Contributors | Affiliation | Role |
---|---|---|
Moffett, James W. | University of Southern California (USC-HIMS) | Lead Principal Investigator, Contact |
Cutter, Gregory A. | Old Dominion University (ODU) | Co-Principal Investigator |
German, Christopher R. | Woods Hole Oceanographic Institution (WHOI) | Co-Principal Investigator |
Gegg, Stephen R. | Woods Hole Oceanographic Institution (WHOI BCO-DMO) | BCO-DMO Data Manager |
CTD bottle data from GT-C (GEOTRACES Carousel) for EPZT Transect.
GT-C CTD BOTTLE 20141030ODU
Note: 'FLAG_W' columns = WHP (WOCE Hydrographic Program) quality flags. See more information on WOCE flags at: https://www.nodc.noaa.gov/woce/woce_v3/wocedata_1/whp/exchange/exchange_format_desc.htm
Note: Most TEI columns have no data as they've been reported in separate datasets.
From the TN303 cruise report:
Two types of rosette/SBE9plus CTD casts (ODF/30L-Niskin and GT-C/12L-GoFlo) were made at 36 station locations during U.S. GEOTRACES EPZT.
Shipboard CTD data processing was performed automatically at the end of each deployment using SIO/STS CTD processing software v.5.1.6-1. Raw GT-C CTD data and bottle trip files, acquired by SBE Seasave V 7.17a on a Windows XP workstation, were also imported into the Linux processing system, providing a backup of the raw data.
At the end of the cruise, all GT-C CTD data were updated in the database using the post-cast Seasave-processed ".btl" file 5-second averaged CTD data, in order to include processed CTD Oxygen values. The 5-second average used resulted in slightly better agreement between CTD and GoFlo salinity values than the shorter 3-second average used for the Niskin rosette.
Processing notes from README provided by ODF:
The CTD depths in the shipboard version (20 Dec 2013) of the data - bottle data in particular - were originally calculated incorrectly due to two software errors. A small error in the gravity calculation affected both bottle and CTD data. In addition, the bottle file CTDDEPTH calculation was inadvertently using a combination of latitude and longitude, vs just latitude, as input to the gravity component of the depth equation, causing up to a 20m error in some of the casts.
Two different depth calculations were subsequently added into these data files: the original, integrated Saunders-Mantyla integrated depth calculations (SMDEPTH), with the gravity error corrected; and the non-integrated Fofonoff-Millard depth calculations (FMDEPTH), same as those used by SBE. The Fofonoff-Millard depths are used for the primary CTDDEPTH column in both bottle data files.
ODF reports that the CTDDEPTH column agreed best with depths identified from CTD bottle trips recorded during GEOTRACES CTD acquisition. The depth values in CTDDEPTH column are from the Saunders & Fofonoff 1976 calculation of depth from pressure. This is the same default calculation of depth used by SeaBird (SBE) software. GEOTRACES CTD data acquisition uses SBE software. It follows that it would be preferable and consistent for GEOTRACES and ODF to use the values in the CTDDEPTH column.
Processing notes from README_1410.txt:
Separate columns of S-M and F-M depths ("SMDEPTH" and "FMDEPTH") are included in bottle and CTD files. In addition, "ODF_CTDPRS" is an added column in the bottle files. This may differ from the main CTDPRS in the bottle file only for EPZT GT-C casts, where Seasave-processed CTD trip data were used.
Note: 'FLAG_W' columns = WHP (WOCE Hydrographic Program) quality flags. ODF used the WHP quality coding schema, but also included two non-standard quality codes in the GT-C bottle file:
- QUALITY CODE 'A' WAS USED FOR DATA VALUES SUBMITTED AS 'ABOVE DETECTION LIMITS'
- QUALITY CODE 'B' WAS USED FOR DATA VALUES SUBMITTED AS 'BELOW DETECTION LIMITS'
This was at the request of two different PIs.
File |
---|
GT-C_Bottle_v30Oct2014.csv (Comma Separated Values (.csv), 2.78 MB) MD5:ae484ba7f1e0e46a194b1c4388bc5d05 Primary data file for dataset ID 503133 |
Parameter | Description | Units |
EXPOCODE | expedition code assigned by the CCHDO: NODCShipCodeYearMonthDay | text |
SECT_ID | cruise section identification number | text |
STNNBR | station number | dimensionless |
CASTNO | cast number | dimensionless |
GEOTRC_EVENTNO | GEOTRACES Event Number | dimensionless |
DATE | Station Date (GMT) in the format YYYYMMDD. | unitless |
TIME | Station Time (GMT) in the format HHMM | unitless |
LATITUDE | Station Latitude (South is negative) | decimal degrees |
LONGITUDE | Station Longitude (West is negative) | decimal degrees |
