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  • 1
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    PANGAEA
    In:  Pacific Oceanology Institute, Far East Branch of Russian Academy of Sciences
    Publication Date: 2023-05-12
    Keywords: 2786; 2798; 2799; 2804; 2806; Amirante Arc, Western Indian Ocean; Archive of Ocean Data; ARCOD; Calcite; Chlorite; Counting, Stereo Microscope; Dredge; DRG; Elevation of event; Elevation of event 2; Event label; Fluorite; Latitude of event; Longitude of event; Method/Device of event; Mica; PB-33; PB-33-2786; PB-33-2798; PB-33-2799; PB-33-2804; PB-33-2806; Plagioclase; Professor Bogorov; Quartz; Rock fragments; Sample code/label; Serpentine; Smectite; Zeolite
    Type: Dataset
    Format: text/tab-separated-values, 66 data points
    Location Call Number Limitation Availability
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  • 2
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    PANGAEA
    In:  Pacific Oceanology Institute, Far East Branch of Russian Academy of Sciences
    Publication Date: 2023-05-12
    Keywords: 2798; 2804; 2806; Aluminium oxide; Amirante Arc, Western Indian Ocean; Archive of Ocean Data; ARCOD; Calcium oxide; Calculated; Chromium(III) oxide; Dredge; DRG; Elevation of event; Elevation of event 2; Event label; Iron oxide, FeO; Latitude of event; Longitude of event; Magnesium oxide; Manganese oxide; Method/Device of event; Microprobe; PB-33; PB-33-2798; PB-33-2804; PB-33-2806; Potassium oxide; Professor Bogorov; Sample code/label; Silicon dioxide; Sodium oxide; Sum; Titanium dioxide
    Type: Dataset
    Format: text/tab-separated-values, 89 data points
    Location Call Number Limitation Availability
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  • 3
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    PANGAEA
    In:  Pacific Oceanology Institute, Far East Branch of Russian Academy of Sciences
    Publication Date: 2023-05-12
    Keywords: 2804; 2807; Aluminium oxide; Amirante Arc, Western Indian Ocean; Archive of Ocean Data; ARCOD; Calcium oxide; Calculated; Chromium(III) oxide; Dredge; DRG; Elevation of event; Elevation of event 2; Event label; Iron oxide, FeO; Latitude of event; Longitude of event; Magnesium oxide; Manganese oxide; Method/Device of event; Microprobe; Nickel oxide; PB-33; PB-33-2804; PB-33-2807; Potassium oxide; Professor Bogorov; Sample code/label; Silicon dioxide; Sodium oxide; Sum; Titanium dioxide
    Type: Dataset
    Format: text/tab-separated-values, 110 data points
    Location Call Number Limitation Availability
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  • 4
    Publication Date: 2023-06-27
    Keywords: Akademik M.A. Lavrentiev; Archive of Ocean Data; ARCOD; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Derugin Basin; Elevation of event; Event label; GC; Gravity corer; Gravity corer (Russian type); KOL; KOMEX; KOMEX I; KOMEX II; Latitude of event; Longitude of event; LV28; LV28-37-1; LV29-104-2; LV29-2; Mass spectrometry; Minerals; Piston corer (Kiel type); RGC; Sakhalin shelf and slope; Sample position; Sea of Okhotsk; SO178; SO178-13-4; SO178-78-1; Sonne; δ13C; δ18O; δ34S
    Type: Dataset
    Format: text/tab-separated-values, 53 data points
    Location Call Number Limitation Availability
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  • 5
    Publication Date: 2023-06-27
