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  • 1990-1994  (11)
  • 1975-1979  (2)
Publikationsart
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Verlag/Herausgeber
Erscheinungszeitraum
Jahr
  • 1
    Digitale Medien
    Digitale Medien
    Springer
    Contributions to mineralogy and petrology 68 (1979), S. 151-169 
    ISSN: 1432-0967
    Quelle: Springer Online Journal Archives 1860-2000
    Thema: Geologie und Paläontologie
    Notizen: Abstract Bransfield Strait is a narrow basin separating the South Shetland Islands from the Antarctic Peninsula and is attributed to recent back-arc extension behind the South Shetland volcanic arc. The volcanic islands of Deception and Bridgeman are situated close to the axis of spreading, whereas Penguin Island lies slightly to the north of this axis. The mineralogy, petrology and geochemistry of the lavas of the three volcanoes have been studied in order to provide information on the nature of magmatism associated with the initial stages of back-arc spreading. Deception Island lavas range from olivine basalt to dacite, and all are highly sodic, with high Na/K, K/Rb, Ba/Rb and Zr/Nb ratios and with CeN/YbN = 2. Incompatible elements increase systematically between basalt and rhyodacite, while Sr decreases, suggesting that fractional crystallisation is the dominant process relating lava compositions. The rhyodacites have high concentrations of Zr, Y and the REE and negative Eu anomalies and are compositionally similar to oceanic plagiogranite. Bridgeman Island lavas are mostly basaltic andesites, but the levels of many incompatible elements, including REE, are significantly lower than those of Deception lavas, although CeN/YbN ratios and 87Sr/86Sr ratios (0.7035) are the same. Penguin Island lavas are magnesian, mildly alkaline olivine basalts with a small range of composition that can be accommodated by fractional crystallisation of olivine, clinopyroxene and/or chromite. Penguin lavas have higher 87Sr/86Sr (0.7039) and CeN/ YbN (4) ratios than Deception and Bridgeman lavas. The Rb/Sr ratios of Deception and Penguin basalts (ca. 0.01) are much too low to account for their present 87Sr/86Sr ratios. Modelling suggests that the source regions of the lavas of the three volcanoes share many geochemical features, but there are also some significant differences, which probably reflects the complex nature of the mantle under an active island arc combined with complex melting relationships attending the initial stages of back-arc spreading. Favoured models suggest that Bridgeman lavas represent 10–20% melting and the more primitive Deception lavas 5–10% melting of spinel-peridotite, whereas Penguin lavas represent less then 5% melting of a garnet-peridotite source. The mantle source for Bridgeman lavas seems to have undergone short-term enrichment in K, Rb and Ba, possibly resulting from dewatering of the subducted slab. Hydrous melting conditions may also account for the more siliceous, high-alumina nature and low trace element contents of Bridgeman lavas.
    Materialart: Digitale Medien
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 2
    facet.materialart.
    Unbekannt
    PANGAEA
    In:  Supplement to: Wood, D A; Tarney, J; Varet, J; Saunders, Andrew D; Bougault, Henri; Joron, Jean Louis; Treuil, M; Cann, Joe R (1979): Geochemistry of basalts drilled in the North Atlantic by IPOD Leg 49: implications for mantel heterogeneity. Earth and Planetary Science Letters, 42(1), 77-97, https://doi.org/10.1016/0012-821X(79)90192-4
    Publikationsdatum: 2023-07-10
    Beschreibung: IPOD Leg 49 recovered basalts from 9 holes at 7 sites along 3 transects across the Mid-Atlantic Ridge: 63°N (Reykjanes), 45°N and 36°N (FAMOUS area). This has provided further information on the nature of mantle heterogeneity in the North Atlantic by enabling studies to be made of the variation of basalt composition with depth and with time near critical areas (Iceland and the Azores) where deep mantle plumes are thought to exist. Over 150 samples have been analysed for up to 40 major and trace elements and the results used to place constraints on the petrogenesis of the erupted basalts and hence on the geochemical nature of their source regions. It is apparent that few of the recovered basalts have the geochemical characteristics of typical "depleted" midocean ridge basalts (MORB). An unusually wide range of basalt compositions may be erupted at a single site: the range of rare earth patterns within the short section cored at Site 413, for instance, encompasses the total variation of REE patterns previously reported from the FAMOUS area. Nevertheless it is possible to account for most of the compositional variation at a single site by partial melting processes (including dynamic melting) and fractional crystallization. Partial melting mechanisms seem to be the dominant processes relating basalt compositions, particularly at 36°N and 45°N, suggesting that long-lived sub-axial magma chambers may not be a consistent feature of the slow-spreading Mid-Atlantic Ridge. Comparisons of basalts erupted at the same ridge segment for periods of the order of 35 m.y. (now lying along the same mantle flow line) do show some significant inter-site differences in Rb/Sr, Ce/Yb, 87Sr/86Sr, etc., which cannot be accounted for by fractionation mechanisms and which must reflect heterogeneities in the mantle source. However when hygromagmatophile (HYG) trace element levels and ratios are considered, it is the constancy or consistency of these HYG ratios which is the more remarkable, implying that the mantle source feeding a particular ridge segment was uniform with respect to these elements for periods of the order of 35 m.y. and probably since the opening of the Atlantic. Yet these HYG element ratios at 63°N are very different from those at 45°N and 36°N and significantly different from the values at 22°N and in "MORB". The observed variations are difficult to reconcile with current concepts of mantle plumes and binary mixing models. The mantle is certainly heterogeneous, but there is not simply an "enriched" and a "depleted" source, but rather a range of sources heterogeneous on different scales for different elements - to an extent and volume depending on previous depletion/enrichment events. HYG element ratios offer the best method of defining compositionally different mantle segments since they are little modified by the fractionation processes associated with basalt generation.