GEOTRC_SAMPNO | GEOTRACES Sample Number | dimensionless |
SAMPNO | sequential sample number within a cast | dimensionless |
BTLNBR | Bottle Number | text |
BTLNBR_FLAG_W | Bottle Quality Flag | dimensionless |
BTL_DATE | Bottle Date (GMT) in the format YYYYMMDD | unitless |
BTL_TIME | Bottle Time (GMT) in the format HHMM | unitless |
BTL_LAT | Bottle Latitude (South is negative) | decimal degrees |
BTL_LON | Bottle Longitude (West is negative) | decimal degrees |
ODF_CTDPRS | ODF_CTDPRS is referred to as the ODF software acquisition measurement of pressure. | DBARS |
S_M_DEPTH | S_M_DEPTH IS SAUNDERS-MANTYLA DEPTH (INTEGRATED; USES DYNAMIC HEIGHT) | METERS |
F_M_DEPTH | F_M_DEPTH IS FOFONOFF-MILLARD DEPTH (NON-INTEGRATED; ALSO USED BY SBE) | METERS |
BTMDEPTH | Bottom Depth | CORR_M |
CTDPRS | CTD pressure | DBARS |
CTDDEPTH | CTDDEPTH REPORTED HERE IS NON-INTEGRATED FOFONOFF-MILLARD DEPTH. This is the primary/preferred depth measurement. | METERS |
CTDTMP | CTD temperature; ITS-90 | degrees celsius |
CTDSAL | CTDSAL is the calculated corrected value of salinity derived from the conductivity sensors on the CTD unit at the time of the bottle trip. CTDSAL is compared with SALNTY which is the PSS-78 value measured from the actual samples drawn from the niskin bottles themselves. Reporting both is meant, among other things, as a of show the goodness of fit, source of quality coding and offer alternative for measurements/calculations if one of those values is missing or lacking a good quality code. | PSS-78 |
CTDSAL_FLAG_W | CTD salinity quality flag | dimensionless |
SALNTY | salinity | PSS-78 |
SALNTY_FLAG_W | salinity quality flag | dimensionless |
SALTREF | SELFTREF is salinity reference in TEOS-10 (http://www.teos-10.org/) and defined as absolute salinity units (G/KG) published in 2010. That compared with the classic salinity measurement in practical salinity units (PSS-78). | G/KG |
SALTREF_FLAG_W | SALTREF quality flag | dimensionless |
CTDOXY | CTD oxygen | UMOL/KG |
CTDOXY_FLAG_W | CTD oxygen quality flag | dimensionless |
OXYGEN | oxygen | UMOL/KG |
OXYGEN_FLAG_W | oxygen quality flag | dimensionless |
SILCAT | SILCAT | UMOL/KG |
SILCAT_FLAG_W | SILCAT quality flag | dimensionless |
NITRAT | NITRAT | UMOL/KG |
NITRAT_FLAG_W | NITRAT quality flag | dimensionless |
NITRIT | NITRIT | UMOL/KG |
NITRIT_FLAG_W | NITRIT quality flag | dimensionless |
PHSPHT | PHSPHT | UMOL/KG |
PHSPHT_FLAG_W | PHSPHT quality flag | dimensionless |
NITRAT_NM | NITRAT NM | NMOL/L |
NITRAT_NM_FLAG_W | NITRAT NM quality flag | dimensionless |
NITRIT_NM | NITRIT NM | NMOL/L |
NITRIT_NM_FLAG_W | NITRIT NM quality flag | dimensionless |
PHSPHT_NM | PHSPHT NM | NMOL/L |
PHSPHT_NM_FLAG_W | PHSPHT NM quality flag | dimensionless |
ARSENITE | ARSENITE | NMOL/L |
ARSENITE_FLAG_W | ARSENITE quality flag | dimensionless |
ARSENATE | ARSENATE | NMOL/L |
ARSENATE_FLAG_W | ARSENATE quality flag | dimensionless |
SB_III | SB III | NMOL/L |
SB_III_FLAG_W | SB III quality flag | dimensionless |
SE_TOT_DISS | SE TOT DISS | NMOL/KG |
SE_TOT_DISS_FLAG_W | SE TOT DISS quality flag | dimensionless |
SELENITE | SELENITE | NMOL/KG |
SELENITE_FLAG_W | SELENITE quality flag | dimensionless |
SELENATE | SELENATE | NMOL/KG |
SELENATE_FLAG_W | SELENATE quality flag | dimensionless |
SELENIDE_ORG | SELENIDE ORG | NMOL/KG |
SELENIDE_ORG_FLAG_W | SELENIDE ORG quality flag | dimensionless |
S_TOT_DISS | S TOT DISS | NMOL/L |
S_TOT_DISS_FLAG_W | S TOT DISS quality flag | dimensionless |
IODATE | IODATE | NMOL/L |
IODATE_FLAG_W | IODATE quality flag | dimensionless |
IODIDE | IODIDE | NMOL/L |
IODIDE_FLAG_W | IODIDE quality flag | dimensionless |
AL_DISS_NOAA | AL DISS NOAA | NMOL/L |
AL_DISS_NOAA_FLAG_W | AL DISS NOAA quality flag | dimensionless |
MN_DISS_NOAA | MN DISS NOAA | NMOL/L |
MN_DISS_NOAA_FLAG_W | MN DISS NOAA quality flag | dimensionless |
AL_TOT_DISS_NOAA | AL TOT DISS NOAA | NMOL/L |
AL_TOT_DISS_NOAA_FLAG_W | AL TOT DISS NOAA quality flag | dimensionless |
FE_TOT_DISS_NOAA | FE TOT DISS NOAA | NMOL/L |
FE_TOT_DISS_NOAA_FLAG_W | FE TOT DISS NOAA quality flag | dimensionless |
MN_TOT_DISS_NOAA | MN TOT DISS NOAA | NMOL/L |
MN_TOT_DISS_NOAA_FLAG_W | MN TOT DISS NOAA quality flag | dimensionless |
HG_TOTAL | HG TOTAL | PMOL/L |
HG_TOTAL_FLAG_W | HG TOTAL quality flag | dimensionless |
HG_ELEMENTAL | HG ELEMENTAL | PMOL/L |
HG_ELEMENTAL_FLAG_W | HG ELEMENTAL quality flag | dimensionless |
HG_MM | HG MM | PMOL/L |
HG_MM_FLAG_W | HG MM quality flag | dimensionless |