    Keywords: Akademik M.A. Lavrentiev; Aluminium; Archive of Ocean Data; ARCOD; atomic-emission spectrometer; Barium; Calcium; Cerium; Chromium; Cobalt; Comment; Copper; Derugin Basin; Elevation of event; Event label; Gallium; Gravity corer (Russian type); Iron; KOL; KOMEX; KOMEX II; Lanthanum; Latitude of event; Lead; Lithium; Lithology/composition/facies; Longitude of event; LV29-103-2; LV29-104-2; LV29-2; Magnesium; Manganese; Molybdenum; Neodymium; Nickel; Niobium; Number of observations; Phosphorus; Piston corer (Kiel type); Potassium; RGC; Rubidium; Samarium; Scandium; SO178; SO178-78-1; Sodium; Sonne; Strontium; Thorium; Titanium; Uranium; Vanadium; Ytterbium; Yttrium; Zinc; Zirconium
    Type: Dataset
    Format: text/tab-separated-values, 555 data points
    Location Call Number Limitation Availability
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  • 6
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    PANGAEA
    In:  Supplement to: Derkachev, A N; Nikolaeva, N A; Mozherovsky, A V; Grigorieva, T N; Ivanova, E D; Pletnev, S P; Barinov, N N; Chubarov, Valerii M (2007): Mineralogical and geochemical indicators of anoxic sedimentation conditions in local depressions within the Sea of Okhotsk in Late Pleistocene-Holocene. Tikhookeanskaya Geologiya, No 3, 3-33
    Publication Date: 2023-06-27
    Description: The paper reports specific mineralogical and geochemical characteristics of deposits from local depressions of the Derugin Basin. They were formed in an environment with periodic changes from oxic to anoxic conditions and show evidence for presence of hydrogen sulfide in bottom waters. Deposits of this type can be considered as a modern model for ancient ore-bearing black shale associations. Compared with typical metalliferous black shale sequences, which are characterized by high contents of organic matter, the sediments described here are depleted in elements of the organophilic association (Mo, Ni, Cu, Zn, V, and U), but have higher Mn contents.
    Keywords: Akademik M.A. Lavrentiev; Archive of Ocean Data; ARCOD; Derugin Basin; GC; Gravity corer; Gravity corer (Russian type); KOL; KOMEX; KOMEX I; KOMEX II; LV28; LV28-37-1; LV29-103-2; LV29-104-2; LV29-2; Piston corer (Kiel type); RGC; Sakhalin shelf and slope; Sea of Okhotsk; SO178; SO178-13-4; SO178-78-1; Sonne
    Type: Dataset
    Format: application/zip, 3 datasets
    Location Call Number Limitation Availability
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  • 7
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    PANGAEA
    In:  Pacific Oceanology Institute, Far East Branch of Russian Academy of Sciences | Supplement to: Derkachev, A N; Nikolaeva, N A (1997): Assemblages of heavy minerals in sediments from the western part of the South China Sea. Tikhookeanskaya Geologiya (Pacific Geology), 16(4), 17-35
    Publication Date: 2023-07-07
    Description: Distribution of mineral assemblages in sediments of both shelf and continental slope of Vietnam is under consideration. Mineral provinces are recognized and their characteristics are given. Principal regularities of formation of mineral composition in marine sediments (with their supply provinces mainly located in the subequatorial belt) are shown on the basis of multivariate statistics methods (correlation, factor, cluster, regression and discriminant analyses). It is established that influence of climate on formation of the mineral assemblages is noticeable, but not determining.
