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 |
attribute | NC_GLOBAL | acquisition_description | String | We determined that the most reliable way to prepare dissolved 15N2 gas\nstandards involves equilibration of the liquid phase with a headspace, rather\nthan injection of a 15N2 gas aliquot into a sealed bottle without a headspace.\nStandards were prepared in a room with a relatively constant ambient\ntemperature. Serial aliquots of 15N2 gas were each injected into the headspace\nof crimp-sealed 120 mL serum bottles containing 80 mL of air-equilibrated\nseawater (at room temperature) and a stir bar with an unpressurized air\nheadspace. The vials were equilibrated for 72 hours on a stir plate (at low\nrpm) prior to analysis on the MIMS or IRMS.\\u00a0 |
attribute | NC_GLOBAL | awards_0_award_nid | String | 772538 |
attribute | NC_GLOBAL | awards_0_award_number | String | OCE-1732246 |
attribute | NC_GLOBAL | awards_0_data_url | String | http://www.nsf.gov/awardsearch/showAward.do?AwardNumber=1732246 |
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 | Henrietta N Edmonds |
attribute | NC_GLOBAL | awards_0_program_manager_nid | String | 51517 |
attribute | NC_GLOBAL | cdm_data_type | String | Other |
attribute | NC_GLOBAL | comment | String | Preparation of dissolved 15N2 standards for MIMS and/or IRMS \n PI: Julie Granger \n Version: 2019-09-30 |
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 | 2019-09-30T13:37:38Z |
attribute | NC_GLOBAL | date_modified | String | 2019-10-02T18:47:29Z |
attribute | NC_GLOBAL | defaultDataQuery | String | &time<now |
attribute | NC_GLOBAL | doi | String | 10.1575/1912/bco-dmo.778021.1 |
attribute | NC_GLOBAL | infoUrl | String | https://www.bco-dmo.org/dataset/778021 |
attribute | NC_GLOBAL | institution | String | BCO-DMO |
attribute | NC_GLOBAL | instruments_0_acronym | String | IR Mass Spec |
attribute | NC_GLOBAL | instruments_0_dataset_instrument_description | String | continuous flow Delta V Isotope Ratio Mass Spectrometer (Smith et al. 2015), and continuous flow-GV Isoprime IRMS (Charoenpong et al., 2014) |
attribute | NC_GLOBAL | instruments_0_dataset_instrument_nid | String | 778029 |
attribute | NC_GLOBAL | instruments_0_description | String | The Isotope-ratio Mass Spectrometer is a particular type of mass spectrometer used to measure the relative abundance of isotopes in a given sample (e.g. VG Prism II Isotope Ratio Mass-Spectrometer). |
attribute | NC_GLOBAL | instruments_0_instrument_external_identifier | String | https://vocab.nerc.ac.uk/collection/L05/current/LAB16/ |
attribute | NC_GLOBAL | instruments_0_instrument_name | String | Isotope-ratio Mass Spectrometer |
attribute | NC_GLOBAL | instruments_0_instrument_nid | String | 469 |
attribute | NC_GLOBAL | instruments_0_supplied_name | String | Isotope Ratio Mass Spectrometer |
attribute | NC_GLOBAL | instruments_1_acronym | String | MIMS |
attribute | NC_GLOBAL | instruments_1_dataset_instrument_description | String | Membrane Inlet Mass Spectrometer (Bay Instruments) |
attribute | NC_GLOBAL | instruments_1_dataset_instrument_nid | String | 778028 |
attribute | NC_GLOBAL | instruments_1_description | String | Membrane-introduction mass spectrometry (MIMS) is a method of introducing analytes into the mass spectrometer's vacuum chamber via a semipermeable membrane. |
attribute | NC_GLOBAL | instruments_1_instrument_name | String | Membrane Inlet Mass Spectrometer |
attribute | NC_GLOBAL | instruments_1_instrument_nid | String | 661606 |
attribute | NC_GLOBAL | instruments_1_supplied_name | String | Membrane Inlet Mass Spectrometer |