HG_DM | HG DM | PMOL/L |
HG_DM_FLAG_W | HG DM quality flag | dimensionless |
CO_TOT_DISS | CO TOT DISS | PMOL/L |
CO_TOT_DISS_FLAG_W | CO TOT DISS quality flag | dimensionless |
CO_LABILE | CO LABILE | PMOL/L |
CO_LABILE_FLAG_W | CO LABILE quality flag | dimensionless |
FE_DISS | FE DISS | NMOL/L |
FE_DISS_FLAG_W | FE DISS quality flag | dimensionless |
FE_II_DISS_SYRINGE | FE II DISS SYRINGE | NMOL/L |
FE_II_DISS_SYRINGE_FLAG_W | FE II DISS SYRINGE quality flag | dimensionless |
FE_II_DISS_ACROPAK | FE II DISS ACROPAK | NMOL/L |
FE_II_DISS_ACROPAK_FLAG_W | FE II DISS ACROPAK quality flag | dimensionless |
FE_II_DISS_MOPS | FE II DISS MOPS | NMOL/L |
FE_II_DISS_MOPS_FLAG_W | FE II DISS MOPS quality flag | dimensionless |
FE_TOT_DISS_USC | FE TOT DISS USC | NMOL/L |
FE_TOT_DISS_USC_FLAG_W | FE TOT DISS USC quality flag | dimensionless |
ZN_TOT_DISS_USC | ZN TOT DISS USC | NMOL/L |
ZN_TOT_DISS_USC_FLAG_W | ZN TOT DISS USC quality flag | dimensionless |
CU_TOT_DISS_USC | CU TOT DISS USC | NMOL/L |
CU_TOT_DISS_USC_FLAG_W | CU TOT DISS USC quality flag | dimensionless |
MN_TOT_DISS_USC | MN TOT DISS USC | NMOL/L |
MN_TOT_DISS_USC_FLAG_W | MN TOT DISS USC quality flag | dimensionless |
D56FE | D56FE | PERMIL |
D56FE_FLAG_W | D56FE quality flag | dimensionless |
D66ZN | D66ZN | PERMIL |
D66ZN_FLAG_W | D66ZN quality flag | dimensionless |
D114CD | D114CD | PERMIL |
D114CD_FLAG_W | D114CD quality flag | dimensionless |
FE_TOT_DISS | FE TOT DISS | NMOL/KG |
FE_TOT_DISS_FLAG_W | FE TOT DISS quality flag | dimensionless |
ZN_TOT_DISS | ZN TOT DISS | NMOL/KG |
ZN_TOT_DISS_FLAG_W | ZN TOT DISS quality flag | dimensionless |
CD_TOT_DISS | CD TOT DISS | NMOL/KG |
CD_TOT_DISS_FLAG_W | CD TOT DISS quality flag | dimensionless |
L1_FE | L1 FE | NMOL/L |
L1_FE_FLAG_W | L1 FE quality flag | dimensionless |
LOG_K1_FE | LOG K1 FE | n/a |
LOG_K1_FE_FLAG_W | LOG K1 FE quality flag | dimensionless |
L2_FE | L2 FE | NMOL/L |
L2_FE_FLAG_W | L2 FE quality flag | dimensionless |
LOG_K2_FE | LOG K2 FE | n/a |
LOG_K2_FE_FLAG_W | LOG K2 FE quality flag | dimensionless |
EXCESS_L1minusDFE | EXCESS L1-DFE | NMOL/L |
EXCESS_L1minusDFE_FLAG_W | EXCESS L1-DFE quality flag | dimensionless |
EXCESS_LTOTminusDFE | EXCESS LTOT-DFE | NMOL/L |
EXCESS_LTOTminusDFE_FLAG_W | EXCESS LTOT-DFE quality flag | dimensionless |
FREE_CU2plus_CONC | FREE CU2+ CONC | MOL/L |
FREE_CU2plus_CONC_FLAG_W | FREE CU2+ CONC quality flag | dimensionless |
L1_CU_FLAG_W | L1 CU quality flag | dimensionless |
L1_CU | L1 CU | NMOL/L |
LOG_K1_CU_FLAG_W | LOG K1 CU quality flag | dimensionless |
LOG_K1_CU | LOG K1 CU | n/a |
L2_CU_FLAG_W | L2 CU quality flag | dimensionless |
L2_CU | L2 CU | NMOL/L |
LOG_K2_CU_FLAG_W | LOG K2 CU quality flag | dimensionless |
LOG_K2_CU | LOG K2 CU | n/a |
L3_CU_FLAG_W | L3 CU quality flag | dimensionless |
L3_CU | L3 CU | NMOL/L |
LOG_K3_CU_FLAG_W | LOG K3 CU quality flag | dimensionless |
LOG_K3_CU | LOG K3 CU | n/a |
EXCESS_L1minusDCU_FLAG_W | EXCESS L1-DCU quality flag | dimensionless |
EXCESS_L1minusDCU | EXCESS L1-DCU | NMOL/L |
EXCESS_LTOTminusDCU_FLAG_W | EXCESS LTOT-DCU quality flag | dimensionless |
EXCESS_LTOTminusDCU | EXCESS LTOT-DCU | NMOL/L |
FE_DISS_WU | FE DISS WU | NMOL/L |
FE_DISS_WU_FLAG_W | FE DISS WU quality flag | dimensionless |
CU_DISS_WU | CU DISS WU | NMOL/L |
CU_DISS_WU_FLAG_W | CU DISS WU quality flag | dimensionless |
ZN_DISS_WU | ZN DISS WU | NMOL/L |
ZN_DISS_WU_FLAG_W | ZN DISS WU quality flag | dimensionless |
CD_DISS_WU | CD DISS WU | NMOL/L |
CD_DISS_WU_FLAG_W | CD DISS WU quality flag | dimensionless |
MN_DISS_WU | MN DISS WU | NMOL/L |
MN_DISS_WU_FLAG_W | MN DISS WU quality flag | dimensionless |
FE_COLL | FE COLL | NMOL/KG |
FE_COLL_FLAG_W | FE COLL quality flag | dimensionless |
PB_CONC_FLEG | PB CONC FLEG | PMOL/KG |
PB_CONC_FLEG_FLAG_W | PB CONC FLEG quality flag | dimensionless |
PB_206_to_PB_207_F | PB-206/PB-207 F | RATIO |
PB_206_to_PB_207_F_FLAG_W | PB-206/PB-207 F quality flag | dimensionless |
PB_208_to_PB_207_F | PB-208/PB-207 F | RATIO |
PB_208_to_PB_207_F_FLAG_W | PB-208/PB-207 F quality flag | dimensionless |
PB_206_to_PB_204_F | PB-206/PB-204 F | RATIO |
PB_206_to_PB_204_F_FLAG_W | PB-206/PB-204 F quality flag | dimensionless |
PB_CONC_BOYL | PB CONC BOYL | PMOL/KG |
PB_CONC_BOYL_FLAG_W | PB CONC BOYL quality flag | dimensionless |
PB_206_to_PB_207_B | PB-206/PB-207 B | RATIO |
PB_206_to_PB_207_B_FLAG_W | PB-206/PB-207 B quality flag | dimensionless |
PB_208_to_PB_207_B | PB-208/PB-207 B | RATIO |
PB_208_to_PB_207_B_FLAG_W | PB-208/PB-207 B quality flag | dimensionless |