    Schlagwort(e): 49-407; 49-408; 49-409; 49-410; 49-410A; 49-411; 49-412A; 49-413; Aluminium oxide; Caesium; Calcium oxide; Carbon dioxide; Cerium; Chromium; Cobalt; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; DSDP/ODP/IODP sample designation; Elevation of event; Europium; Event label; Gadolinium; Glomar Challenger; Hafnium; Instrumental neutron activation analysis (INAA) (Reimann et al., 1998); Iron oxide, Fe2O3; Iron oxide, FeO; Lanthanum; Latitude of event; Leg49; Longitude of event; Lutetium; Magnesium number; Magnesium oxide; Manganese oxide; Neodymium; Nickel; Niobium; North Atlantic/BASIN; North Atlantic/FRACTURE ZONE; North Atlantic/RIDGE; Phosphorus pentoxide; Potassium oxide; Rubidium; Samarium; Sample code/label; Sample code/label 2; Scandium; Silicon dioxide; Sodium oxide; Strontium; Tantalum; Terbium; Thorium; Thulium; Titanium dioxide; Uranium; Vanadium; Water in rock; X-ray fluorescence (XRF); Ytterbium; Yttrium; Zirconium
    Materialart: Dataset
    Format: text/tab-separated-values, 722 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 3
    facet.materialart.
    Unbekannt
    PANGAEA
    In:  Supplement to: Saunders, Andrew D; Storey, Michael; Gibson, Ian L; Leat, Philip; Hergt, Janet M; Thompson, Robert N (1991): Chemical and isotopic constraints of the origin of basalts from Ninetyeast Ridge, Indian Ocean: Results from DSDP Leg 22 and 26 and ODP Leg 121. In: Weissel, J; Peirce, J; Taylor, E; et al. (eds.), Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 121, 559-590, https://doi.org/10.2973/odp.proc.sr.121.169.1991
    Publikationsdatum: 2024-01-09
    Beschreibung: On Leg 121 of the Ocean Drilling Program, we recovered basaltic rocks from a total of three basement sites in the southern, central, and northern regions of Ninetyeast Ridge. These new sites complement the previous four basement holes drilled during Legs 22 and 26 of the Deep Sea Drilling Project, and confirm the predominantly tholeiitic, light rare earth element-enriched character of the basalts that cap the ridge. The basalts show marked iron enrichment; ferrobasalts occur at Sites 214 and 216 and oceanic andesites at Site 253. All of the basalts recovered during Leg 121 are altered, and range from aphyric olivine tholeiites (Site 756), to strongly plagioclase-phyric basalts (Site 757). Basalts from Site 758, which were clearly erupted in a submarine environment (pillow basalts are present in the section), are sparsely to strongly plagioclase-phyric. The basalts recovered at any one hole are isotopically homogeneous (except for the basalts from Site 758, which show a range of Pb isotopes), and it is possible to relate the magmas at any one site by high-level fractionation processes. However, there are significant variations in isotope ratios and highly incompatible element ratios between sites, which suggest that the mantle source for the ridge basalts was compositionally variable. Such variation, in view of the large volume of magmatic products that form the ridge system, is not surprising. There is not, however, a systematic variation in basalt composition along the ridge. We agree with previous models that relate Ninetyeast Ridge to a mantle plume in the southern Indian Ocean. The tholeiitic, iron-enriched, and voluminous character of the ridge basalts is typical of oceanic islands associated with plumes on or near a mid-ocean ridge (e.g., Iceland, Galapagos Islands, and St. Paul/Amsterdam islands). The absence of recovered alkalic suites is inconsistent with an intraplate setting, such as the Hawaiian Islands or Kerguelen Island. Thus, the major element data, like the gravity data, strongly suggest that the ridge was erupted on or very close to an active spreading center. Isotopically, the most likely plume that created the excess magmatism on the Ridge is the Kerguelen-Heard plume system, but the Ninetyeast Ridge basalts do not represent a simple mixing of the Kerguelen plume and mid-ocean Ninetyeast Ridge basalt mantle.
