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  • 1
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    PANGAEA
    In:  Supplement to: Mottl, Michael J; Druffel, Ellen R M; Hart, Stanley R; Lawrence, James R; Saltzman, Eric S (1985): Chemistry of hot waters sampled from basaltic basement in Hole 504B, Deep Sea Drilling Project Leg 83, Costa Rica Rift. In: Anderson, RN; Honnorez, J; Becker, K; et al. (eds.), Initial Reports of the Deep Sea Drilling Project, Washington (U.S. Govt. Printing Office), 83, 315-328, https://doi.org/10.2973/dsdp.proc.83.115.1985
    Publication Date: 2023-12-11
    Description: Seawater that has been altered by reaction with basaltic basement has been sampled from Deep Sea Drilling Project Hole 504B, located on 5.9-m.y.-old crust on the southern flank of the Costa Rica Rift. Fourteen water samples have been collected on Legs 69, 70, and 83, both before and after renewed drilling on the latter two legs, at temperatures from 69 to 133°C and pressures from 390 to 425 bars. The water sampled prior to renewed drilling on Leg 83 had occupied the hole for nearly 2 yr. since it was last flushed with surface seawater at the end of Leg 70. Despite some contamination by seawater during sampling, the composition of two of these waters has been determined by using nitrate as a tag for the contaminant. Both the 80 and 115°C waters have seawater chlorinity, but have lost considerable Mg, Na, K, sulfate, and 02, and have gained Ca, alkalinity, Si, NH3 and H2S. The loss of sulfate is due to anhydrite precipitation, as indicated by the d34S value of the remaining dissolved sulfate. The 87Sr/86Sr ratio has been lowered to 0.7086 for the 80°C water and 0.7078 for the 115°C water, whereas the Sr concentration is nearly unchanged. The changes in major element composition relative to seawater are also larger for the 115°C water, indicating that the basement formation water at this site probably varies in composition with depth. Based on their direction relative to seawater, the compositional changes for the 80 and 115°C waters do not complement the changes inferred for the altered rocks from Hole 504B, suggesting that the bulk composition of the altered rocks, like their mineralogy, is largely unrelated to the present thermal and alteration regime in the hole. The exact nature of the reacted seawaters cannot be determined yet, however. During its 2 yr. residence in the hole, the surface seawater remaining at the end of Leg 70 would have reacted with the wall rocks and exchanged with their interstitial formation waters by diffusion and possibly convection. How far these processes have proceeded is not yet certain, although calculations suggest that diffusion alone could have largely exchanged the surface seawater for interstitial water. The d18O of the samples is indistinguishable from seawater, however, and the d14C of the 80°C sample is similar to that of ocean bottom water. Although the interpretation of these species is ambiguous, that of tritium should not be. Tritium analyses, which are in progress, should clarify the nature of the reacted seawaters obtained from the hole.
    Keywords: Deep Sea Drilling Project; DSDP
    Type: Dataset
    Format: application/zip, 2 datasets
    Location Call Number Expected Availability
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  • 2
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    Unknown
    PANGAEA
    In:  Supplement to: Zaunbrecher, Laura K; Cobb, Kim M; Beck, J Warren; Charles, Christopher D; Druffel, Ellen R M; Fairbanks, Richard G; Griffin, Sheila; Sayani, Hussein R (2010): Coral records of central tropical Pacific radiocarbon variability during the last millennium. Paleoceanography, 25(4), PA4212, https://doi.org/10.1029/2009PA001788
    Publication Date: 2023-12-11
    Description: The relationship between decadal to centennial changes in ocean circulation and climate is difficult to discern using the sparse and discontinuous instrumental record of climate and, as such, represents a large uncertainty in coupled ocean-atmosphere general circulation models. We present new modern and fossil coral radiocarbon (D14C) records from Palmyra (6°N, 162°W) and Christmas (2°N, 157°W) islands to constrain central tropical Pacific ocean circulation changes during the last millennium. Seasonally to annually resolved coral D14C measurements from the 10th, 12th-17th, and 20th centuries do not contain significant interannual to decadal-scale variations, despite large changes in coral d18O on these timescales. A centennial-scale increase in coral radiocarbon from the Medieval Climate Anomaly (~900-1200 AD) to the Little Ice Age (~1500-1800) can be largely explained by changes in the atmospheric D14C, as determined with a box model of Palmyra mixed layer D14C. However, large 12th century depletions in Palmyra coral D14C may reflect as much as a 100% increase in upwelling rates and/or a significant decrease in the D14C of higher-latitude source waters reaching the equatorial Pacific during this time. SEM photos reveal evidence for minor dissolution and addition of secondary aragonite in the fossil corals, but our results suggest that coral D14C is only compromised after moderate to severe diagenesis for these relatively young fossil corals.