PB_206_to_PB_204_B | PB-206/PB-204 B | RATIO |
PB_206_to_PB_204_B_FLAG_W | PB-206/PB-204 B quality flag | dimensionless |
GA_DISS_USM | GA DISS USM | PMOL/KG |
GA_DISS_USM_FLAG_W | GA DISS USM quality flag | dimensionless |
BA_DISS_USM | BA DISS USM | NMOL/KG |
BA_DISS_USM_FLAG_W | BA DISS USM quality flag | dimensionless |
V_DISS_USM | V DISS USM | NMOL/KG |
V_DISS_USM_FLAG_W | V DISS USM quality flag | dimensionless |
MO_DISS_USM | MO DISS USM | NMOL/KG |
MO_DISS_USM_FLAG_W | MO DISS USM quality flag | dimensionless |
AL_PHYTO_to_P_TWI | AL PHYTO/P TWI | RATIO |
AL_PHYTO_to_P_TWI_FLAG_W | AL PHYTO/P TWI quality flag | dimensionless |
MN_PHYTO_to_P_TWI | MN PHYTO/P TWI | RATIO |
MN_PHYTO_to_P_TWI_FLAG_W | MN PHYTO/P TWI quality flag | dimensionless |
FE_PHYTO_to_P_TWI | FE PHYTO/P TWI | RATIO |
FE_PHYTO_to_P_TWI_FLAG_W | FE PHYTO/P TWI quality flag | dimensionless |
CO_PHYTO_to_P_TWI | CO PHYTO/P TWI | RATIO |
CO_PHYTO_to_P_TWI_FLAG_W | CO PHYTO/P TWI quality flag | dimensionless |
NI_PHYTO_to_P_TWI | NI PHYTO/P TWI | RATIO |
NI_PHYTO_to_P_TWI_FLAG_W | NI PHYTO/P TWI quality flag | dimensionless |
ZN_PHYTO_to_P_TWI | ZN PHYTO/P TWI | RATIO |
ZN_PHYTO_to_P_TWI_FLAG_W | ZN PHYTO/P TWI quality flag | dimensionless |
CD_PHYTO_to_P_TWI | CD PHYTO/P TWI | RATIO |
CD_PHYTO_to_P_TWI_FLAG_W | CD PHYTO/P TWI quality flag | dimensionless |
AL_PART_TWI | AL PART TWI | PMOL/L |
AL_PART_TWI_FLAG_W | AL PART TWI quality flag | dimensionless |
P_PART_TWI | P PART TWI | PMOL/L |
P_PART_TWI_FLAG_W | P PART TWI quality flag | dimensionless |
MN_PART_TWI | MN PART TWI | PMOL/L |
MN_PART_TWI_FLAG_W | MN PART TWI quality flag | dimensionless |
FE_PART_TWI | FE PART TWI | PMOL/L |
FE_PART_TWI_FLAG_W | FE PART TWI quality flag | dimensionless |
CO_PART_TWI | CO PART TWI | PMOL/L |
CO_PART_TWI_FLAG_W | CO PART TWI quality flag | dimensionless |
NI_PART_TWI | NI PART TWI | PMOL/L |
NI_PART_TWI_FLAG_W | NI PART TWI quality flag | dimensionless |
CU_PART_TWI | CU PART TWI | PMOL/L |
CU_PART_TWI_FLAG_W | CU PART TWI quality flag | dimensionless |
ZN_PART_TWI | ZN PART TWI | PMOL/L |
ZN_PART_TWI_FLAG_W | ZN PART TWI quality flag | dimensionless |
CD_PART_TWI | CD PART TWI | PMOL/L |
CD_PART_TWI_FLAG_W | CD PART TWI quality flag | dimensionless |
CD_UNFILT_BRUL | CD UNFILT BRUL | PMOL/KG |
CD_UNFILT_BRUL_FLAG_W | CD UNFILT BRUL quality flag | dimensionless |
CO_UNFILT_BRUL | CO UNFILT BRUL | PMOL/KG |
CO_UNFILT_BRUL_FLAG_W | CO UNFILT BRUL quality flag | dimensionless |
CU_UNFILT_BRUL | CU UNFILT BRUL | NMOL/KG |
CU_UNFILT_BRUL_FLAG_W | CU UNFILT BRUL quality flag | dimensionless |
GA_UNFILT_BRUL | GA UNFILT BRUL | PMOL/KG |
GA_UNFILT_BRUL_FLAG_W | GA UNFILT BRUL quality flag | dimensionless |
FE_UNFILT_BRUL | FE UNFILT BRUL | NMOL/KG |
FE_UNFILT_BRUL_FLAG_W | FE UNFILT BRUL quality flag | dimensionless |
PB_UNFILT_BRUL | PB UNFILT BRUL | PMOL/KG |
PB_UNFILT_BRUL_FLAG_W | PB UNFILT BRUL quality flag | dimensionless |
MN_UNFILT_BRUL | MN UNFILT BRUL | NMOL/KG |
MN_UNFILT_BRUL_FLAG_W | MN UNFILT BRUL quality flag | dimensionless |
NI_UNFILT_BRUL | NI UNFILT BRUL | NMOL/KG |
NI_UNFILT_BRUL_FLAG_W | NI UNFILT BRUL quality flag | dimensionless |
SC_UNFILT_BRUL | SC UNFILT BRUL | PMOL/KG |
SC_UNFILT_BRUL_FLAG_W | SC UNFILT BRUL quality flag | dimensionless |
AG_UNFILT_BRUL | AG UNFILT BRUL | PMOL/KG |
AG_UNFILT_BRUL_FLAG_W | AG UNFILT BRUL quality flag | dimensionless |
TI_UNFILT_BRUL | TI UNFILT BRUL | PMOL/KG |
TI_UNFILT_BRUL_FLAG_W | TI UNFILT BRUL quality flag | dimensionless |
ZN_UNFILT_BRUL | ZN UNFILT BRUL | NMOL/KG |
ZN_UNFILT_BRUL_FLAG_W | ZN UNFILT BRUL quality flag | dimensionless |
LA_UNFILT_BRUL | LA UNFILT BRUL | PMOL/KG |
LA_UNFILT_BRUL_FLAG_W | LA UNFILT BRUL quality flag | dimensionless |
Y_UNFILT_BRUL | Y UNFILT BRUL | PMOL/KG |
Y_UNFILT_BRUL_FLAG_W | Y UNFILT BRUL quality flag | dimensionless |
CD_DISS_BRUL | CD DISS BRUL | PMOL/KG |
CD_DISS_BRUL_FLAG_W | CD DISS BRUL quality flag | dimensionless |
CO_DISS_BRUL | CO DISS BRUL | PMOL/KG |
CO_DISS_BRUL_FLAG_W | CO DISS BRUL quality flag | dimensionless |
CU_DISS_BRUL | CU DISS BRUL | NMOL/KG |
CU_DISS_BRUL_FLAG_W | CU DISS BRUL quality flag | dimensionless |
GA_DISS_BRUL | GA DISS BRUL | PMOL/KG |
GA_DISS_BRUL_FLAG_W | GA DISS BRUL quality flag | dimensionless |
FE_DISS_BRUL | FE DISS BRUL | NMOL/KG |
FE_DISS_BRUL_FLAG_W | FE DISS BRUL quality flag | dimensionless |
PB_DISS_BRUL | PB DISS BRUL | PMOL/KG |
PB_DISS_BRUL_FLAG_W | PB DISS BRUL quality flag | dimensionless |