attribute | NC_GLOBAL | keywords | String | analysis, At_15N_pcnt, At_15N_pcnt_avg, average, bco, bco-dmo, biological, bottle, Bottle_vol, chemical, data, dataset, dmo, erddap, expected, Expected_15N_At_pcnt, injection, Injection_15N2, m_z_28, m_z_29, m_z_30, m_z_32, m_z_40, management, N2_Ar, oceanography, office, pcnt, preliminary, ratio, ratio_28_29, ratio_28_30, sample, time, Time_of_analysis, vol |
attribute | NC_GLOBAL | license | String | https://www.bco-dmo.org/dataset/778021/license |
attribute | NC_GLOBAL | metadata_source | String | https://www.bco-dmo.org/api/dataset/778021 |
attribute | NC_GLOBAL | param_mapping | String | {'778021': {}} |
attribute | NC_GLOBAL | parameter_source | String | https://www.bco-dmo.org/mapserver/dataset/778021/parameters |
attribute | NC_GLOBAL | people_0_affiliation | String | University of Connecticut |
attribute | NC_GLOBAL | people_0_affiliation_acronym | String | UConn |
attribute | NC_GLOBAL | people_0_person_name | String | Julie Granger |
attribute | NC_GLOBAL | people_0_person_nid | String | 528937 |
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 | University of Massachusetts Dartmouth |
attribute | NC_GLOBAL | people_1_affiliation_acronym | String | UMass Dartmouth |
attribute | NC_GLOBAL | people_1_person_name | String | Annie Bourbonnais |
attribute | NC_GLOBAL | people_1_person_nid | String | 778011 |
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 | University of Hawaii |
attribute | NC_GLOBAL | people_2_person_name | String | Samuel Wilson |
attribute | NC_GLOBAL | people_2_person_nid | String | 51733 |
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 | Mathew Biddle |
attribute | NC_GLOBAL | people_3_person_nid | String | 708682 |
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 | EAGER NitFix |
attribute | NC_GLOBAL | projects_0_acronym | String | EAGER NitFix |
attribute | NC_GLOBAL | projects_0_description | String | NSF Award Abstract:\nThe availability of nitrogen is required to support the growth and production of organisms living in the surface of our global ocean. This element can be scarce. To alleviate this scarcity, a special class of bacteria and archaea, called nitrogen fixers, can derive the nitrogen needed for growth from nitrogen gas. This project would carefully examine one specific method for measuring nitrogen fixation that has been used recently to suggest the occurrence of small amounts of nitrogen fixation in subsurface ocean waters. If these reports are verified, then a revision of our understanding of the marine nitrogen cycle may be needed. The Ocean Carbon and Biogeochemistry program will be used as a platform to develop community consensus for best practices in nitrogen fixation measurements and detection of diversity, activity, and abundances of the organisms responsible. In addition, a session will be organized in a future national/international conference to communicate with the broader scientific community while developing these best practices.\nThe goal of this study is to conduct a thorough examination of potential experimental and analytical errors inherent to the 15N2-tracer nitrogen fixation method, in tandem with comprehensive molecular measurements, in mesopelagic ocean waters. Samples will be collected and experimental work conducted on a cruise transect in the North Atlantic Ocean, followed by analytical work in the laboratory. The specific aims of this study are to (1) determine the minimum quantifiable rates of 15N2 fixation based on incubations of mesopelagic waters via characterization of sources of experimental and analytical error, and (2) seek evidence of presence and expression of nitrogen fixation genes via comprehensive molecular approaches on corresponding samples. The range of detectable rates and diazotroph activity from the measurements made in this study will be informative for the understanding of the importance of nitrogen fixation in the oceanic nitrogen budget. |
