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  • American Institute of Physics (AIP)
  • Institute of Electrical and Electronics Engineers (IEEE)
  • PANGAEA
  • 2010-2014
  • 1985-1989
  • 1980-1984  (130)
  • 1970-1974
  • 1965-1969
  • 1925-1929
  • 1982  (130)
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  • 2010-2014
  • 1985-1989
  • 1980-1984  (130)
  • 1970-1974
  • 1965-1969
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  • 101
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    PANGAEA
    Publication Date: 2024-02-10
    Keywords: 68-503A; 68-503B; Aluminium oxide; Atomic absorption spectrometry (AAS); Calcium carbonate; Colorimetry; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Event label; Glomar Challenger; Iron oxide, Fe2O3; Leg68; Magnesium oxide; Manganese oxide; North Pacific/FLANK; Phosphorus pentoxide; Potassium oxide; Sample code/label; see reference(s); Silicon dioxide; Sodium oxide; Strontium/Calcium ratio; Titanium dioxide
    Type: Dataset
    Format: text/tab-separated-values, 263 data points
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  • 102
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    PANGAEA
    In:  Supplement to: Elderfield, Henry; Gieskes, Joris M; Baker, Paul A; Oldfield, R K; Hawkesworth, Chris J; Miller, R (1982): 87Sr/88Sr and 18O/16O ratios, interstitial water chemistry and diagenesis in deep-sea carbonate sediments of the Ontong Java Plateau. Geochimica et Cosmochimica Acta, 46(11), 2259-2268, https://doi.org/10.1016/0016-7037(82)90199-5
    Publication Date: 2024-02-10
    Description: Interstitial waters and sediments from DSDP sites 288 and 289 contain information on the chemistry and diagenesis of carbonate in deep-sea sediments and on the role of volcanic matter alteration processes. Sr/Ca ratios are species dependent in unaltered foraminifera from site 289 and atom ratios (0.0012-0.0016) exceed those predicted by distribution coefficent data (~0.0004). During diagenesis Sr/Ca ratios of carbonates decrease and reach the theoretical distribution at a depth which is identical to the depth of Sr isotopic equilibration, where 87Sr/86Sr ratios of interstitial waters and carbonates converge. Mg/Ca ratios in the carbonates do not increase with depth as found in some other DSDP sites, possibly because of diagenetic re-equilibration with interstitial waters showing decreasing Mg(2+)/Ca(2+) ratios with depth due to Ca input and Mg removal by alteration of volcanic matter. Interstitial 18O/16O ratios increase with depth at site 289 to d18O = 0.67‰ (SMOW), reflecting carbonate recrystallization at elevated temperatures (〉/= 20°C), the first recorded evidence of this effect in interstitial waters. Interstitial Sr2+ concentrations reach high levels, up to 1 mM, chiefly because of carbonate recrystallization. However, 87Sr/86Sr ratios decrease from 0.7092 to less than 0.7078, lower than for contemporaneous sea water, showing that there is a volcanic input of strontium at depth. This volcanic component is recorded in the Sr isotopic composition of recrystallized calcites. Isotopic compositions of the unrecrystallized calcites suggests that the rate of increase of the 87Sr/86Sr ratio of sea water with time has been faster since 3 my ago than in the preceding 13 my.
    Keywords: 30-288; 30-288A; 30-289; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Leg30; South Pacific; South Pacific/PLATEAU
    Type: Dataset
    Format: application/zip, 6 datasets
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  • 103
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    PANGAEA
    In:  Supplement to: Baker, Paul A (1982): Interstitial water chemistry of Deep Sea Drilling Project Site 503 and its implications for submarine hydrothermal circulation. In: Prell, WL; Gardner, JV; et al. (eds.), Initial Reports of the Deep Sea Drilling Project (U.S. Govt. Printing Office), 68, 467-474, https://doi.org/10.2973/dsdp.proc.68.121.1982
    Publication Date: 2024-02-10
    Description: Recent discoveries relating to the circulation of fluids within the oceanic crust include the finding of both important fluxes of elements and isotopes into the oceans by ridge-crest hydrothermal convection and important fluxes of heat out of the oceanic crust by convection at ridge crests and at some distance from ridge crests. In the present chapter, I present isotopic, chemical, and physical data from sediments and pore waters of Deep Sea Drilling Project (DSDP) Holes 503A and 503B. These results are modeled in terms of pore-water diffusion, advection, and production to ascertain the relative contribution of these processes at this location, 7.5 m.y. removed from ridge-crest hydrothermal activity. The observations made here contribute to the understanding of chemical and heat transport in oceanic crust of moderate age.
