Chemical and isotopic compositions of rocks and minerals from the Ashadze and Logachev hydrothermal fields, Mid-Atlantic Ridge


Autoria(s): Silantyev, Sergey A; Krasnova, EA; Cannat, Mathilde; Bortnikov, Nikolay S; Kononkova, NN; Beltenev, VE
Cobertura

MEDIAN LATITUDE: 13.861786 * MEDIAN LONGITUDE: -36.415626 * SOUTH-BOUND LATITUDE: 12.971833 * WEST-BOUND LONGITUDE: -44.979710 * NORTH-BOUND LATITUDE: 14.753470 * EAST-BOUND LONGITUDE: 44.862833

Data(s)

29/05/2011

Resumo

This study was aimed at reconstructing a sequence of events in the magmatic and metamorphic evolution of peridotites, gabbroids, and trondhjemites from internal oceanic complexes of the Ashadze and Logachev hydrothermal vent fields. Collections of plutonic rocks from Cruises 22 and 26 of R/V "Professor Logachev", Cruise 41 of R/V "Akademik Mstislav Keldysh", and from the Serpentine Russian-French expedition aboard R/V "Pourquoi pas?" were objects of this study. Data reported here suggest that the internal oceanic complexes of the Ashadze and Logachev fields formed via the same scenario in these two regions of the Mid-Atlantic Ridge. On the other hand, an analysis of petrological and geochemical characteristics of the rocks indicated that the internal oceanic complexes of the MAR axial zone between 12°58'N and 14°45'N show pronounced petrological and geochemical heterogeneity manifested in variations in degree of depletion of mantle residues and in Nd isotopic compositions of rocks from the gabbro-peridotite association. Trondhjemites from the Ashadze hydrothermal field can be considered as partial melting products of gabbroids under influence of hydrothermal fluids. It was supposed that presence of trondhjemites in internal oceanic complexes of MAR can be used as a marker for the highest temperature deep-rooted hydrothermal systems. Perhaps, the region of the MAR axial zone, in which petrologically and geochemically contrasting internal oceanic complexes are spatially superimposed, serves as an area for development of large hydrothermal clusters with considerable ore-forming potential.

Formato

application/zip, 14 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.813402

doi:10.1594/PANGAEA.813402

Idioma(s)

en

Publicador

PANGAEA

Relação

Silantyev, Sergey A; Krasnova, EA; Bortnikov, Nikolay S; Beltenev, VE; Kononkova, NN; Cannat, Mathilde (2011): Peridotite-gabbro-trondhjemite association of the Mid-Atlantic Ridge between 12°58' and 14°45'N: Ashadze and Logachev hydrothermal vent fields. Translated from Geokhimiya, 2011, 49(4), 339-372, Geochemistry International, 49(4), 323-354, doi:10.1134/S0016702911040070

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Palavras-Chave #143Nd/144Nd; 147Sm/144Nd; 87Rb/86Sr; 87Sr/86Sr; Ag; Al2O3; Aluminium oxide; Antimony; Archive of Ocean Data; ARCOD; Arsenic; As; Ba; Barium; Calcium oxide; Calculated; CAMECA electron microprobe; CaO; Ce; Ce/Yb; Cerium; Cerium/Ytterbium ratio; Chlorine; chondrite normalized; Chromium; Chromium(III) oxide; Cl; Co; Cobalt; Computed FeO* standard deviation max; Copper; Cr; Cr2O3; Cu; Dy; Dysprosium; Er; Erbium; Eu; Europium; Event; FeO; FEO*MAX; Fo; Forsterite; Gadolinium; Gd; Hafnium; Hf; Ho; Holmium; HR-ICP-MS, Perkin-Elmer Elan 6100; ICP-MS, Inductively coupled plasma - mass spectrometry; Iron oxide, FeO; K2O; La; La/Sm; Lanthanum; Lanthanum/Samarium ratio; Lead; LOI; Loss of ignition; Loss on ignition; Lu; Lutetium; Magnesium number; Magnesium oxide; Manganese oxide; Mg/(Mg + Fe); MgO; MnO; Na2O; Nb; Nd; Neodymium; Neodymium 143/Neodymium 144; Ni; Nickel; Nickel oxide; NiO; Niobium; P2O5; Pb; Phase; Phosphorus oxide; Potassium oxide; Pr; Praseodymium; Rb; Rock; Rock type; Rubidium; Rubidium 87/Strontium 86 ratio; S; Samarium; Samarium 147/Neodymium 144 ratio; Sample code/label; Sb; Silicon dioxide; Silver; SiO2; Sm; Sn; Sodium oxide; Sr; SrCO3; Strontium; Strontium 87/Strontium 86; Strontium carbonate, strontianite; Sulphur, total; Sum; Ta; Tantalum; Tb; Terbium; Th; Thorium; Thulium; Tin; TiO2; Titanium oxide; Tm; Tungsten; U; Uranium; V; V2O3; Vanadium; Vanadium(III) oxide; W; X-ray fluorescence (XRF); Y; Yb; Ytterbium; Yttrium; Zinc; Zinc oxide; Zirconium; Zn; ZnO; Zr
Tipo

Dataset