    Keywords: Actinolite; Amphibole, alkaline; Anatase; Apatite; Archive of Ocean Data; ARCOD; Calculated; Carbonates; Chlorite; Clinopyroxene; Counting 50-100 µm fraction; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; DN-97-15/18; DN-97-15/19; DN-97-15/20; DN-97-15/22; DN-97-15/23; DN-97-15/24; DN-97-15/25; DN-97-2004; DN-97-2005; DN-97-2006; DN-97-2008; DN-97-2012; DN-97-2015; DN-97-2025; DN-97-2026; DN-97-2029; DN-97-2033; DN-97-2034; DN-97-2036; DN-97-2036A/5; DN-97-81/19; DN-97-83100; DN-97-83102; DN-97-83104; DN-97-8313; DN-97-8314; DN-97-8329; DN-97-8330; DN-97-8331; DN-97-8332; DN-97-8333; DN-97-8337; DN-97-8340; DN-97-8344; DN-97-8345; DN-97-8346; DN-97-8347; DN-97-8348; DN-97-8351; DN-97-8353; DN-97-8360; DN-97-8364; DN-97-8368; DN-97-8369; DN-97-8370; DN-97-8371; DN-97-8372; DN-97-8373; DN-97-8374; DN-97-8375; DN-97-8376; DN-97-8381; DN-97-8384; DN-97-8386; DN-97-8387; DN-97-8390; DN-97-8399; DN-97-87/1; DN-97-87/10; DN-97-87/11; DN-97-87/13; DN-97-87/14; DN-97-87/15; DN-97-87/16; DN-97-87/17; DN-97-87/18; DN-97-87/19; DN-97-87/2; DN-97-87/20; DN-97-87/21; DN-97-87/22; DN-97-87/23; DN-97-87/24; DN-97-87/25; DN-97-87/26; DN-97-87/27; DN-97-87/28; DN-97-87/29; DN-97-87/3; DN-97-87/30; DN-97-87/5; DN-97-87/8; DN-97-87/9; DN-97-88B77; DN-97-88B78; DN-97-88B79; DN-97-b.KaHa; DN-97-b.Po; DN-97-B1/10; DN-97-B1/11; DN-97-B1/12; DN-97-B1/13; DN-97-B1/14; DN-97-B1/15; DN-97-B1/16; DN-97-B1/17; DN-97-B1/18; DN-97-B1/20; DN-97-B1/22; DN-97-B1/23; DN-97-B1/24; DN-97-B1/25; DN-97-B1/26; DN-97-B1/27; DN-97-B1/28; DN-97-B1/30; DN-97-B1/31; DN-97-B1/7; DN-97-B1/8; DN-97-B1/9; DN-97-B13-64; DN-97-B13-65; DN-97-B13-71; DN-97-B13-72; DN-97-B13-73; DN-97-B13-74; DN-97-B13-78; DN-97-B13-79; DN-97-B36-36; DN-97-B38-1; DN-97-B38-10; DN-97-B38-11; DN-97-B38-12/2; DN-97-B38-13/1; DN-97-B38-15; DN-97-B38-16/1; DN-97-B38-17/1; DN-97-B38-18; DN-97-B38-19; DN-97-B38-2; DN-97-B38-20; DN-97-B38-21; DN-97-B38-22; DN-97-B38-23; DN-97-B38-24; DN-97-B38-2412; DN-97-B38-24T1; DN-97-B38-26; DN-97-B38-27; DN-97-B38-28; DN-97-B38-29; DN-97-B38-3; DN-97-B38-30; DN-97-B38-31; DN-97-B38-32; DN-97-B38-33; DN-97-B38-38; DN-97-B38-4; DN-97-B38-40; DN-97-B38-41; DN-97-B38-42; DN-97-B38-49; DN-97-B38-5; DN-97-B38-51; DN-97-B38-57; DN-97-B38-58; DN-97-B38-59; DN-97-B38-6; DN-97-B38-61; DN-97-B38-64; DN-97-B38-65; DN-97-B38-66; DN-97-B38-7/10; DN-97-B38-70; DN-97-B38-8; DN-97-B38-8/2; DN-97-B38-9; Elevation of event; Epidote; Event label; Garnet; Hornblende; Latitude of event; Longitude of event; Metamorphite; Mica; MULT; Multiple investigations; Olivine; Orthopyroxene; South China Sea; Sphene; Sum; Tourmaline; Zircon
    Type: Dataset
    Format: text/tab-separated-values, 3340 data points
    Location Call Number Limitation Availability
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  • 8
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    Unknown
    PANGAEA
    In:  Pacific Oceanology Institute, Far East Branch of Russian Academy of Sciences
    Publication Date: 2023-07-07
    Keywords: 2786; 2798; 2799; 2804; 2806; 2813; 2814; 2815; 85A1; 85A11; 85A12; 85A27; 85A3; 85A30; 85A33; 85A4; 85A48; 85A5; 85A51; 85A6; 85A8; Actinolite; Amirante Arc, Western Indian Ocean; Amphibole; Analcime; Apatite; Archive of Ocean Data; ARCOD; Brookite; Calcite; Chloritoid; Clinopyroxene; Counting, Stereo Microscope; Dredge; DRG; Elevation of event; Elevation of event 2; Epidote; Event label; Fluorite; Garnet; Grab; GRAB; Hornblende; Ilmenite; Latitude of event; Location of event; Longitude of event; M-1; Magnetite; Mahe Island, Seychellen; Method/Device of event; Mica; Monazite; Orthopyroxene; P-1; P-2; P-3; P-4; PB-33; PB-33-2786; PB-33-2798; PB-33-2799; PB-33-2804; PB-33-2806; PB-33-2813; PB-33-2814; PB-33-2815; Phosphorite; Praslin Island, Seychellen; Professor Bogorov; Pyrite, FeS2; Rock fragments; Rock type; Sample code/label; Seychell Bank, Western Indian Ocean; Slope of Alphonse Island, Seychellen; Slope of Coetivy Island, Seychellen; Slope of Deroches Island, Seychellen; Sphene; Tourmaline; Western Indian Ocean; Zircon
