salinity of less than 15 were excluded from this calculation, due to the potentially large uncertainties.; Uncertainty: 5%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Revelle Factor; Abbreviation: Revelle Factor; Unit: (none); Observation type: calculated; Detailed sampling and analyzing information: The carbonate system calculations were conducted using the MATLAB version 3.01 (Sharp et al., 2020) of the CO2SYS program (Lewis and Wallace, 1998), with the dissociation constants for carbonic acid of Lueker et al. (2000), bisulfate (HSO4-) of Dickson (1990), hydrofluoric acid (HF) of Perez and Fraga (1987), and with the total borate equations of Lee et al., (2010). When either silicate or phosphate data were unavailable, their mean values during the cruise were used for the calculation. Samples with a salinity of less than 15 were excluded from this calculation, due to the potentially large uncertainties.; Uncertainty: 1%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Oxygen values measured from sensors mounted on the CTD; Abbreviation: CTDOXY; Unit: umol/kg; Observation type: Profile and continuous sampling; Uncertainty: 4%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Discrete oxygen measured from Winkler Titration; Abbreviation: Oxygen; Unit: umol/kg; Observation type: Profile and discrete sampling; Sampling instrument: Niskin bottle; Uncertainty: 3%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Discrete Oxygen with missing values filled up using CTDOXY values.; Abbreviation: recommended_Oxygen; Unit: umol/kg; Observation type: Profile (discrete and continuous); Detailed sampling and analyzing information: The “recommended_Oxygen” column was created by preferentially using Oxygen values. In cases when Oxygen values were not available but CTDOXY values with a QC flag of 2 were available, the recommended_Oxygen values were filled up using CTDOXY values.; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Apparent oxygen utilization; Abbreviation: AOU; Unit: umol/kg; Observation type: calculated from recommended_Oxygen and other parameters; Detailed sampling and analyzing information: Apparent oxygen utilization (AOU) was calculated based on absolute salinity, conservative temperature, latitude, longitude, CTDPRES, and recommended_Oxygen variable using the function “gsw_O2sol” as described in the TEOS-10 (IOC et al., 2010). Oxygen solubility is estimated with the combined equation from Garcia and Gordon (1992).; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Silicate concentration; Abbreviation: Silicate; Unit: umol/kg; Observation type: Profile and discrete sampling; Sampling instrument: Niskin bottle; Uncertainty: 5%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Phosphate concentration; Abbreviation: Phosphate; Unit: umol/kg; Observation type: Profile and discrete sampling; Sampling instrument: Niskin bottle; Uncertainty: 5%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Nitrate concentration; Abbreviation: Nitrate; Unit: umol/kg; Observation type: Profile and discrete sampling; Sampling instrument: Niskin bottle; Detailed sampling and analyzing information: When Nitrate values were not available, but both Nitrate_and_Nitrite and Nitrite values with QC flags of 2 or 6 were available, Nitrate values were calculated by subtracting Nitrite from Nitrate_and_Nitrite.; Uncertainty: 2%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Nitrite concentration; Abbreviation: Nitrite; Unit: umol/kg; Observation type: Profile and discrete sampling; Sampling instrument: Niskin bottle; Uncertainty: 69%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: The concentration of Nitrate plus Nitrite; Abbreviation: Nitrate_and_Nitrite; Unit: umol/kg; Observation type: Profile and discrete sampling; Sampling instrument: Niskin bottle; Detailed sampling and analyzing information: When Nitrate_and_Nitrite values were not available, but both Nitrate and Nitrite values with QC flags of 2 or 6 were available, Nitrate_and_Nitrite values were calculated by adding Nitrate and Nitrite concentrations together.; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: The concentration of Nitrate plus Nitrite with missing values filled out from Nitrate; Abbreviation: recommended_Nitrate_and_Nitrite; Unit: umol/kg; Observation type: Profile and discrete sampling; Sampling instrument: Niskin bottle; Detailed sampling and analyzing information: The “recommended_Nitrate_and_Nitrite” column was created by preferentially using Nitrate_and_Nitrite values. In cases when Nitrate_and_Nitrite values were not available but Nitrate values with a QC flag of 2 or 6 were available (Nitrite values not available), the Nitrate_and_Nitrite values were assumed to be approximate to the Nitrate values. It can be used as Nitrate (better coverage), because Nitrite concentration is often much lower than Nitrate.; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Ammonium concentration; Abbreviation: Ammonium; Unit: umol/kg; Observation type: Profile and discrete sampling; Sampling instrument: Niskin bottle; Uncertainty: 72%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: CTD temperature; Abbreviation: CTDTEMP_ITS90; Unit: oC; Observation type: Profile and continuous sampling; Sampling instrument: CTD; Detailed sampling and analyzing information: Some surface samples from a few coastal cruises were collected from flow-through systems onboard research vessels, instead of Niskin bottles. In such cases, the temperature and salinity values were stored in CTDTEMP and CTDSAL, respectively, although they were not measured from sensors mounted on a CTD rosette.; Uncertainty: plus/minus 0.06 oC; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: CTD salinity on the PSS78 scale; Abbreviation: CTDSAL_PSS78; Unit: (none); Observation type: Profile and continuous