    Keywords: 68-503A; 68-503B; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Leg68; North Pacific/FLANK
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 104
    Publication Date: 2024-02-10
    Keywords: 68-503A; 68-503B; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Event label; Formation factor; Glomar Challenger; Leg68; North Pacific/FLANK; Porosity; Sample code/label; see reference(s)
    Type: Dataset
    Format: text/tab-separated-values, 65 data points
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  • 105
    Publication Date: 2024-02-03
    Keywords: 64-479; 64-480; Carbon dioxide yield, S3 per unit sediment mass; Deep Sea Drilling Project; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Element analyser CHN, Carlo Erba; Event label; Glomar Challenger; Hydrocarbon yield, S1 per unit sediment mass; Hydrocarbon yield, S2/Carbon dioxide yield, S3; Hydrocarbon yield, S2 per unit sediment mass; Hydrogen/Carbon ratio; Hydrogen index, mass HC, per unit mass total organic carbon; Leg64; North Pacific/Gulf of California/BASIN; Oxygen index, mass CO2, per unit mass total organic carbon; Pyrolysis temperature maximum; Rock eval pyrolysis (Espitalié et al. 1977); Sample code/label; see reference(s); Transformation ratio; Vitrinite reflection
    Type: Dataset
    Format: text/tab-separated-values, 176 data points
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  • 106
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    PANGAEA
    In:  Supplement to: Kaharoeddin, F A; Graves, R S; Bergen, James A; Eggers, Margaret R; Harwood, David M; Humphreys, CL; Goldstein, E H; Jones, S C; Watkins, David K (1982): ARA Islas Orcadas Cruise 1678 Sediment descriptions. Antartic Research Facility, Department of Geology, Florida Sate University, Tallahassee, Florida, Contribution No. 50, 178 pp, https://www.ngdc.noaa.gov/mgg/curator/data/islas_orcadas/io1678/io1678_descriptions.pdf
    Publication Date: 2024-01-20
    Description: The purpose of this volume, the seventh in a series of similar publications (Goodell, 1964, 1965, 1968; Frakes 1971, 1973 ; Cassidy et al., 1977), is to continue a presentation to the research community of sediment core descriptions and attendant data of cored and otherwise obtained sediments retrieved in waters of the Southern Ocean aboard the research vessel, ARA Islas Orcadas (formerly, USNS Eltanin), as a part of the circumpolar survey begun by Eltanin in 1962 (see issue of Antarctic Journal of the United States, Vol. 8, No. 3, 1973). The data presented herein are concerned with the results of coring activities aboard cruise 1678 of Islas Orcadas, the fith and final marine geology coring cruise of this vessel under the terms of the present United States-Argentine agreement. The core descriptions are organised as follows: 1) a brief summary of the coring objectives of the cruise, together with a discussion of core recovery; 2) a table and map of station location data for materials retrieved; 3) a table of tentative age-dates for each piston core; 4) an explanation of the laboratory procedures and descriptive criteria used in the description of the sediments, and 5) lithologic descriptions of the piston and trigger cores, and the piston and trigger core bag samples.
    Keywords: Comment; Deposit type; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Description; Elevation of event; Event label; GC; Gravity corer; Identification; IO1678; IO1678.018-PC; IO1678.019-PC; IO1678.023-PC; IO1678.024-PC; IO1678.026-PC; IO1678.027-PC; IO1678.028-PC; IO1678.036-PC; IO1678.041-PC; IO1678.050-PC; IO1678.055-PC; IO1678.056-PC; IO1678.064-PC; IO1678.066-PC; IO1678.066-TC; IO1678.070-PC; IO1678.070-TC; IO1678.073-PC; IO1678.076-PC; IO1678.083-PC; IO1678.090-TC; IO1678.096-PC; IO1678.108-PC; IO1678.111-PC; IO1678.111-TC; IO1678.116-PC; IO1678.117-PC; Islas Orcadas; Latitude of event; Longitude of event; Method/Device of event; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; PC; Piston corer; Position; Quantity of deposit; Sediment type; Size; Substrate type; Visual description
    Type: Dataset
    Format: text/tab-separated-values, 625 data points
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  • 107
    Publication Date: 2024-05-02
    Keywords: A150/180; A180-73; Calcium carbonate; DEPTH, sediment/rock; Elevation of event; ELT49; ELT49.018-PC; Eltanin; Event label; Lamont-Doherty Earth Observatory, Columbia University; Latitude of event; LDEO; Longitude of event; PC; Piston corer; RC08; RC08-39; RC11; RC1112; RC11-120; RC11-230; RC12; RC12-294; RC17; RC17-69; Robert Conrad; V19; V19-29; V21; V21-146; V22; V22-174; V22-196; V22-38; V28; V28-304; V28-345; V29; V29-179; V30; V30-97; V32; V32-126; V32-128; V34; V34-88; Vema; Y71-06; Y71-06-12; Y7211; Y7211-1; Yaquina
    Type: Dataset
    Format: text/tab-separated-values, 382 data points
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  • 108
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    PANGAEA
    In:  Supplement to: Agwu, Chiori O C; Beug, Hans-Jürgen (1982): Palynological studies of marine sediments off the West African coast. Meteor Forschungsergebnisse, Deutsche Forschungsgemeinschaft, Reihe C Geologie und Geophysik, Gebrüder Bornträger, Berlin, Stuttgart, C36, 1-30
    Publication Date: 2024-06-26
