Chemical composition of basalts and basaltic glasses from the Sierra Leone Fracture Zone region


Autoria(s): Skolotnev, Sergey G; Peyve, Alexander A; Lyapunov, Sergey M; Simonov, Vladimir A; Glazyrin, YuE; Kolobov, VYu
Cobertura

MEDIAN LATITUDE: 6.171341 * MEDIAN LONGITUDE: -32.939538 * SOUTH-BOUND LATITUDE: 5.038300 * WEST-BOUND LONGITUDE: -34.588300 * NORTH-BOUND LATITUDE: 7.296700 * EAST-BOUND LONGITUDE: -31.236700

Data(s)

25/08/2003

Resumo

Major and trace element (including REE) geochemistry of basalts and chilled basaltic glasses from the MAR axial zone in the vicinity of the Sierra Leone FZ (5-7°10'N) has been studied. Associations of basalts of various compositions with particular ocean-floor geological structural features have been analyzed as well. Three basaltic varieties have been discriminated. Almost ubiquitous are high-Mg basalts (Variety 1) that are derivatives of N-MORB tholeiitic melts and that are produced in the axial zone of spreading. Variety 2 is alkaline basalts widespread on the southwestern flank of the MAR crest zone in the Sierra Leone region, likely generated through deep mantle melting under plume impact. Variety 3 is basalts derivative from T- and P-MORB-like tholeiitic melts and originating through addition of deeper mantle material to depleted upper mantle melts. Magma generation parameters, as calculated from chilled glass compositions, are different for depleted tholeiites (44-55 km, 1320-1370°C) and enriched tholeiites (45-78 km, 1330-1450°C). Mantle plume impact is shown to affect not only tholeiitic basalt compositions but also magma generation conditions in the axial spreading zone, resulting in higher Ti and Na concentrations in melts parental to rift-related basalts occurring near the plume. T- and P-MORBs are also developed near areas where mantle plumes are localized. High-Mg basalts are shown to come in several types with distinctive Ti and Na contents. Nearly every single MAR segment (bounded by sinistral strike slips and the Bogdanov Fracture Zone) is featured by its own basalt type suggesting that it has formed above an asthenospheric diapir with its unique magma generation conditions. These conditions are time variable. Likely causes of temporal and spatial instability of the mantle upwelling beneath this portion of the MAR are singular tectonic processes and plume activity. In sulfide-bearing rift morphostructures (so-called "Ore area'' and the Markov Basin), basalts make up highly evolved suites generated through olivine and plagioclase fractionation, which is suggestive of relatively long-lived magma chambers beneath the sulfide-bearing rift morphostructures. Functioning of these chambers is a combined effect of singular geodynamic regime and plume activity. In these chambers melts undergo deep differentiation leading to progressively increasing concentration of sulfide phase, eventually to be supplied to the hydrothermal plumbing system.

Formato

application/zip, 3 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.744726

doi:10.1594/PANGAEA.744726

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Skolotnev, Sergey G; Peyve, Alexander A; Lyapunov, Sergey M; Simonov, Vladimir A; Glazyrin, YuE; Kolobov, VYu (2003): MAR volcanism in the Sierra Leone Fracture Zone region, Central Atlantic. Russian Journal of Earth Sciences, 5(2), 100-123, doi:10.2205/2003ES000117

Palavras-Chave #Akademik Ioffe; Akademik Nikolaj Strakhov; Al2O3; Aluminium oxide; ANS22; Archive of Ocean Data; ARCOD; Area; Area/locality; Ba; Barium; Calcium oxide; Calculated; CAMECA electron microprobe; CaO; Ce; Cerium; Chromium; Chromium(III) oxide; Cr; Cr2O3; Dredge; DRG; Eu; Europium; Event; Fe2O3; FeO; FeO/MgO; I1003; I1005; I1009; I1010; I1011; I1012; I1016; I1019; I1022; I1025; I1026; I1027; I1028; I1029; I1030; I1031; I1032; I1036; I1037; I1039; I1040; I1045; I1046; I1055; I1057; I1060; I1063; I1068; I1069; I1072; Instrumental neutron activation analysis (INAA); Ioffe-10; Iron oxide, Fe2O3; Iron oxide, FeO; K2O; La; Lanthanum; LOI; Loss of ignition; Loss on ignition; Lu; Lutetium; Magnesium oxide; Manganese oxide; MgO; Mid-Atlantic Ridge; MnO; Na2O; Nb; Nb/Zr normalized; Nd; Neodymium; Ni; Nickel; Niobium; P2O5; Phosphorus oxide; Potassium oxide; Ratio; Rb; Rubidium; S2230; S2234; S2235; S2238; S2239; S2244; S2246; S2247; S2250; Samarium; Sample code/label; Silicon dioxide; SiO2; Sm; Sodium oxide; Sr; Strontium; Sum; Tb; Terbium; TiO2; Titanium oxide; total; V; Vanadium; Wet chemistry; X-ray fluorescence (XRF); Y; Yb; Ytterbium; Yttrium; Zirconium; Zr
Tipo

Dataset