sampling; Sampling instrument: CTD; Detailed sampling and analyzing information: Some surface samples from a few coastal cruises were collected from flow-through systems onboard research vessels, instead of Niskin bottles. In such cases, the temperature and salinity values were stored in CTDTEMP and CTDSAL, respectively, although they were not measured from sensors mounted on a CTD rosette.; Uncertainty: 0.02%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Discrete salinity on PSS78 scale; Abbreviation: Salinity_PSS78; Unit: (none); Observation type: Profile and discrete sampling; Sampling instrument: Niskin bottle; Uncertainty: 0.01%; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Discrete salinity on PSS78 scale with missing values filled up using CTDSAL_PSS78 values.; Abbreviation: recommended_Salinity_PSS78; Unit: (none); Observation type: Profile (discrete and continuous); Detailed sampling and analyzing information: The “recommended_Salinity_PSS78” column was created by preferentially using Salinity_PSS78 values. In cases when Salinity_PSS78 values were not available but CTDSAL_PSS78 values with a QC flag of 2 were available, the recommended_Salinity_PSS78 values were filled up using CTDSAL_PSS78 values.; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: CTD pressure; Abbreviation: CTDPRES; Unit: dbar; Observation type: Profile and continuous sampling; Sampling instrument: CTD; Detailed sampling and analyzing information: For data collected from the ship’s flow-through system, their pressure or depth values is extracted from the metadata as the depth of the water inlet. When such information is not available, its sampling depth is set to be 5 m.; Researcher name: (multiple); Researcher institution: (multiple).
processStep: (LE_ProcessStep)
description: Parameter or Variable: Depth of each sampling level; Abbreviation: Depth; Unit: meters; Observation type: Calculated from CTDPRES; Detailed sampling and analyzing information: Sampling depth (Depth) and pressure (CTDPRES) were calculated from one another where applicable using the equations of “gsw_z_from_p”, and “gsw_p_from_z”, respectively, from the International Thermodynamic Equation of Seawater 2010 (TEOS-10; IOC et al., 2010). When both values were available, CTDPRES values were preferentially used, and the calculated Depth values were used to replace the original Depth values. For data collected from the ship’s flow-through system, their pressure or depth values is extracted from the metadata as the depth of the water inlet. When such information is not available, its sampling depth is set to be 5 m.; Researcher name: (multiple); Researcher institution: (multiple) .
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metadataMaintenance: (MD_MaintenanceInformation)
maintenanceAndUpdateFrequency: (MD_MaintenanceFrequencyCode) asNeeded
maintenanceNote: Metadata are developed, maintained and distributed by NCEI. Updates are performed as needed to maintain currentness.
maintenanceNote: NCEI Accession 0219960 was revised and a new version of the archival package was published. Updates to existing archival packages may provide additional files or replace obsolete files. The latest version contains the most complete and up-to-date representation of this archival information package. All of the files received prior to this update are available in the preceding version of this accession. Please see journal.txt in the /about directory for additional details on changes made.
contact: (CI_ResponsibleParty)
organisationName: NOAA National Centers for Environmental Information
role: (CI_RoleCode) custodian
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acquisitionInformation: (MI_AcquisitionInformation)
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: carbon dioxide (CO2) gas analyzer
type: carbon dioxide (CO2) gas analyzer
description: measures gaseous carbon dioxide Carbon dioxide gas analyzer has often been referred to as LI-COR, because a lot of researchers choose to use products manufactured by LI-COR incorporation for their carbon dioxide measurement. The main component of a carbon dioxide analyzer is a nondispersive infrared (NDIR) spectroscopic sensors to detect CO2 in a gaseous environment by its characteristic absorption. Carbon dioxide (CO2) gas analyzer works together with carbon dioxide (CO2) equilibrator (insttypes_id 184) to measure carbon dioxide in the water. To measure water carbon dioxide, water needs to be continuously supplied to a showerhead inside an equilibrator. As the water flows through the equilibrator chamber, dissolved carbon dioxide exchanges quickly with air in the headspace. This air is then sampled by the carbon dioxide analyzer to determine the mole fraction of CO2 in water.
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: CTD
type: CTD
description: Conductivity-Temperature-Depth probe
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: Niskin bottle
type: Niskin bottle
description: Device for obtaining samples of seawater at a specific depth Why special entry for Niskin bottle but no entry for Nansen bottle?
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: nutrient autoanalyzer
type: nutrient autoanalyzer
description: Laboratory Instrument Nutrient Autoanalyzer is a generic term describing an automated flow-thru system used to conduct analyses of several different nutrients (nitrate, ammonium, orthophosphate, and silicate) simultaneously from a seawater sample. For example: SEAL AutoAnalyzer 3 HR Continuous Segmented Flow Analyzer
instrument: (MI_Instrument)
identifier: (MD_Identifier)
code: oxygen sensor
type: oxygen sensor
description: Any instrument that measures oxygen content in a compound.
platform: (MI_Platform)
identifier: (MD_Identifier)
code: VARIOUS CHARTERED VESSELS
description: VARIOUS CHARTERED VESSELS
instrument: (missing)