attribute | NC_GLOBAL | projects_0_end_date | String | 2018-10 |
attribute | NC_GLOBAL | projects_0_geolocation | String | North Atlantic Ocean, Pacific Ocean |
attribute | NC_GLOBAL | projects_0_name | String | EAGER: Collaborative Research: Detection limit in marine nitrogen fixation measurements - Constraints of rates from the mesopelagic ocean |
attribute | NC_GLOBAL | projects_0_project_nid | String | 772534 |
attribute | NC_GLOBAL | projects_0_start_date | String | 2017-05 |
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 | standard_name_vocabulary | String | CF Standard Name Table v55 |
attribute | NC_GLOBAL | summary | String | In order to verify that measurements of the 15N2 atom% of dissolved N2 gas samples effectuated by Membrane Inlet Mass Spectrometry are accurate, we developed a specific protocol to prepare dissolved 15N2 gas standards. We detail the protocol herein, and report representative MIMS measurements of the prepared standards. |
attribute | NC_GLOBAL | title | String | [dis_15N2_gas] - Analysis of dissolved 15N2 gas standards by Membrane Inlet Mass Spectrometry (EAGER: Collaborative Research: Detection limit in marine nitrogen fixation measurements - Constraints of rates from the mesopelagic ocean) |
attribute | NC_GLOBAL | version | String | 1 |
attribute | NC_GLOBAL | xml_source | String | osprey2erddap.update_xml() v1.3 |
variable | Bottle_vol | float | ||
attribute | Bottle_vol | _FillValue | float | NaN |
attribute | Bottle_vol | actual_range | float | 80.0, 84.66 |
attribute | Bottle_vol | bcodmo_name | String | unknown |
attribute | Bottle_vol | description | String | volume of the bottle |
attribute | Bottle_vol | long_name | String | Bottle Vol |
attribute | Bottle_vol | units | String | mililiters (mL) |
variable | Sample | String | ||
attribute | Sample | bcodmo_name | String | unknown |
attribute | Sample | description | String | type of sample |
attribute | Sample | long_name | String | Sample |
attribute | Sample | units | String | unitless |
variable | Injection_15N2 | String | ||
attribute | Injection_15N2 | bcodmo_name | String | unknown |
attribute | Injection_15N2 | description | String | amount of Injection of 15N2 |
attribute | Injection_15N2 | long_name | String | Injection 15 N2 |
attribute | Injection_15N2 | units | String | mililiters (mL) |
variable | Expected_15N_At_pcnt | float | ||
attribute | Expected_15N_At_pcnt | _FillValue | float | NaN |
attribute | Expected_15N_At_pcnt | actual_range | float | 0.131769, 12.5 |
attribute | Expected_15N_At_pcnt | bcodmo_name | String | unknown |
attribute | Expected_15N_At_pcnt | description | String | expected 15N At % |
attribute | Expected_15N_At_pcnt | long_name | String | Expected 15 N At Pcnt |
attribute | Expected_15N_At_pcnt | units | String | unitless |
variable | Time_of_analysis | String | ||
attribute | Time_of_analysis | bcodmo_name | String | time |
attribute | Time_of_analysis | description | String | time of analysis in 24 hour format |
attribute | Time_of_analysis | long_name | String | Time Of Analysis |
attribute | Time_of_analysis | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/AHMSAA01/ |
attribute | Time_of_analysis | units | String | unitless |
variable | m_z_28 | float | ||
attribute | m_z_28 | _FillValue | float | NaN |
attribute | m_z_28 | actual_range | float | 9.475235E-9, 0.37 |
