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Li, Yan-Ping; Jiang, Shao-Yong (2010): (Table 1) Boron concentration and d11B values of interstitial water from IODP Holes 308-U1319A, U1320A, U1322B and U1324B [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.763865, Supplement to: Li, Y-P; Jiang, S-Y (2010): Boron concentration and isotopic constraints on processes affecting the chemistry of interstitial water in normal- and over-pressured basins, Gulf of Mexico. Marine Geology, 275(1-4), 230-243, https://doi.org/10.1016/j.margeo.2010.06.004

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Abstract:
The Integrated Ocean Drilling Program Expedition 308 (IODP308) drilled normal-pressured sediments from the Brazos-Trinity Basin IV and over-pressured sediments from the Ursa Basin on the northern slope of the Gulf of Mexico. The interstitial water samples from the normal-pressured basin show B concentrations and B isotopic compositions ranging from 255 to 631 µM (0.6 to 1.5 times of seawater value) and from +29.1 to +42.7 per mil (relative to NIST SRM 951), respectively. A wider range is observed both for B concentrations (292 to 865 µM, 0.7 to 2.1 times of seawater value) and d11B values (+25.5 to +43.2 per mil) of the interstitial water in the over-pressured basin. The down-core distribution of B concentrations and d11B values in the interstitial waters are sensitive tracers for assessing various processes occurring in the sediment column, including boron adsorption/desorption reactions involving clay minerals and organic matter in sediments as well as fluid migration and mixing in certain horizons and in the sediment column. In the normal-pressured basin adsorption/desorption reactions in shallow sediments play the major role in controlling the B content and B isotopic composition of the interstitial water. In contrast, multiple processes affect the B content and d11B of the interstitial water in the over-pressured Ursa Basin. There, the stratigraphic level of the maxima of B and d11B correspond to seismic reflectors. The intruded fluids along the seismic reflector boundary from high to low-topography mix with local interstitial water. Fluid flow is inferred in the Blue Unit (a coarse sandstone layer, connecting the high- to low-pressured region) from the freshening of interstitial water in Ursa Basin Site U1322, and upward flow by the overpressure expels fluid from the overburden above the Blue Unit.
Coverage:
Median Latitude: 27.642646 * Median Longitude: -91.698365 * South-bound Latitude: 27.266252 * West-bound Longitude: -94.403180 * North-bound Latitude: 28.001657 * East-bound Longitude: -89.000417
Minimum DEPTH, sediment/rock: 1.5 m * Maximum DEPTH, sediment/rock: 603.1 m
Event(s):
308-U1319A * Latitude: 27.266252 * Longitude: -94.403180 * Elevation: -1429.6 m * Recovery: 155.29 m * Campaign: Exp308 (Gulf of Mexico Hydrogeology) * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 18 cores; 157.5 m cored; 98.6 % recovered; 0 m drilled; 157.5 m penetrated
308-U1320A * Latitude: 27.301348 * Longitude: -94.387545 * Elevation: -1470.0 m * Recovery: 250.89 m * Campaign: Exp308 (Gulf of Mexico Hydrogeology) * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 33 cores; 299.6 m cored; 83.7 % recovered; 0 m drilled; 299.6 m penetrated
308-U1322B * Latitude: 28.001657 * Longitude: -89.000417 * Elevation: -1319.5 m * Recovery: 236.79 m * Campaign: Exp308 (Gulf of Mexico Hydrogeology) * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 29 cores; 234.5 m cored; 101 % recovered; 0 m drilled; 234.5 m penetrated
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Event labelEvent
2Sample code/labelSample labelLi, Yan-PingDSDP/ODP/IODP sample designation
3DEPTH, sediment/rockDepth sedmGeocode – mbsf
4ChlorideCl-mmol/lLi, Yan-Ping
5Alkalinity, totalATmmol(eq)/lLi, Yan-Ping
6CalciumCammol/lLi, Yan-Ping
7BoronBµmol/lLi, Yan-PingMeasured
8BoronBµmol/lLi, Yan-PingCorrected
9δ11Bδ11B‰ SRMLi, Yan-PingMeasured
10δ11Bδ11B‰ SRMLi, Yan-PingCorrected
Size:
470 data points

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