    Type: Dataset
    Format: application/zip, 2 datasets
    Location Call Number Expected Availability
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  • 3
    Publication Date: 2023-12-11
    Keywords: 69-504B; 70-504B; 83-504B; Aliquot value; Deep Sea Drilling Project; Depth, relative; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; Event label; Glomar Challenger; Identification; Leg69; Leg70; Leg83; Method comment; Sample comment; Temperature, in rock/sediment; Temperature, technical; Time in hours; Volume
    Type: Dataset
    Format: text/tab-separated-values, 136 data points
    Location Call Number Expected Availability
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  • 4
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Druffel, Ellen R M; Robinson, Laura F; Griffin, Sheila; Halley, Roberet B; Southon, John R; Adkins, Jess F (2008): Low reservoir ages for the surface ocean from mid-Holocene Florida corals. Paleoceanography, 23(2), PA2209, https://doi.org/10.1029/2007PA001527
    Publication Date: 2023-12-11
    Description: The 14C reservoir age of the surface ocean was determined for two Holocene periods (4908-4955 and 3008-3066 calendar (cal) B.P.) using U/Th-dated corals from Biscayne National Park, Florida, United States. We found that the average reservoir ages for these two time periods (294 ± 33 and 291 ± 27 years, respectively) were lower than the average value between A.D. 1600 and 1900 (390 ± 60 years) from corals. It appears that the surface ocean was closer to isotopic equilibrium with CO2 in the atmosphere during these two time periods than it was during recent times. Seasonal d18O measurements from the younger coral are similar to modern values, suggesting that mixing with open ocean waters was indeed occurring during this coral's lifetime. Likely explanations for the lower reservoir age include increased stratification of the surface ocean or increased D14C values of subsurface waters that mix into the surface. Our results imply that a more correct reservoir age correction for radiocarbon measurements of marine samples in this location from the time periods ~3040 and ~4930 cal years B.P. is ~292 ± 30 years, less than the canonical value of 404 ± 20 years.
    Keywords: AGE; Age, 206Pb/207Pb Lead-Lead; Age, 230Thorium; Age, comment; Age, dated; Age, dated standard deviation; Corrected; DRILL; Drilling/drill rig; Florida shelf; Laboratory code/label; Legare_Anchorage; Measured; Method comment; Percivalia arata; Sample code/label; Thorium-230, standard deviation; Thorium-232; Thorium-232, standard deviation; Thorium-232/Thorium-230, standard deviation; Thorium-232/Thorium-230 ratio; Uranium-238; Uranium-238, standard deviation; δ234 Uranium; δ234 Uranium, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 170 data points
    Location Call Number Expected Availability
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  • 5
    Publication Date: 2024-05-22
    Keywords: 83-504B; AA; Alkalinity, total; Ammonia; Autoanalyzer; Barium; Boron; Caesium; Calcium; Calculated, see reference(s); Chlorinity; Chromatographic; Colorimetry; Comment; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; Flame atomic absorption spectrometry (FAAS); Glomar Challenger; Hydrogen sulfide; ICP-OES, Inductively coupled plasma - optical emission spectrometry; Identification; Leg83; Magnesium; Mass spectrometry; Nitrate and Nitrite; Nitrite; Oxygen; pH; Potassium; Rubidium; Salinity; see reference(s); Silicon; Sodium; Strontium; Strontium-87/Strontium-86 ratio; Strontium-87/Strontium-86 ratio, error; Sulfate; Titration; Titration, Winkler; Δ14C; Δ14C, standard deviation; δ18O; δ34S
    Type: Dataset
    Format: text/tab-separated-values, 458 data points
    Location Call Number Expected Availability
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