    Schlagwort(e): 121-756C; 121-756D; 121-757B; 121-757C; 121-758A; 22-214; 22-216; 26-253; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Glomar Challenger; Indian Ocean; Indian Ocean//RIDGE; Joides Resolution; Leg121; Leg22; Leg26; Ocean Drilling Program; ODP; South Indian Ridge, South Indian Ocean
    Materialart: Dataset
    Format: application/zip, 9 datasets
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 4
    facet.materialart.
    Unbekannt
    PANGAEA
    In:  Supplement to: Storey, Michael; Kent, R W; Saunders, Andrew D; Salters, Vincent J M; Hergt, Janet M; Whitechurch, Hubert; Sevigny, James H; Thirlwall, Matthew F; Leat, Philip; Ghose, N C; Gifford, M (1992): Lower Cretaceous volcanic rocks on continental margins and their relationship to the Kerguelen Plateau. In: Wise, SW; Schlich, R; et al. (eds.), Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 120, 33-53, https://doi.org/10.2973/odp.proc.sr.120.118.1992
    Publikationsdatum: 2024-01-09
    Beschreibung: Widespread Lower Cretaceous magmatism occurred along the Indian-Australian/Antarctic margins, and in the juvenile Indian Ocean, during the rifting of eastern Gondwana. The formation of this magmatic province probably began around 120-130 Ma with the eruption of basalts on the Naturaliste Plateau and at Bunbury, western Australia. On the northeast margin of India, activity began around 117 Ma with the Rajmahal continental basalts and associated lamprophyre intrusions. The formation of the Kerguelen Plateau in the Indian Ocean began no later than 114 Ma. Ultramafic lamprophyres (alnoites) were emplaced in the Prince Charles Mountains near the Antarctic continental margin at ~ 110 Ma. These events are considered to be related to a major mantle plume, the remnant of which is situated beneath the region of Kerguelen and Heard islands at the present day. Geochemical data are presented for each of these volcanic suites and are indicative of complex interactions between asthenosphere-derived magmas and the continental lithosphere. Kerguelen Plateau basalts have Sr and Nd isotopic compositions lying outside the field for Indian Ocean mid-ocean ridge basalts (MORB) but, with the exception of Site 738 at the southern end of the plateau, within the range of more recent hotspot basalts from Kerguelen and Heard Islands. However, a number of the plateau tholeiites are characterized by lower 206Pb/204Pb ratios than are basalts from Kerguelen Island, and many also have anomalously high La/Nb ratios. These features suggest that the source of the Kerguelen Plateau basalts suffered contamination by components derived from the Gondwana continental lithosphere. An extreme expression of this lithospheric signature is shown by a tholeiite from Site 738, suggesting that the southernmost part of the Kerguelen Plateau may be underlain by continental crust. The Rajmahal tholeiites mostly fall into two distinct geochemical groups. Some Group I tholeiites have Sr and Nd isotopic compositions and incompatible element abundances, similar to Kerguelen Plateau tholeiites from Sites 749 and 750, indicating that the Kerguelen-Heard mantle plume may have directly furnished Rajmahal volcanism. However, their elevated 207Pb/204Pb ratios indicate that these magmas did not totally escape contamination by continental lithosphere. In contrast to the Group I tholeiites, significant contamination is suggested for Group II Rajmahal tholeiites, on the basis of incompatible element abundances and isotopic compositions. The Naturaliste Plateau and the Bunbury Basalt samples show varying degrees of enrichment in incompatible elements over normal MORB. The Naturaliste Plateau samples (and Bunbury Basalt) have high La/Nb ratios, a feature not inconsistent with the notion that the plateau may consist of stretched continental lithosphere, near the ocean-continent divide.
