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ADCP and sediment trap contents data collected at three sites in the Gulf of Mexico from 2010-08-25 to 2016-09-12 (NCEI Accession 0256417)


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            title:  ADCP and sediment trap contents data collected at three sites in the Gulf of Mexico from 2010-08-25 to 2016-09-12 (NCEI Accession 0256417)
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        abstract:  ADCP and raw sediment trap data from long-term moorings at three sites in the northern Gulf of Mexico. The sites were chosen to represent three environmental regimes: DWH site (R/V Oceanus Site 26, or OC26; 28°40’N, 88°21.6’W, 1660 m deep)is about 5 km from the Deepwater Horizon spill site; a 'seep' site in the Green Canyon 600 lease block ((27°22.5’N, 90°30.6’W, 1380 m deep); and a 'reference' site in the Atwater Valley 357 lease block (27°22.5’N, 90°30.6’W, 1380 m deep). These data span 2010-08-25 - 2016-09-12 and include ADCP velocity measurements; estimates of particulate carbon and nitrogen, biogenic silica, and transparent exopolymer particles, as well as chemistry of the overlying water; and C-14, C-13, and S-34 isotopes measurements. The sediment traps were located 120 m above the bottom, with an additional trap located at 30 m above the bottom on some of the DWH site deployments.
        purpose:  These data were collected as part of a long-term monitoring program to baseline for particle flux estimates in the northern Gulf of Mexico. Three sites were chosen to represent areas affected by the Deepwater Horizon oil spill, natural seep areas, and background reference conditions.
        credit:  Funding Agency: Gulf of Mexico Research Initiative (GoMRI)
        credit:  Funding Agency: Gulf of Mexico Research Initiative Information & Data Cooperative
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                title:  Uta Passow. (2017). Sediment Trap (raw data) - Mississippi Canyon, Gulf of Mexico, 1540m, September 18, 2015 - September 12, 2016 [Data set]. Harte Research Institute. https://doi.org/10.7266/n71c1v8t
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                title:  Uta Passow, Julia Sweet. (2017). Sediment Trap (raw data) - Mississippi Canyon, Gulf of Mexico, 1630m, September 12, 2012 - September 12, 2013 [Data set]. Harte Research Institute. https://doi.org/10.7266/n7w66j7k
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                title:  Jeff Chanton, Uta Passow. (2017). Isotopic composition of particulates from sediment trap, northern Gulf of Mexico, August 25, 2010 - March 18, 2016 [Data set]. Harte Research Institute. https://doi.org/10.7266/n737775j
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                title:  Sweet, Julia. (2020). Raw data of a moored sediment trap deployed aboard R/V Endeavor cruise in the northern Gulf of Mexico from 2012-06-28 to 2012-09-08 [Data set]. Harte Research Institute. https://doi.org/10.7266/n7-g0my-wr56
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                  Anchor:  https://ror.org/04r0wrp59 NOAA National Centers for Environmental Information
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                description:  NCEI Accession 0256417 v1.1 was published.
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                  DateTime:  2022-09-02T01:04:37Z
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                description:  Parameter or Variable: CURRENT METER - NORTH-SOUTH COMPONENT (V) (measured); Units: mm/s; Observation Category: in situ; Sampling Instrument: ADCP
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: CURRENT METER - EAST-WEST COMPONENT (U) (measured); Units: mm/s; Observation Category: in situ; Sampling Instrument: ADCP
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: sediment height (measured); Units: mm; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment; Sampling and Analyzing Method: Detailed methods for trap deployment, sample processing and analytical methods are described by Giering et al. (2017). Supernatant water was analyzed as followed: Concentrations of NO3+NO2, PO4 and Si(OH)4 in the water overlaying the solid material were measured by simultaneous flow injection analysis (QuickCem 8000, Lachat Instruments). To calculate fluxes of a specific component x, use the formula: Flux=average(x/Split_fraction)/Deployment_time/Trap_Area Sediment trap: Kiel Trap, K.U.M. Umwelt- und Meerestechnik Kiel GmbH Splitter: WSD-10, McLane Flow injection analyzer: QuickCem 8000, Lachat Instrument Spectrophotometer: Genesys 10SVIS, Thermo Scientific Peltier: SPG1A,
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                description:  Parameter or Variable: pH (measured); Units: unitless; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment; Sampling and Analyzing Method: The pH (total scale) was measured with a spectrophotometer (Genesys 10SVIS) equipped with a single cell Peltier (SPG1A, both Thermo Scientific) using the indicator dye m-cresol purple (Sigma-Aldrich) at a constant temperature of 25ºC. The absorbance was measured at 730 nm, 578 nm, and 434 nm before and after dye addition (Clayton, 1993; Fangue, 2010)