    Description: Seven sediment cores from the cruises of the "Meteor" and "Valdivia" were examined palynologically. The cores were retrieved from the lower continental slope in the area of between 33.5° N and 8° N, off the West African coast. Most of the cores contain sediments from the last Glacial and Interglacial period. In some cases, the Holocene sediments are missing. Some individual cores contain sediments also from earlier Glacial and Interglacial periods. The main reason for making this palynological study was to find out the differences between the vegetation of Glacial and Interglacial periods in those parts of West Africa which at present belong to the Mediterranean zone, the Sahara and the zones of the savannas and tropical forests. In today's Mediterranean vegetation zone at core 33.5° N, forests and deciduous forests in particular, are missing during Glacial conditions. Semi-deserts are found instead of these. In the early isotope stage 1, there is a very significant development of forests which contain evergreen oaks; this is the Mediterranean type of vegestation development. The Sahara type of vegetation development is shown in four cores from between 27° N and 19° N. The differences between Glacial and Interglacial periods are very small. It must be assumed therefore that in this latitudes, both Glacial and Interglacial conditions gave rise to desert generally. The results are in favour of a slightly more arid climate during Glacial and more humid one during Interglacial periods. The southern boundary of the Sahara and the adjacent savannas with grassland and tropical woods were situated more to the south during the Glacial periods than they were during the Interglacial ones. In front of today's savanna belt, it can be seen from the palynological results that there are considerable differences between the vegetation of Glacial and Interglacial periods. The woods are more important in Interglacial periods. During the Glacial periods these are replaced from north to south decreasingly by grassland (savanna and rainforest type of vegetation development). The southern limit of the Sahara during stage 2 was somewhat between 12° N and 8° N which is between 1.5 and 5 degrees in latitude further south than it i s today. Not only do these differences in climate and vegetation apply to the maximum of the last Glacial and for the Holocene, but they apparently apply also to the older Glacial and Interglacial periods, where they have been found in the profiles. The North African deset belt can be said to have expanded during Glacial times both towards the north and towards the south. All the available evidence of this study indicates that the grass land or the semi-desert of the Southern Europe cam einto connection with those of the N Africa; there could not have been any forest zone between them. The present study was also a good opportunity for investigating some of the basic marine palynological problems. The very well known overrepresentation of pollen grains of the genus Pinus in marine sediments can be traced as fa as 21° N. The present southern limit for the genus Pinus is on the Canaries and on the African continent as approximately 31° N. Highest values of Ephedra pollen grains even occur south of the main area of the present distribution of that genus. These does not seem to be any satisfactory explanation for this. In general, it would appear that the transport of pollen grains from the north is more important than transport from the south. The results so far, indicate strongly that further palynological studies are necessary. These should concentrate particularly on cores from between 33° N and 27° N as well as between 17° N and 10° N. It would also be useful to have a more detailed examination of sediments from the last Intergalcial period (substage 5 e). Absolute pollen counts and more general examination of surface samples would be desirable. Surface samples should be taken from the shelf down to the bottom of the continental slope in different latitudes.
    Keywords: ARKTIS 1993; East Atlantic; GIK12309-3; GIK12310-4; GIK12329-6; GIK12392-1; KAL; Kasten corer; M12392-1; M25; M30; M30_184; M8_017-2; M8017B; Meteor (1964); PC; Piston corer; South Atlantic Ocean; SPC; Sphincter corer; VA132; VA132-18-1; Valdivia (1961); Westafrika 1973
    Type: Dataset
    Format: application/zip, 7 datasets
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  • 109
    Publication Date: 2024-06-26
    Keywords: Age, 14C AMS; Age, comment; Age, dated; Age, dated, error to older; Age, dated, error to younger; BC; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Eastern Equatorial Pacific; Event label; Melville; PLDS-066BX; PLDS-068BX; PLDS-070BX; PLDS-072BX; PLDS-074BX; PLDS-077BX; PLDS-079BX; PLDS-081BX; PLDS-083BX; PLDS-085BX; PLDS-089BX; PLDS-090BX; PLDS-092BX; PLDS-107BX; PLDS-3; Pleiades
    Type: Dataset
    Format: text/tab-separated-values, 276 data points
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  • 110
    Publication Date: 2024-06-26
    Keywords: BC; Box corer; Calcium carbonate; Density, dry bulk; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Eastern Equatorial Pacific; Elevation of event; Event label; Latitude of event; Longitude of event; Melville; PLDS-066BX; PLDS-068BX; PLDS-070BX; PLDS-072BX; PLDS-074BX; PLDS-077BX; PLDS-079BX; PLDS-081BX; PLDS-083BX; PLDS-085BX; PLDS-089BX; PLDS-090BX; PLDS-092BX; PLDS-107BX; PLDS-3; Pleiades; Porosity; Sand; Silt; Size fraction 〈 0.002 mm, clay
    Type: Dataset
    Format: text/tab-separated-values, 335 data points
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  • 111
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    PANGAEA
    In:  Supplement to: Commeau, J A; Manheim, Frank T (1982): Testing the variation of Fe-Mn concentration as a function of preparation treatment for phosphate-manganese nodules from the Blake Plateau. (Expedition GYRE 82-11), Cruise Note. USGS Woods Hole Coastal and Marine Science Center
    Publication Date: 2024-06-26
    Description: Sample preparation technique is critical for valid chemical analyses. A main source of error comes from the fact that the great specific surface area of crusts or nodules enhances their tendency to retain or attract hygroscopic moisture. Variable treatment of this moisture can in extreme cases lead to analytical value differences as great as 40-50 %. In order to quantify these influences, samples of ferromanganese oxide-phosphorite pavement from the Blake Plateau have been subjected to various drying techniques before analysis using X-ray fluorescence.