    Schlagwort(e): 120-747C; 120-748C; 120-749C; 120-750B; Albite; Aluminium oxide; Anorthite; Apatite; Barium; Calcium oxide; Cerium; Chromium; CIPW Norm; Corundum; Diopside; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Elements, total; Europium; Event label; Gallium; Hafnium; Hypersthene; Ilmenite; Instrumental neutron activation analysis (INAA) (Reimann et al., 1998); Iron oxide, Fe2O3; Joides Resolution; Lanthanum; Leg120; Loss on ignition; Lutetium; Magnesium oxide; Manganese oxide; Montmorillonite; Neodymium; Nepheline; Nickel; Niobium; Ocean Drilling Program; ODP; Olivine; Orthoclase; Phosphorus pentoxide; Potassium oxide; Quartz; Rubidium; Samarium; Sample code/label; Scandium; Silicon dioxide; Sodium oxide; South Indian Ridge, South Indian Ocean; Strontium; Tantalum; Terbium; Thorium; Titanium dioxide; Tungsten; Vanadium; X-ray fluorescence (XRF); Ytterbium; Yttrium; Zinc; Zirconium
    Materialart: Dataset
    Format: text/tab-separated-values, 1209 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 5
    Publikationsdatum: 2024-01-09
    Schlagwort(e): 121-757B; 121-757C; Albite; Aluminium oxide; Anorthite; Apatite; Barium; Calcium oxide; Calculated; Cerium; Chromium; CIPW Norm; Corundum; Diopside; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Dysprosium; Element analysis, neutron activation (NAA); Elements, total; Erbium; Europium; Event label; Gadolinium; Gallium; Hafnium; Hypersthene; ICP-OES, Inductively coupled plasma - optical emission spectrometry; Ilmenite; Iron/Manganese ratio; Iron oxide, Fe2O3; Iron oxide, FeO; Joides Resolution; Lanthanum; Lanthanum/Tantalum ratio; Lanthanum/Ytterbium ratio; Leg121; Lithologic unit/sequence; Loss on ignition; Lutetium; Magnesium oxide; Magnetite; Manganese oxide; Neodymium; Nepheline; Nickel; Niobium; Ocean Drilling Program; ODP; Olivine; Orthoclase; Phosphorus/Zirconium ratio; Phosphorus pentoxide; Plagioclase; Potassium oxide; Quartz; Rubidium; Samarium; Sample code/label; Sample code/label 2; Scandium; Silicon dioxide; Sodium oxide; South Indian Ridge, South Indian Ocean; Strontium; Tantalum; Terbium; Thorium; Thorium/Tantalum ratio; Titanium/Vanadium ratio; Titanium/Zirconium ratio; Titanium dioxide; Tungsten; Type; Uranium; Vanadium; X-ray fluorescence (XRF); Ytterbium; Yttrium; Zinc; Zirconium; Zirconium/Niobium ratio
    Materialart: Dataset
    Format: text/tab-separated-values, 1796 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 6
    Publikationsdatum: 2024-01-09
    Schlagwort(e): 121-756D; 121-757C; 121-758A; Aluminium oxide; Aluminium oxide, standard deviation; Barium; Barium, standard deviation; Caesium; Calcium oxide; Calcium oxide, standard deviation; Carbon dioxide; Cerium; Cerium, standard deviation; Chromium; Chromium, standard deviation; Cobalt; Copper; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Dysprosium; Element analysis, neutron activation (NAA); Erbium; Europium; Europium, standard deviation; Event label; Gadolinium; Gallium; Gallium, standard deviation; Hafnium; Hafnium, standard deviation; Hydrogen, gas; ICP-OES, Inductively coupled plasma - optical emission spectrometry; Indian Ocean; Iron oxide, Fe2O3; Iron oxide, FeO, standard deviation; Joides Resolution; Lanthanum; Lanthanum, standard deviation; Leg121; Loss on ignition; Lutetium; Lutetium, standard deviation; Magnesium oxide; Magnesium oxide, standard deviation; Manganese oxide; Manganese oxide, standard deviation; Neodymium; Neodymium, standard deviation; Nickel; Nickel, standard deviation; Niobium; Niobium, standard deviation; Ocean Drilling Program; ODP; Phosphorus pentoxide; Phosphorus pentoxide, standard deviation; Potassium oxide; Potassium oxide, standard deviation; Rubidium; Rubidium, standard deviation; Samarium; Samarium, standard deviation; Sample code/label; Selenium; Selenium, standard deviation; Silicon dioxide; Silicon dioxide, standard deviation; Sodium oxide; Sodium oxide, standard deviation; South Indian Ridge, South Indian Ocean; Strontium; Strontium, standard deviation; Tantalum; Tantalum, standard deviation; Terbium; Terbium, standard deviation; Thorium; Thorium, standard deviation; Titanium dioxide; Titanium dioxide, standard deviation; Tungsten; Uranium; Vanadium; Vanadium, standard deviation; Water in rock; X-ray fluorescence (XRF); Ytterbium; Ytterbium, standard deviation; Yttrium; Yttrium, standard deviation; Zinc; Zinc, standard deviation; Zirconium; Zirconium, standard deviation