MN_DISS_BRUL | MN DISS BRUL | NMOL/KG |
MN_DISS_BRUL_FLAG_W | MN DISS BRUL quality flag | dimensionless |
NI_DISS_BRUL | NI DISS BRUL | NMOL/KG |
NI_DISS_BRUL_FLAG_W | NI DISS BRUL quality flag | dimensionless |
SC_DISS_BRUL | SC DISS BRUL | PMOL/KG |
SC_DISS_BRUL_FLAG_W | SC DISS BRUL quality flag | dimensionless |
AG_DISS_BRUL | AG DISS BRUL | PMOL/KG |
AG_DISS_BRUL_FLAG_W | AG DISS BRUL quality flag | dimensionless |
TI_DISS_BRUL | TI DISS BRUL | PMOL/KG |
TI_DISS_BRUL_FLAG_W | TI DISS BRUL quality flag | dimensionless |
ZN_DISS_BRUL | ZN DISS BRUL | NMOL/KG |
ZN_DISS_BRUL_FLAG_W | ZN DISS BRUL quality flag | dimensionless |
LA_DISS_BRUL | LA DISS BRUL | PMOL/KG |
LA_DISS_BRUL_FLAG_W | LA DISS BRUL quality flag | dimensionless |
Y_DISS_BRUL | Y DISS BRUL | PMOL/KG |
Y_DISS_BRUL_FLAG_W | Y DISS BRUL quality flag | dimensionless |
BE_PART_TOTAL | BE PART TOTAL | PMOL/L |
BE_PART_TOTAL_FLAG_W | BE PART TOTAL quality flag | dimensionless |
MG_PART_TOTAL | MG PART TOTAL | PMOL/L |
MG_PART_TOTAL_FLAG_W | MG PART TOTAL quality flag | dimensionless |
AL_PART_TOTAL | AL PART TOTAL | PMOL/L |
AL_PART_TOTAL_FLAG_W | AL PART TOTAL quality flag | dimensionless |
P_PART_TOTAL | P PART TOTAL | PMOL/L |
P_PART_TOTAL_FLAG_W | P PART TOTAL quality flag | dimensionless |
CA_PART_TOTAL | CA PART TOTAL | PMOL/L |
CA_PART_TOTAL_FLAG_W | CA PART TOTAL quality flag | dimensionless |
TI_PART_TOTAL | TI PART TOTAL | PMOL/L |
TI_PART_TOTAL_FLAG_W | TI PART TOTAL quality flag | dimensionless |
V_PART_TOTAL | V PART TOTAL | PMOL/L |
V_PART_TOTAL_FLAG_W | V PART TOTAL quality flag | dimensionless |
CR_PART_TOTAL | CR PART TOTAL | PMOL/L |
CR_PART_TOTAL_FLAG_W | CR PART TOTAL quality flag | dimensionless |
MN_PART_TOTAL | MN PART TOTAL | PMOL/L |
MN_PART_TOTAL_FLAG_W | MN PART TOTAL quality flag | dimensionless |
FE_PART_TOTAL | FE PART TOTAL | PMOL/L |
FE_PART_TOTAL_FLAG_W | FE PART TOTAL quality flag | dimensionless |
CO_PART_TOTAL | CO PART TOTAL | PMOL/L |
CO_PART_TOTAL_FLAG_W | CO PART TOTAL quality flag | dimensionless |
NI_PART_TOTAL | NI PART TOTAL | PMOL/L |
NI_PART_TOTAL_FLAG_W | NI PART TOTAL quality flag | dimensionless |
CU_PART_TOTAL | CU PART TOTAL | PMOL/L |
CU_PART_TOTAL_FLAG_W | CU PART TOTAL quality flag | dimensionless |
ZN_PART_TOTAL | ZN PART TOTAL | PMOL/L |
ZN_PART_TOTAL_FLAG_W | ZN PART TOTAL quality flag | dimensionless |
AS_PART_TOTAL | AS PART TOTAL | PMOL/L |
AS_PART_TOTAL_FLAG_W | AS PART TOTAL quality flag | dimensionless |
RB_PART_TOTAL | RB PART TOTAL | PMOL/L |
RB_PART_TOTAL_FLAG_W | RB PART TOTAL quality flag | dimensionless |
SR_PART_TOTAL | SR PART TOTAL | PMOL/L |
SR_PART_TOTAL_FLAG_W | SR PART TOTAL quality flag | dimensionless |
Y_PART_TOTAL | Y PART TOTAL | PMOL/L |
Y_PART_TOTAL_FLAG_W | Y PART TOTAL quality flag | dimensionless |
ZR_PART_TOTAL | ZR PART TOTAL | PMOL/L |
ZR_PART_TOTAL_FLAG_W | ZR PART TOTAL quality flag | dimensionless |
MO_PART_TOTAL | MO PART TOTAL | PMOL/L |
MO_PART_TOTAL_FLAG_W | MO PART TOTAL quality flag | dimensionless |
AG_PART_TOTAL | AG PART TOTAL | PMOL/L |
AG_PART_TOTAL_FLAG_W | AG PART TOTAL quality flag | dimensionless |
CD_PART_TOTAL | CD PART TOTAL | PMOL/L |
CD_PART_TOTAL_FLAG_W | CD PART TOTAL quality flag | dimensionless |
SN_PART_TOTAL | SN PART TOTAL | PMOL/L |
SN_PART_TOTAL_FLAG_W | SN PART TOTAL quality flag | dimensionless |
SB_PART_TOTAL | SB PART TOTAL | PMOL/L |
SB_PART_TOTAL_FLAG_W | SB PART TOTAL quality flag | dimensionless |
BA_PART_TOTAL | BA PART TOTAL | PMOL/L |
BA_PART_TOTAL_FLAG_W | BA PART TOTAL quality flag | dimensionless |
REE_LA_PART_TOTAL | REE LA PART TOTAL | PMOL/L |
REE_LA_PART_TOTAL_FLAG_W | REE LA PART TOTAL quality flag | dimensionless |
REE_CE_PART_TOTAL | REE CE PART TOTAL | PMOL/L |
REE_CE_PART_TOTAL_FLAG_W | REE CE PART TOTAL quality flag | dimensionless |
REE_PR_PART_TOTAL | REE PR PART TOTAL | PMOL/L |
REE_PR_PART_TOTAL_FLAG_W | REE PR PART TOTAL quality flag | dimensionless |
REE_ND_PART_TOTAL | REE ND PART TOTAL | PMOL/L |
REE_ND_PART_TOTAL_FLAG_W | REE ND PART TOTAL quality flag | dimensionless |
REE_SM_PART_TOTAL | REE SM PART TOTAL | PMOL/L |
REE_SM_PART_TOTAL_FLAG_W | REE SM PART TOTAL quality flag | dimensionless |
REE_EU_PART_TOTAL | REE EU PART TOTAL | PMOL/L |
REE_EU_PART_TOTAL_FLAG_W | REE EU PART TOTAL quality flag | dimensionless |
REE_GD_PART_TOTAL | REE GD PART TOTAL | PMOL/L |
REE_GD_PART_TOTAL_FLAG_W | REE GD PART TOTAL quality flag | dimensionless |
REE_TB_PART_TOTAL | REE TB PART TOTAL | PMOL/L |
REE_TB_PART_TOTAL_FLAG_W | REE TB PART TOTAL quality flag | dimensionless |