    Keywords: 82034 G-11-82-SE; Blake Plateau, Atlantic Ocean; C6-Sta3; C9-Sta14; Calcium; D10-Sta18 - Patio Block; D11-Sta19 - Patio Block; D12-Sta23; D14-Sta24; D15-Sta25 - Southwest Blake Plateau Triple Junctio; D16-Sta26 - South Blake Plateau; D17-Sta27; D1-Sta2A; D2-Sta6; D3-Sta7; D4-Sta7; D5-Sta8; D8-Sta15; D9-Sta17; Date/Time of event; Description; Dredge, rock; DRG_R; Elevation of event; Event label; GC; Gravity corer; Gyre; GYRE82-11; GYRE82-11-C06; GYRE82-11-C09; GYRE82-11-D01; GYRE82-11-D02; GYRE82-11-D03; GYRE82-11-D04; GYRE82-11-D05; GYRE82-11-D08; GYRE82-11-D09; GYRE82-11-D10; GYRE82-11-D11; GYRE82-11-D12; GYRE82-11-D14; GYRE82-11-D15; GYRE82-11-D16; GYRE82-11-D17; Heated at 500°C for one hour; Ignited at 1000°C for one hour; Iron; Latitude of event; Longitude of event; Loss on drying; Loss on ignition; Manganese; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Oven-dry, heated at 110°C overnight; Sample ID; X-ray fluorescence (XRF)
    Type: Dataset
    Format: text/tab-separated-values, 128 data points
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  • 112
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    PANGAEA
    In:  Supplement to: USGS Woods Hole Coastal and Marine Science Center (1982): GYRE 82-11 Expedition, Sample Log, R/V Gyre. hdl:10013/epic.46138.d014, 49 pp, http://cotuit.er.usgs.gov/Data/1982-034-FA/NL/001/04/82034sm1.pdf
    Publication Date: 2024-06-26
    Description: The purpose of the expedition was to test new techniques to determine thickness, distribution and quality of mineral deposits on the Blake Plateau with special reference to manganese nodules and manganese-phosphate pavements.
    Keywords: 82034 G-11-82-SE; Blake Plateau, Atlantic Ocean; C11-Sta20 - Patio Block; C6-Sta3; C9-Sta14; D10-Sta18 - Patio Block; D11-Sta19 - Patio Block; D12-Sta23; D14-Sta24; D15-Sta25 - Southwest Blake Plateau Triple Junctio; D16-Sta26 - South Blake Plateau; D17-Sta27; D1-Sta2A; D2-Sta6; D3-Sta7; D4-Sta7; D5-Sta8; D8-Sta15; D9-Sta17; Date/Time of event; Deposit type; DEPTH, sediment/rock; Description; Dredge, rock; DRG_R; Elevation of event; Event label; File name; GC; Gravity corer; Gyre; GYRE82-11; GYRE82-11-C06; GYRE82-11-C09; GYRE82-11-C11; GYRE82-11-D01; GYRE82-11-D02; GYRE82-11-D03; GYRE82-11-D04; GYRE82-11-D05; GYRE82-11-D08; GYRE82-11-D09; GYRE82-11-D10; GYRE82-11-D11; GYRE82-11-D12; GYRE82-11-D14; GYRE82-11-D15; GYRE82-11-D16; GYRE82-11-D17; Latitude of event; Longitude of event; Method/Device of event; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; PC; Piston corer; Position; Quantity of deposit; Sample ID; Sediment type; Size; Substrate type; Uniform resource locator/link to image
    Type: Dataset
    Format: text/tab-separated-values, 191 data points
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  • 113
    Publication Date: 2024-06-26
    Keywords: ADEPD; Atlantic Data Base for Exchange Processes at the Deep Sea Floor; Auftrieb 75; Auftrieb77; BC; Box corer; Cape Blanc; Cape Peña Grande; Chlorophyll pigment equivalents; DEPTH, sediment/rock; Elevation of event; Event label; Fluorometric assay of acetone extraction (GF/F filtered); Latitude of event; Longitude of event; M36; M36_75-1a; M36_75-1b; M36_75-1c; M36_75-1d; M36_75-2a; M36_75-2b; M36_75-2c; M36_75-2d; M36_75-2e; M36_75-2f; M36_75-2g; M36_75-2h; M44; M44_77-1a; M44_77-1b; M44_77-1c; M44_77-1d; M44_77-1e; M44_77-1f; M44_77-1g; M44_77-1h; M44_77-2a; M44_77-2b; M44_77-2c; M44_77-2d; M44_77-2e; Meteor (1964)
    Type: Dataset
    Format: text/tab-separated-values, 25 data points
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  • 114
    Publication Date: 2024-06-26