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                description:  Parameter or Variable: PHOSPHATE - TOTAL (measured); Units: micromole/kilogram; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment; Sampling and Analyzing Method: simultaneous flow injection analysis (QuickCem 8000, Lachat Instruments
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: silicate (measured); Units: micromole/kilogram; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment
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                description:  Parameter or Variable: nitrate + nitrite content (concentration) (measured); Units: micromole/kilogram; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment; Sampling and Analyzing Method: Thermo Scientific CHN elemental analyzer: CEC44OHA, Exeter Analytical
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: PARTICULATE CARBON (measured); Units: micrograms/split; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment; Sampling and Analyzing Method: Thermo Scientific CHN elemental analyzer: CEC44OHA, Exeter Analytical
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: NITROGEN - PARTICULATE (measured); Units: micrograms/split; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment; Sampling and Analyzing Method: Thermo Scientific CHN elemental analyzer: CEC44OHA, Exeter Analytical
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: PARTICULATE ORGANIC CARBON (measured); Units: micrograms/split; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: Biogenic silica (measured); Units: micromoles/split; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: Transparent Exomer Particles (measured); Units: mg Gum Xanthan equivalent/split; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: PARTICULATE ORGANIC NITROGEN (PON) (measured); Units: micrograms/split; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: SEDIMENTS - DRY WEIGHT (measured); Units: gram; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: DELTA CARBON-14 (measured); Units: per mille; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment; Sampling and Analyzing Method: Samples for ∆14C-POC analysis were combusted and purified CO2 prepared as graphite targets and analyzed by accelerator mass spectrometry.; Data Quality Method: Analytical reproducibility was on the order of 3 ‰
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: DELTA CARBON-13 (measured); Units: per mille; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment; Sampling and Analyzing Method: Carlo Erba elemental analyzer coupled to a Delta XP Thermo Finnegan isotope ratio mass spectrometer. Results reported relative to VPDB.; Data Quality Method: Analytical reproducibility was on the order of 0.2 ‰
            processStep:  (LE_ProcessStep)
                description:  Parameter or Variable: DELTA SULFUR-34 (measured); Units: per mille; Observation Category: laboratory analysis; Sampling Instrument: trap - sediment; Sampling and Analyzing Method: Results are presented relative to CDT.; Data Quality Method: Analytical error measured as the coefficient of variation of replicate samples was 0.4‰ for δ34S
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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.
        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:  ADCP
            type:  ADCP
            description:  Acoustic Doppler Current Profiler The Acoustic Doppler Current Profiler (ADCP) measures currents beneath a ship while underway. Sound signals sent from the moving ship bounce back to receivers aboard the ship. This provides a profile of water movement relative to the ship-precise modern navigation, allowing the ship's motion to be subtracted from the data. These devices are also used on moorings and profilers and, along with acoustic backscattering, measure animal biomass. Particles in the path of the sound waves, mostly plankton, reflect a small part of the sound energy back toward receivers, allowing researchers to make remote estimates of the sizes and numbers of animals present in the water column. Before the 1970's, the most technologically advanced instrument used to measure water velocity was known as a Doppler speed log. This evolved into the first commercial ADCP, produced in the mid-1970's, which used averaging. Later in the 1970's, the first vessel-mounted ADCP was developed to measure water velocity more accurately and to allow measurement in range cells over a depth profile. As instruments evolved, so did new techniques in Doppler signal processing. Initially, Doppler speed logs used simple analog signal processing methods, which are still used in some commercial speed logs today. However, the first ADCPs incorporated analog-to-digital signal conversion over a narrow communication bandwidth. Around 1990, this technique was developed into broadband signal processing. Since then, broadband ADCPs have been able to generate very accurate, real-time velocity measurements.
        instrument:  (MI_Instrument)
            identifier:  (MD_Identifier)
                code:  trap - sediment
            type:  trap - sediment
            description:  one of several specific type of instrument used to capture sediment
        platform:  (MI_Platform)
            identifier:  (MD_Identifier)
                code:  OCEANUS
            description:  Flag: United States of America Vessel Type: Research Vessel DOB: 1975 IMO: 7603617 MMSI: 367977000
            instrument: (missing)