REE_DY_PART_TOTAL | REE DY PART TOTAL | PMOL/L |
REE_DY_PART_TOTAL_FLAG_W | REE DY PART TOTAL quality flag | dimensionless |
REE_HO_PART_TOTAL | REE HO PART TOTAL | PMOL/L |
REE_HO_PART_TOTAL_FLAG_W | REE HO PART TOTAL quality flag | dimensionless |
REE_ER_PART_TOTAL | REE ER PART TOTAL | PMOL/L |
REE_ER_PART_TOTAL_FLAG_W | REE ER PART TOTAL quality flag | dimensionless |
REE_TM_PART_TOTAL | REE TM PART TOTAL | PMOL/L |
REE_TM_PART_TOTAL_FLAG_W | REE TM PART TOTAL quality flag | dimensionless |
REE_YB_PART_TOTAL | REE YB PART TOTAL | PMOL/L |
REE_YB_PART_TOTAL_FLAG_W | REE YB PART TOTAL quality flag | dimensionless |
REE_LU_PART_TOTAL | REE LU PART TOTAL | PMOL/L |
REE_LU_PART_TOTAL_FLAG_W | REE LU PART TOTAL quality flag | dimensionless |
PB_PART_TOTAL | PB PART TOTAL | PMOL/L |
PB_PART_TOTAL_FLAG_W | PB PART TOTAL quality flag | dimensionless |
TH_232_PART_TOTAL | TH-232 PART TOTAL | PMOL/L |
TH_232_PART_TOTAL_FLAG_W | TH-232 PART TOTAL quality flag | dimensionless |
U_PART_TOTAL | U PART TOTAL | PMOL/L |
U_PART_TOTAL_FLAG_W | U PART TOTAL quality flag | dimensionless |
BE_PART_LABILE | BE PART LABILE | PMOL/L |
BE_PART_LABILE_FLAG_W | BE PART LABILE quality flag | dimensionless |
MG_PART_LABILE | MG PART LABILE | PMOL/L |
MG_PART_LABILE_FLAG_W | MG PART LABILE quality flag | dimensionless |
AL_PART_LABILE | AL PART LABILE | PMOL/L |
AL_PART_LABILE_FLAG_W | AL PART LABILE quality flag | dimensionless |
P_PART_LABILE | P PART LABILE | PMOL/L |
P_PART_LABILE_FLAG_W | P PART LABILE quality flag | dimensionless |
CA_PART_LABILE | CA PART LABILE | PMOL/L |
CA_PART_LABILE_FLAG_W | CA PART LABILE quality flag | dimensionless |
TI_PART_LABILE | TI PART LABILE | PMOL/L |
TI_PART_LABILE_FLAG_W | TI PART LABILE quality flag | dimensionless |
V_PART_LABILE | V PART LABILE | PMOL/L |
V_PART_LABILE_FLAG_W | V PART LABILE quality flag | dimensionless |
CR_PART_LABILE | CR PART LABILE | PMOL/L |
CR_PART_LABILE_FLAG_W | CR PART LABILE quality flag | dimensionless |
MN_PART_LABILE | MN PART LABILE | PMOL/L |
MN_PART_LABILE_FLAG_W | MN PART LABILE quality flag | dimensionless |
FE_PART_LABILE | FE PART LABILE | PMOL/L |
FE_PART_LABILE_FLAG_W | FE PART LABILE quality flag | dimensionless |
CO_PART_LABILE | CO PART LABILE | PMOL/L |
CO_PART_LABILE_FLAG_W | CO PART LABILE quality flag | dimensionless |
NI_PART_LABILE | NI PART LABILE | PMOL/L |
NI_PART_LABILE_FLAG_W | NI PART LABILE quality flag | dimensionless |
CU_PART_LABILE | CU PART LABILE | PMOL/L |
CU_PART_LABILE_FLAG_W | CU PART LABILE quality flag | dimensionless |
ZN_PART_LABILE | ZN PART LABILE | PMOL/L |
ZN_PART_LABILE_FLAG_W | ZN PART LABILE quality flag | dimensionless |
AS_PART_LABILE | AS PART LABILE | PMOL/L |
AS_PART_LABILE_FLAG_W | AS PART LABILE quality flag | dimensionless |
RB_PART_LABILE | RB PART LABILE | PMOL/L |
RB_PART_LABILE_FLAG_W | RB PART LABILE quality flag | dimensionless |
SR_PART_LABILE | SR PART LABILE | PMOL/L |
SR_PART_LABILE_FLAG_W | SR PART LABILE quality flag | dimensionless |
Y_PART_LABILE | Y PART LABILE | PMOL/L |
Y_PART_LABILE_FLAG_W | Y PART LABILE quality flag | dimensionless |
ZR_PART_LABILE | ZR PART LABILE | PMOL/L |
ZR_PART_LABILE_FLAG_W | ZR PART LABILE quality flag | dimensionless |
MO_PART_LABILE | MO PART LABILE | PMOL/L |
MO_PART_LABILE_FLAG_W | MO PART LABILE quality flag | dimensionless |
AG_PART_LABILE | AG PART LABILE | PMOL/L |
AG_PART_LABILE_FLAG_W | AG PART LABILE quality flag | dimensionless |
CD_PART_LABILE | CD PART LABILE | PMOL/L |
CD_PART_LABILE_FLAG_W | CD PART LABILE quality flag | dimensionless |
SN_PART_LABILE | SN PART LABILE | PMOL/L |
SN_PART_LABILE_FLAG_W | SN PART LABILE quality flag | dimensionless |
SB_PART_LABILE | SB PART LABILE | PMOL/L |
SB_PART_LABILE_FLAG_W | SB PART LABILE quality flag | dimensionless |
BA_PART_LABILE | BA PART LABILE | PMOL/L |
BA_PART_LABILE_FLAG_W | BA PART LABILE quality flag | dimensionless |
REE_LA_PART_LABILE | REE LA PART LABILE | PMOL/L |
REE_LA_PART_LABILE_FLAG_W | REE LA PART LABILE quality flag | dimensionless |
REE_CE_PART_LABILE | REE CE PART LABILE | PMOL/L |
REE_CE_PART_LABILE_FLAG_W | REE CE PART LABILE quality flag | dimensionless |
REE_PR_PART_LABILE | REE PR PART LABILE | PMOL/L |
REE_PR_PART_LABILE_FLAG_W | REE PR PART LABILE quality flag | dimensionless |
REE_ND_PART_LABILE | REE ND PART LABILE | PMOL/L |
REE_ND_PART_LABILE_FLAG_W | REE ND PART LABILE quality flag | dimensionless |
REE_SM_PART_LABILE | REE SM PART LABILE | PMOL/L |