attribute | m_z_28 | bcodmo_name | String | unknown |
attribute | m_z_28 | description | String | mass-to-charge |
attribute | m_z_28 | long_name | String | M Z 28 |
attribute | m_z_28 | units | String | unitless |
variable | m_z_29 | float | ||
attribute | m_z_29 | _FillValue | float | NaN |
attribute | m_z_29 | actual_range | float | 6.98E-11, 0.43 |
attribute | m_z_29 | bcodmo_name | String | unknown |
attribute | m_z_29 | description | String | mass-to-charge |
attribute | m_z_29 | long_name | String | M Z 29 |
attribute | m_z_29 | units | String | unitless |
variable | m_z_30 | float | ||
attribute | m_z_30 | _FillValue | float | NaN |
attribute | m_z_30 | actual_range | float | 8.277643E-13, 0.47 |
attribute | m_z_30 | bcodmo_name | String | unknown |
attribute | m_z_30 | description | String | mass-to-charge |
attribute | m_z_30 | long_name | String | M Z 30 |
attribute | m_z_30 | units | String | unitless |
variable | m_z_32 | float | ||
attribute | m_z_32 | _FillValue | float | NaN |
attribute | m_z_32 | actual_range | float | 4.538616E-12, 0.38 |
attribute | m_z_32 | bcodmo_name | String | unknown |
attribute | m_z_32 | description | String | mass-to-charge |
attribute | m_z_32 | long_name | String | M Z 32 |
attribute | m_z_32 | units | String | unitless |
variable | m_z_40 | float | ||
attribute | m_z_40 | _FillValue | float | NaN |
attribute | m_z_40 | actual_range | float | 2.412238E-10, 0.32 |
attribute | m_z_40 | bcodmo_name | String | unknown |
attribute | m_z_40 | description | String | mass-to-charge |
attribute | m_z_40 | long_name | String | M Z 40 |
attribute | m_z_40 | units | String | unitless |
variable | N2_Ar | float | ||
attribute | N2_Ar | _FillValue | float | NaN |
attribute | N2_Ar | actual_range | float | 0.05, 39.36209 |
attribute | N2_Ar | bcodmo_name | String | unknown |
attribute | N2_Ar | description | String | N2/Ar ratio |
attribute | N2_Ar | long_name | String | N2 Ar |
attribute | N2_Ar | units | String | unitless |
variable | ratio_28_29 | float | ||
attribute | ratio_28_29 | _FillValue | float | NaN |
attribute | ratio_28_29 | actual_range | float | 129.589, 136.4494 |
attribute | ratio_28_29 | bcodmo_name | String | unknown |
attribute | ratio_28_29 | description | String | 28/29 ratio |
attribute | ratio_28_29 | long_name | String | Ratio 28 29 |
attribute | ratio_28_29 | units | String | unitless |
variable | ratio_28_30 | float | ||
attribute | ratio_28_30 | _FillValue | float | NaN |
attribute | ratio_28_30 | actual_range | float | 7.264303, 11540.25 |
attribute | ratio_28_30 | bcodmo_name | String | unknown |
attribute | ratio_28_30 | description | String | 28/30 ratio |
attribute | ratio_28_30 | long_name | String | Ratio 28 30 |
attribute | ratio_28_30 | units | String | unitless |
variable | At_15N_pcnt | double | ||
attribute | At_15N_pcnt | _FillValue | double | NaN |
attribute | At_15N_pcnt | actual_range | double | 0.372353, 12.355571234720752 |
attribute | At_15N_pcnt | bcodmo_name | String | unknown |
attribute | At_15N_pcnt | description | String | 15N At% |
attribute | At_15N_pcnt | long_name | String | At 15 N Pcnt |
attribute | At_15N_pcnt | units | String | unitless |
variable | At_15N_pcnt_avg | double | ||
attribute | At_15N_pcnt_avg | _FillValue | double | NaN |
attribute | At_15N_pcnt_avg | actual_range | double | 0.3724829634765998, 12.353433924138663 |
attribute | At_15N_pcnt_avg | bcodmo_name | String | unknown |
attribute | At_15N_pcnt_avg | description | String | 15N At% average |
attribute | At_15N_pcnt_avg | long_name | String | At 15 N Pcnt Avg |
attribute | At_15N_pcnt_avg | units | String | unitless |