    Keywords: ADEPD; Atlantic Data Base for Exchange Processes at the Deep Sea Floor; Auftrieb 72; BCR; Box corer (Reineck); DEPTH, sediment/rock; Elevation of event; Event label; LATITUDE; LONGITUDE; M26; M26_168; M26_169; M26_170; M26_171; M26_172; M26_173; M26_174; M26_175; M26_176; M26_178; M26_179; M26_180; M26_181; M26_182; M26_183; M26_184; M26_185; Meiofauna, abundance of metazoa; Meteor (1964); NW-Africa, Canary Basin; NW-Africa, Cape Verde Abyssal Plain; van Veen Grab; VGRAB
    Type: Dataset
    Format: text/tab-separated-values, 17 data points
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  • 115
    Publication Date: 2024-04-19
    Keywords: AII76-17; Alpha spectrometry; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; GC; Gravity corer; Ion-exchange-chromatography; Lead-210; Lead-210, standard deviation; Lead-210 excess; Lead-210 excess, standard deviation; Radium-226; Radium-226, standard deviation; South Atlantic
    Type: Dataset
    Format: text/tab-separated-values, 40 data points
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  • 116
    Publication Date: 2024-04-19
    Keywords: Alpha spectrometry; B52-39; BC; Box corer; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Equatorial Pacific; Ion-exchange-chromatography; Lead-210; Lead-210, standard deviation; Lead-210 excess; Lead-210 excess, standard deviation; Radium-226; Radium-226, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 24 data points
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  • 117
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    In:  Supplement to: DeMaster, David J; Cochran, James R (1982): Particle mixing rates in deep-sea sediments determined from excess 210Pb and 32Si profiles. Earth and Planetary Science Letters, 61(2), 257-271, https://doi.org/10.1016/0012-821X(82)90057-7
    Publication Date: 2024-04-19
    Description: Particle mixing rates have been determined for 5 South Atlantic/Antarctic and 3 equatorial Pacific deep-sea cores using excess 210Pb and 32Si measurements. Radionuclide profiles from these siliceous, calcareous, and clay-rich sediments have been evaluated using a steady state vertical advection diffusion model. In Antarctic siliceous sediments210Pb mixing coefficients (0.04-0.16 cm**2/y) are in reasonable agreement with the 32Si mixing coefficient (0.2 or 0.4 cm**2/y, depending on 32Si half-life). In an equatorial Pacific sediment core, however, the 210Pb mixing coefficient (0.22 cm**2/y) is 3-7 times greater than the 32Si mixing coefficient (0.03 or 0.07 cm**2/y). The difference in 210Pb and 32Si mixing rates in the Pacific sediments results from: (1) non-steady state mixing and differences in characteristic time and depth scales of the two radionuclides, (2) preferential mixing of fine-grained clay particles containing most of the 210Pb activity relative to coarser particles (large radiolaria) containing the 32Si activity, or (3) the supply of 222Rn from the bottom of manganese nodules which increases the measured excess 210Pb activity (relative to 226Ra) at depth and artificially increases the 210Pb mixing coefficient. Based on 32Si data and pore water silica profiles, dissolution of biogenic silica in the sediment column appears to have a minor effect on the 32Si profile in the mixed layer. Deep-sea particle mixing rates reported in this study and the literature do not correlate with sediment type, sediment accumulation rate, or surface productivity. Based on differences in mixing rate among three Antarctic cores collected within 50 km of each other, local variability in the intensity of deep-sea mixing appears to be as important as regional differences in sediment properties.