REE_SM_PART_LABILE_FLAG_W | REE SM PART LABILE quality flag | dimensionless |
REE_EU_PART_LABILE | REE EU PART LABILE | PMOL/L |
REE_EU_PART_LABILE_FLAG_W | REE EU PART LABILE quality flag | dimensionless |
REE_GD_PART_LABILE | REE GD PART LABILE | PMOL/L |
REE_GD_PART_LABILE_FLAG_W | REE GD PART LABILE quality flag | dimensionless |
REE_TB_PART_LABILE | REE TB PART LABILE | PMOL/L |
REE_TB_PART_LABILE_FLAG_W | REE TB PART LABILE quality flag | dimensionless |
REE_DY_PART_LABILE | REE DY PART LABILE | PMOL/L |
REE_DY_PART_LABILE_FLAG_W | REE DY PART LABILE quality flag | dimensionless |
REE_HO_PART_LABILE | REE HO PART LABILE | PMOL/L |
REE_HO_PART_LABILE_FLAG_W | REE HO PART LABILE quality flag | dimensionless |
REE_ER_PART_LABILE | REE ER PART LABILE | PMOL/L |
REE_ER_PART_LABILE_FLAG_W | REE ER PART LABILE quality flag | dimensionless |
REE_TM_PART_LABILE | REE TM PART LABILE | PMOL/L |
REE_TM_PART_LABILE_FLAG_W | REE TM PART LABILE quality flag | dimensionless |
REE_YB_PART_LABILE | REE YB PART LABILE | PMOL/L |
REE_YB_PART_LABILE_FLAG_W | REE YB PART LABILE quality flag | dimensionless |
REE_LU_PART_LABILE | REE LU PART LABILE | PMOL/L |
REE_LU_PART_LABILE_FLAG_W | REE LU PART LABILE quality flag | dimensionless |
PB_PART_LABILE | PB PART LABILE | PMOL/L |
PB_PART_LABILE_FLAG_W | PB PART LABILE quality flag | dimensionless |
TH_232_PART_LABILE | TH-232 PART LABILE | PMOL/L |
TH_232_PART_LABILE_FLAG_W | TH-232 PART LABILE quality flag | dimensionless |
U_PART_LABILE | U PART LABILE | PMOL/L |
U_PART_LABILE_FLAG_W | U PART LABILE quality flag | dimensionless |
ISO_DATETIME | Date/Time (ISO formatted) in the format YYYY-MM-DDTHH:MM:SS[.xx]Z | unitless |
BTL_ISO_DATETIME | Bottle Date/Time (ISO formatted) | yyyy-MM-dd'T'HH:mm:ss.SS'Z' |
Dataset-specific Instrument Name | |
Generic Instrument Name | CTD Sea-Bird SBE 911plus |
Generic Instrument Description | The Sea-Bird SBE 911 plus is a type of CTD instrument package for continuous measurement of conductivity, temperature and pressure. The SBE 911 plus includes the SBE 9plus Underwater Unit and the SBE 11plus Deck Unit (for real-time readout using conductive wire) for deployment from a vessel. The combination of the SBE 9 plus and SBE 11 plus is called a SBE 911 plus. The SBE 9 plus uses Sea-Bird's standard modular temperature and conductivity sensors (SBE 3 plus and SBE 4). The SBE 9 plus CTD can be configured with up to eight auxiliary sensors to measure other parameters including dissolved oxygen, pH, turbidity, fluorescence, light (PAR), light transmission, etc.). more information from Sea-Bird Electronics |
Dataset-specific Instrument Name | GO-FLO |
Generic Instrument Name | GO-FLO Bottle |
Dataset-specific Description | GEOTRACES GT-C Carousel |
Generic Instrument Description | GO-FLO bottle cast used to collect water samples for pigment, nutrient, plankton, etc. The GO-FLO sampling bottle is specially designed to avoid sample contamination at the surface, internal spring contamination, loss of sample on deck (internal seals), and exchange of water from different depths. |
Dataset-specific Instrument Name | Niskin bottle |
Generic Instrument Name | Niskin bottle |
Generic Instrument Description | A Niskin bottle (a next generation water sampler based on the Nansen bottle) is a cylindrical, non-metallic water collection device with stoppers at both ends. The bottles can be attached individually on a hydrowire or deployed in 12, 24, or 36 bottle Rosette systems mounted on a frame and combined with a CTD. Niskin bottles are used to collect discrete water samples for a range of measurements including pigments, nutrients, plankton, etc. |
Website | |
Platform | R/V Thomas G. Thompson |
Report | |
Start Date | 2013-10-25 |
End Date | 2013-12-20 |
Description | A zonal transect in the eastern tropical South Pacific (ETSP) from Peru to Tahiti as the second cruise of the U.S.GEOTRACES Program. This Pacific section includes a large area characterized by high rates of primary production and particle export in the eastern boundary associated with the Peru Upwelling, a large oxygen minimum zone that is a major global sink for fixed nitrogen, and a large hydrothermal plume arising from the East Pacific Rise. This particular section was selected as a result of open planning workshops in 2007 and 2008, with a final recommendation made by the U.S.GEOTRACES Steering Committee in 2009. It is the first part of a two-stage plan that will include a meridional section of the Pacific from Tahiti to Alaska as a subsequent expedition.