    Materialart: Dataset
    Format: text/tab-separated-values, 860 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 7
    Publikationsdatum: 2024-01-09
    Schlagwort(e): 121-756D; 121-757C; 121-758A; Albite; Aluminium; Aluminium oxide; Anorthite; Calcium; Calcium oxide; Calculated based on oxygen number; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Elements, total; Event label; Indian Ocean; Iron 3+; Iron oxide, Fe2O3; Joides Resolution; Leg121; Number of oxygens; Ocean Drilling Program; ODP; Orthoclase; Potassium; Potassium oxide; Sample code/label; Sample comment; Silicon; Silicon dioxide; Sodium; Sodium oxide; South Indian Ridge, South Indian Ocean; Sum; X-ray fluorescence (XRF)
    Materialart: Dataset
    Format: text/tab-separated-values, 460 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 8
    Publikationsdatum: 2024-01-09
    Schlagwort(e): 121-757C; Aluminium oxide; Calcium oxide; Chromium(III) oxide; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Elements, total; Iron/Manganese ratio; Iron oxide, FeO; Joides Resolution; Leg121; Magnesium oxide; Manganese oxide; Ocean Drilling Program; ODP; Phosphorus pentoxide; Potassium oxide; Sample code/label; Silicon dioxide; Sodium oxide; South Indian Ridge, South Indian Ocean; Titanium/Phosphorus ratio; Titanium dioxide; X-ray fluorescence (XRF)
    Materialart: Dataset
    Format: text/tab-separated-values, 90 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 9
    Publikationsdatum: 2024-01-09
    Schlagwort(e): 121-756C; 121-756D; Albite; Aluminium oxide; Anorthite; Apatite; Barium; Calcium oxide; Calculated; Cerium; Chromium; CIPW Norm; Corundum; Diopside; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Dysprosium; Element analysis, neutron activation (NAA); Elements, total; Erbium; Europium; Event label; Gadolinium; Gallium; Hafnium; Hypersthene; ICP-OES, Inductively coupled plasma - optical emission spectrometry; Ilmenite; Iron/Manganese ratio; Iron oxide, Fe2O3; Iron oxide, FeO; Joides Resolution; Lanthanum; Lanthanum/Tantalum ratio; Lanthanum/Ytterbium ratio; Leg121; Lithologic unit/sequence; Loss on ignition; Lutetium; Magnesium oxide; Magnetite; Manganese oxide; Neodymium; Nepheline; Nickel; Niobium; Ocean Drilling Program; ODP; Olivine; Orthoclase; Phosphorus/Zirconium ratio; Phosphorus pentoxide; Potassium oxide; Quartz; Rubidium; Samarium; Sample code/label; Sample code/label 2; Scandium; Silicon dioxide; Sodium oxide; South Indian Ridge, South Indian Ocean; Strontium; Tantalum; Terbium; Thorium; Thorium/Tantalum ratio; Titanium/Vanadium ratio; Titanium/Zirconium ratio; Titanium dioxide; Tungsten; Uranium; Vanadium; X-ray fluorescence (XRF); Ytterbium; Yttrium; Zinc; Zirconium; Zirconium/Niobium ratio
    Materialart: Dataset
    Format: text/tab-separated-values, 1295 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 10
    Publikationsdatum: 2024-01-09
    Schlagwort(e): 121-757C; 121-758A; Aluminium; Aluminium oxide; Calcium; Calcium oxide; Calculated based on oxygen number; Chromium; Chromium(III) oxide; Color reflectance at 460 nm; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Elements, total; Enstatite; Event label; Ferrosilite; Indian Ocean; Iron 2+; Iron 2+/Iron total ratio; Iron oxide, FeO; Joides Resolution; Leg121; Magnesium; Magnesium number; Magnesium oxide; Manganese; Manganese oxide; Ocean Drilling Program; ODP; Potassium oxide; Sample code/label; Sample comment; Silicon; Silicon dioxide; Sodium; Sodium oxide; South Indian Ridge, South Indian Ocean; Sum; Titanium dioxide; Wollastonite; X-ray fluorescence (XRF)
    Materialart: Dataset
    Format: text/tab-separated-values, 867 data points
    Standort Signatur Einschränkungen Verfügbarkeit
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