    Keywords: A47-16; AII76-12; AII76-16; AII76-17; AII76-18; AII76-3; B52-39; BC; Box corer; C57-58; Equatorial Pacific; GC; Gravity corer; South Atlantic
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    Format: application/zip, 10 datasets
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  • 118
    Publication Date: 2024-04-19
    Keywords: AII76-18; Alpha spectrometry; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; GC; Gravity corer; Ion-exchange-chromatography; Lead-210; Lead-210, standard deviation; Lead-210 excess; Lead-210 excess, standard deviation; Radium-226; Radium-226, standard deviation; South Atlantic
    Type: Dataset
    Format: text/tab-separated-values, 40 data points
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  • 119
    Publication Date: 2024-04-19
    Keywords: AII76-12; Alpha spectrometry; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; GC; Gravity corer; Ion-exchange-chromatography; Lead-210; Lead-210, standard deviation; Lead-210 excess; Lead-210 excess, standard deviation; Radium-226; Radium-226, standard deviation; South Atlantic
    Type: Dataset
    Format: text/tab-separated-values, 40 data points
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  • 120
    Publication Date: 2024-04-19
    Keywords: AII76-3; Alpha spectrometry; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; GC; Gravity corer; Ion-exchange-chromatography; Lead-210; Lead-210, standard deviation; Lead-210 excess; Lead-210 excess, standard deviation; Radium-226; Radium-226, standard deviation; South Atlantic
    Type: Dataset
    Format: text/tab-separated-values, 40 data points
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  • 121
    Publication Date: 2024-04-19
    Keywords: Alpha spectrometry; BC; Box corer; C57-58; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Equatorial Pacific; Ion-exchange-chromatography; Lead-210; Lead-210, standard deviation; Lead-210 excess; Lead-210 excess, standard deviation; Radium-226; Radium-226, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 32 data points
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  • 122
    Publication Date: 2024-06-26
    Keywords: Acacia/Parkia; Acanthaceae; Acanthus; Acer; Alchornea; Alnus; Antidesma-type; ARKTIS 1993; Artemisia (Africa); Betula; Borreria; Brassicaceae; Burseraceae; Butyrospermum; Caesalpinioideae; Calligonum; Canthium; Caryophyllaceae, Chenopodiaceae, Amaranthaceae; Cassia-type; Celtis; Centaurea scabiosa-type (Africa); Combretaceae/Melastomataceae; Compositae Liguliflorae; Compositae Tubuliflorae; Corylus; Counting, palynology; Cyperaceae undifferentiated; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Elaeis guineensis; Ephedra distachya-type; Ephedra fragilis-type; Erica (Africa); Eugenia/Syzygium; Euphorbiaceae undifferentiated; Euphorbia-type; Gaillonia-type; Gymnosporia; Haloragaceae; Helianthemum; Hygrophila-type; Hymenocardia; Hyphaene; Ilex cf.. mitis; Indeterminata/varia; Isoberlinia-type; Isoetes; Juniperus (Africa); Lannea; Liliaceae undifferentiated; Linaceae; Maerua-type; Malvaceae (Africa); Manilkara; Melia; Mendoncia; Mitracarpus; Moltkia; Morelia senegalensis; Myrica; Neurada; Ochnaceae undifferentiated; Papilionoideae; Paullinia; PC; Periploca; Petersianthus macrocarpus; Picconia; Pinus; Pistacia; Piston corer; Plantago; Poaceae undifferentiated; Pollen, total; Polycarpaea-type; Polygala-type; Protea; Ranunculaceae; Rhizophora harrisonii; Rhizophora mangle; Rosaceae (Africa); Rotala; Rubiaceae undifferentiated; Rumex; Rutaceae; Sanguisorba minor; Sapindaceae; Scrophulariaceae (Africa); Sebaea; Sterculia-type; Symphonia globulifera; Syzygium-type; Tribulus; Typha angustifolia-type; Typha latifolia; Ulmaceae; Ulmus; Umbelliferae; Urticaceae; VA132; VA132-18-1; Valdivia (1961); Vitaceae (Africa)
    Type: Dataset
    Format: text/tab-separated-values, 2784 data points
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  • 123
    Publication Date: 2024-07-01
    Keywords: ANTIPODE; ANTP03MV-050D; ANTP-050D; BC; Box corer; Date/Time of event; Deposit type; DEPTH, sediment/rock; Description; DOMES Site C, Pacific Ocean; Dredge; DRG; DSV75-NP58; DVI_Survey; Elevation of event; Event label; FFGR; Free-fall grab; KEN70-NP17; KEN70-NP22; KEN71-NP11; KEN72-SP9; Latitude of event; Longitude of event; Melville; Mn-74-01-002-FFG-004; Mn-74-01-003-FFG-007; Mn-74-01 IODE; Moana Wave; MW7401; MW7401-02G04; MW7401-03G07; NOAA and MMS Marine Minerals Geochemical Database; NOAA-MMS; Northwestern Pacific Ocean; Oceanographer; Pacific Ocean; Position; Prospector; Quantity of deposit; RP8OC76; RP-8-OC-76; RP8OC76-11-16; RP8OC76-5-10; Sample code/label; Sample ID; Size; Substrate type; Uniform resource locator/link to image
    Type: Dataset
    Format: text/tab-separated-values, 91 data points
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  • 124
    Publication Date: 2024-07-01
    Description: A six-fold increase in the rate of accumulation of Al in north and central Atlantic and Pacific Ocean sediments indicates vastly increased denudation of the continents during the past 15 Ma. The increase is more apparent in hemipelagic than pelagic sites, demonstrating widely distributed local controls. Similarities in the rate of increase in the Atlantic and Pacific show that tectonic elevation is not responsible for the difference in sedimentation rate. Also, similarities in the difference at sites of low and high latitude suggest that glaciation is not the most significant source. A lack of correspondence between sedimentation rates and Vail's sea-level curve similarly rule out that effect. The conclusion drawn here is that worldwide climatic deterioration during the late Tertiary is the explanation for the striking increase in detrital sedimentation in the World ocean.