Figure 1. The 2013 GEOTRACES EPZT Cruise Track. [click on the image to view a larger version]
Additional cruise information is available from the Rolling Deck to Repository (R2R): http://www.rvdata.us/catalog/TN303 |
From the NSF Award Abstract
The mission of the International GEOTRACES Program (https://www.geotraces.org/), of which the U.S. chemical oceanography research community is a founding member, is "to identify processes and quantify fluxes that control the distributions of key trace elements and isotopes in the ocean, and to establish the sensitivity of these distributions to changing environmental conditions" (GEOTRACES Science Plan, 2006). In the United States, ocean chemists are currently in the process of organizing a zonal transect in the eastern tropical South Pacific (ETSP) from Peru to Tahiti as the second cruise of the U.S.GEOTRACES Program. This Pacific section includes a large area characterized by high rates of primary production and particle export in the eastern boundary associated with the Peru Upwelling, a large oxygen minimum zone that is a major global sink for fixed nitrogen, and a large hydrothermal plume arising from the East Pacific Rise. This particular section was selected as a result of open planning workshops in 2007 and 2008, with a final recommendation made by the U.S.GEOTRACES Steering Committee in 2009. It is the first part of a two-stage plan that will include a meridional section of the Pacific from Tahiti to Alaska as a subsequent expedition.
This award provides funding for management of the U.S.GEOTRACES Pacific campaign to a team of scientists from the University of Southern California, Old Dominion University, and the Woods Hole Oceanographic Institution. The three co-leaders will provide mission leadership, essential support services, and management structure for acquiring the trace elements and isotopes samples listed as core parameters in the International GEOTRACES Science Plan, plus hydrographic and nutrient data needed by participating investigators. With this support from NSF, the management team will (1) plan and coordinate the 52-day Pacific research cruise described above; (2) obtain representative samples for a wide variety of trace metals of interest using conventional CTD/rosette and GEOTRACES Sampling Systems; (3) acquire conventional JGOFS/WOCE-quality hydrographic data (CTD, transmissometer, fluorometer, oxygen sensor, etc) along with discrete samples for salinity, dissolved oxygen (to 1 uM detection limits), plant pigments, redox tracers such as ammonium and nitrite, and dissolved nutrients at micro- and nanomolar levels; (4) ensure that proper QA/QC protocols are followed and reported, as well as fulfilling all GEOTRACES Intercalibration protocols; (5) prepare and deliver all hydrographic-type data to the GEOTRACES Data Center (and US data centers); and (6) coordinate cruise communications between all participating investigators, including preparation of a hydrographic report/publication.
Broader Impacts: The project is part of an international collaborative program that has forged strong partnerships in the intercalibration and implementation phases that are unprecedented in chemical oceanography. The science product of these collective missions will enhance our ability to understand how to interpret the chemical composition of the ocean, and interpret how climate change will affect ocean chemistry. Partnerships include contributions to the infrastructure of developing nations with overlapping interests in the study area, in this case Peru. There is a strong educational component to the program, with many Ph.D. students carrying out thesis research within the program.
Figure 1. The 2013 GEOTRACES EPZT Cruise Track. [click on the image to view a larger version]
GEOTRACES is a SCOR sponsored program; and funding for program infrastructure development is provided by the U.S. National Science Foundation.
GEOTRACES gained momentum following a special symposium, S02: Biogeochemical cycling of trace elements and isotopes in the ocean and applications to constrain contemporary marine processes (GEOSECS II), at a 2003 Goldschmidt meeting convened in Japan. The GEOSECS II acronym referred to the Geochemical Ocean Section Studies To determine full water column distributions of selected trace elements and isotopes, including their concentration, chemical speciation, and physical form, along a sufficient number of sections in each ocean basin to establish the principal relationships between these distributions and with more traditional hydrographic parameters;
* To evaluate the sources, sinks, and internal cycling of these species and thereby characterize more completely the physical, chemical and biological processes regulating their distributions, and the sensitivity of these processes to global change; and
* To understand the processes that control the concentrations of geochemical species used for proxies of the past environment, both in the water column and in the substrates that reflect the water column.
GEOTRACES will be global in scope, consisting of ocean sections complemented by regional process studies. Sections and process studies will combine fieldwork, laboratory experiments and modelling. Beyond realizing the scientific objectives identified above, a natural outcome of this work will be to build a community of marine scientists who understand the processes regulating trace element cycles sufficiently well to exploit this knowledge reliably in future interdisciplinary studies.
Expand "Projects" below for information about and data resulting from individual US GEOTRACES research projects.
Funding Source | Award |
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NSF Division of Ocean Sciences (NSF OCE) | |
NSF Division of Ocean Sciences (NSF OCE) |