    Type: Dataset
    Format: text/tab-separated-values, 760 data points
    Location Call Number Limitation Availability
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  • 9
    Publication Date: 2021-02-08
    Description: Tephra layers within marine sediments provide information on past explosive eruptions, which is especially important in the case of remote island arcs where data on proximal pyroclastic deposits can be scarce. Three Alaska-Aleutian tephras (labeled Br2, SR2, and SR4) were found in the late Pleistocene-Holocene sediments of the Bering Sea (north Pacific). We fingerprint glass from these tephras with the help of single-shard electron microprobe and LA-ICP-MS analyses and provide microprobe data on minerals from two of these tephras. The large compositional variability of the Alaska-Aleutian volcanoes permits the use of ratios of highly incompatible trace elements (Ba/Nb, Th/Nb, Th/La, La/Nb) for identification of distal tephra sources by comparison of these ratios in tephra glass and proximal bulk rock analyses. This method, along with mapped tephra dispersal, has allowed us to link tephras under study to Aniakchak, Semisopochnoi, and Okmok volcanoes, respectively. Our results indicate that tephra Br2 was derived from the ~ 3.6 ka Aniakchak II caldera-forming eruption (Alaska, USA). This is the first ever finding of the Aniakchak II tephra in Bering Sea sediments, which permits enlargement of its tephra volume and eruption magnitude to ~ 100 km3 and 6.8, respectively. Tephra SR2, dated at ~ 12.2 ka, is likely associated with a post-glacial caldera on the Semisopochnoi Island, Aleutians (USA). Tephra SR4 (dated at ~ 64.5 ka), likely was derived from an earlier undocumented eruption from Okmok volcano (Aleutians). All three regionally spread tephra layers are valuable isochrones, which can be used for correlating and dating of Bering Sea sediments.
    Type: Article , PeerReviewed
    Format: text
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  • 10
    Publication Date: 2020-11-04
    Description: Heavy mineral associations from tephra layers in the Quaternary deposits of the Sea of Okhotsk and their chemical characteristics were studied by various techniques. It was shown that such investigations may have a bearing on the problems of tephrostratigraphic correlation. We assessed the possibility of application of the mineral composition of distal tephra for identification and, in particular, estimation of the relation of tephras to the explosive volcanism of back-arc and frontal zones of island arcs. The investigation of the compositions of minerals and use of mineral geothermometers and geobarometers (two-pyroxene, magnetite–ilmenite, and amphibole) provided evidence on the physicochemical parameters of melt crystallization during the explosive volcanic eruptions that produced the distal tephra layers. It was established that the pyroclastic material of some tephra layers was supplied during explosive eruptions not only from shallow magma chambers but also from deeper and higher temperature reservoirs. Together with the geochemical signatures of volcanic glasses, the obtained results on mineral associations and the geochemistry of mineral inclusions are applicable for the comparative analysis and correlation of tephras from marine and continental sequences, as well as for the identification of explosive volcanic products in adjacent land areas.
    Type: Article , PeerReviewed
    Format: text
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