    Keywords: 10-94; 11-106; 12-116; 12-118; 12-119; 14-142; 15-149; 16-158; 18-173; 18-178; 19-183; 19-192; 21-206; 21-210; 22-213; 22-214; 22-218; 24-231; 24-236; 24-238; 25-241; 26-250; 28-266; 29-278; 30-289; 31-292; 31-296; 31-297; 32-310; 34-321; 38-338; 38-341; 39-354; 40-362; 41-366; 4-29; 4-30; 43-382; 5-34; 7-62; Accumulation rate, aluminium; Antarctic Ocean/BASIN; Antarctic Ocean/RIDGE; Caribbean Sea/BASIN; Caribbean Sea/RIDGE; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Event label; Glomar Challenger; Gulf of Mexico/SCARP; Indian Ocean//BASIN; Indian Ocean//FAN; Indian Ocean//FRACTURE ZONE; Indian Ocean//RIDGE; Indian Ocean/Gulf of Aden/BASIN; Latitude of event; Leg10; Leg11; Leg12; Leg14; Leg15; Leg16; Leg18; Leg19; Leg21; Leg22; Leg24; Leg25; Leg26; Leg28; Leg29; Leg30; Leg31; Leg32; Leg34; Leg38; Leg39; Leg4; Leg40; Leg41; Leg43; Leg5; Leg7; Longitude of event; North Atlantic/BASIN; North Atlantic/CONT RISE; North Atlantic/Norwegian Sea; North Atlantic/Norwegian Sea/PLATEAU; North Atlantic/PLAIN; North Atlantic/SEAMOUNT; North Pacific/CONT RISE; North Pacific/GUYOT; North Pacific/Philippine Sea/BASIN; North Pacific/Philippine Sea/CONT RISE; North Pacific/Philippine Sea/RIDGE; North Pacific/PLAIN; North Pacific/RIDGE; North Pacific/SLOPE; Number of observations; Ratio; South Atlantic/RIDGE; South Pacific/BASIN; South Pacific/Coral Sea/BASIN; South Pacific/PLATEAU; South Pacific/Tasman Sea/BASIN
    Type: Dataset
    Format: text/tab-separated-values, 303 data points
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  • 125
    Publication Date: 2024-07-01
    Keywords: Alkalinity, total; Bottle number; Campaign of event; Carbon dioxide; Cast number; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Event label; Gas chromatography; Gear; Geochemical Ocean Sections Study; GEOSECS; GEOSECS_Pacific_1; GEOSECS_Pacific_10; GEOSECS_Pacific_2; GEOSECS_Pacific_3; GEOSECS_Pacific_4; GEOSECS_Pacific_5; GEOSECS_Pacific_6; GEOSECS_Pacific_7; GEOSECS_Pacific_8; GEOSECS_Pacific_9; GEOSECS201; GEOSECS217; GEOSECS218; GEOSECS219; GEOSECS220; GEOSECS221; GEOSECS222; GEOSECS223; GEOSECS224; GEOSECS225; GEOSECS226; GEOSECS227; GEOSECS228; GEOSECS229; GEOSECS230; GEOSECS231; GEOSECS232; GEOSECS233; GEOSECS234; GEOSECS235; GEOSECS237; GEOSECS238; GEOSECS239; GEOSECS240; GEOSECS241; GEOSECS243; GEOSECS244; GEOSECS245; GEOSECS246; GEOSECS247; GEOSECS248; GEOSECS249; GEOSECS250; GEOSECS251; GEOSECS252; GEOSECS253; GEOSECS254; GEOSECS255; GEOSECS256; GEOSECS257; GEOSECS258; GEOSECS259; GEOSECS260; GEOSECS261; GEOSECS262; GEOSECS263; GEOSECS265; GEOSECS266; GEOSECS267; GEOSECS268; GEOSECS269; GEOSECS270; GEOSECS271; GEOSECS273; GEOSECS274; GEOSECS276; GEOSECS277; GEOSECS278; GEOSECS279; GEOSECS280; GEOSECS281; GEOSECS282; GEOSECS283; GEOSECS284; GEOSECS285; GEOSECS286; GEOSECS287; GEOSECS288; GEOSECS289; GEOSECS290; GEOSECS291; GEOSECS292; GEOSECS293; GEOSECS294; GEOSECS295; GEOSECS296; GEOSECS297; GEOSECS298; GEOSECS299; GEOSECS300; GEOSECS301; GEOSECS302; GEOSECS303; GEOSECS304; GEOSECS305; GEOSECS306; GEOSECS308; GEOSECS309; GEOSECS310; GEOSECS311; GEOSECS312; GEOSECS313; GEOSECS314; GEOSECS315; GEOSECS316; GEOSECS317; GEOSECS318; GEOSECS319; GEOSECS320; GEOSECS323; GEOSECS324; GEOSECS325; GEOSECS326; GEOSECS327; GEOSECS328; GEOSECS329; GEOSECS330; GEOSECS331; GEOSECS332; GEOSECS333; GEOSECS334; GEOSECS335; GEOSECS336; GEOSECS337; GEOSECS338; GEOSECS339; GEOSECS340; GEOSECS341; GEOSECS342; GEOSECS343; GEOSECS344; GEOSECS345; GEOSECS346; GEOSECS347; Latitude of event; Leg 1; Leg 10; Leg 2; Leg 3; Leg 4; Leg 5; Leg 6; Leg 7; Leg 8; Leg 9; Longitude of event; Melville; Pacific; Pressure, water; Salinity; Temperature, water; Titration
    Type: Dataset
    Format: text/tab-separated-values, 26255 data points
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  • 126
    Publication Date: 2024-07-01
    Keywords: Bottle number; Campaign of event; Cast number; Comment; CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Elevation of event; Event label; Gear; Geochemical Ocean Sections Study; GEOSECS; GEOSECS_Pacific_1; GEOSECS_Pacific_10; GEOSECS_Pacific_2; GEOSECS_Pacific_3; GEOSECS_Pacific_4; GEOSECS_Pacific_5; GEOSECS_Pacific_6; GEOSECS_Pacific_7; GEOSECS_Pacific_8; GEOSECS_Pacific_9; GEOSECS201; GEOSECS202; GEOSECS204; GEOSECS205; GEOSECS206; GEOSECS207; GEOSECS208; GEOSECS209; GEOSECS210; GEOSECS211; GEOSECS212; GEOSECS213; GEOSECS214; GEOSECS215; GEOSECS216; GEOSECS217; GEOSECS218; GEOSECS219; GEOSECS220; GEOSECS221; GEOSECS222; GEOSECS223; GEOSECS224; GEOSECS225; GEOSECS226; GEOSECS227; GEOSECS228; GEOSECS229; GEOSECS230; GEOSECS231; GEOSECS232; GEOSECS233; GEOSECS234; GEOSECS235; GEOSECS236; GEOSECS237; GEOSECS238; GEOSECS239; GEOSECS240; GEOSECS241; GEOSECS242; GEOSECS243; GEOSECS244; GEOSECS245; GEOSECS246; GEOSECS247; GEOSECS248; GEOSECS249; GEOSECS250; GEOSECS251; GEOSECS252; GEOSECS253; GEOSECS254; GEOSECS255; GEOSECS256; GEOSECS257; GEOSECS258; GEOSECS259; GEOSECS260; GEOSECS261; GEOSECS262; GEOSECS263; GEOSECS264; GEOSECS265; GEOSECS266; GEOSECS267; GEOSECS268; GEOSECS269; GEOSECS270; GEOSECS271; GEOSECS272; GEOSECS273; GEOSECS274; GEOSECS275; GEOSECS276; GEOSECS277; GEOSECS278; GEOSECS279; GEOSECS280; GEOSECS281; GEOSECS282; GEOSECS283; GEOSECS284; GEOSECS285; GEOSECS286; GEOSECS287; GEOSECS288; GEOSECS289; GEOSECS290; GEOSECS291; GEOSECS292; GEOSECS293; GEOSECS294; GEOSECS295; GEOSECS296; GEOSECS297; GEOSECS298; GEOSECS299; GEOSECS300; GEOSECS301; GEOSECS302; GEOSECS303; GEOSECS304; GEOSECS305; GEOSECS306; GEOSECS308; GEOSECS309; GEOSECS310; GEOSECS311; GEOSECS312; GEOSECS313; GEOSECS314; GEOSECS315; GEOSECS316; GEOSECS317; GEOSECS318; GEOSECS319; GEOSECS320; GEOSECS321; GEOSECS322; GEOSECS323; GEOSECS324; GEOSECS325; GEOSECS326; GEOSECS327; GEOSECS328; GEOSECS329; GEOSECS330; GEOSECS331; GEOSECS332; GEOSECS333; GEOSECS334; GEOSECS335; GEOSECS336; GEOSECS337; GEOSECS338; GEOSECS339; GEOSECS340; GEOSECS341; GEOSECS342; GEOSECS343; GEOSECS344; GEOSECS345; GEOSECS346; GEOSECS347; Latitude of event; Leg 1; Leg 10; Leg 2; Leg 3; Leg 4; Leg 5; Leg 6; Leg 7; Leg 8; Leg 9; Longitude of event; Melville; Nitrate; Oxygen; Pacific; Phosphate; Pressure, water; Salinity; Silicate; Temperature, water
    Type: Dataset
    Format: text/tab-separated-values, 73556 data points
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  • 127
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    Unknown
    PANGAEA
    In:  EPIC3Bremerhaven, PANGAEA
    Publication Date: 2015-02-18
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
    Format: application/pdf
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  • 128
    facet.materialart.
    Unknown
    PANGAEA
    In:  EPIC3Bremerhaven, PANGAEA
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
    Format: image/jpeg
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  • 129
    facet.materialart.
    Unknown
    PANGAEA
    In:  EPIC3Bremerhaven, PANGAEA
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
    Format: application/pdf
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  • 130
    facet.materialart.
    Unknown
    PANGAEA
    In:  EPIC3Woods Hole, PANGAEA
    Publication Date: 2015-10-23
    Repository Name: EPIC Alfred Wegener Institut
    Type: PANGAEA Documentation , notRev
    Format: application/pdf
    Format: application/pdf
    Format: image/jpeg
    Format: image/jpeg
    Format: image/jpeg
    Format: image/jpeg
    Format: image/jpeg
    Format: image/jpeg
    Format: image/jpeg
    Format: image/jpeg
    Format: image/jpeg
    Format: image/jpeg
    Format: image/jpeg
    Format: image/jpeg
    Format: application/pdf
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