Volcanological and petrological evolution of Vulcano island (Aeolian arc, southern Tyrrhenian Sea)

被引:170
作者
DeAstis, G
LaVolpe, L
Peccerillo, A
Civetta, L
机构
[1] UNIV NAPLES FEDERICO II, DIPARTIMENTO GEOFIS & VULCANOL, I-80138 NAPLES, ITALY
[2] UNIV CALABRIA, DIPARTIMENTO SCI TERRA, I-87030 RENDE, CS, ITALY
关键词
D O I
10.1029/96JB03735
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Petrological and geochemical data are reported for volcanic rocks from Vulcano island. The subaerial volcanism (120 ka to present) built up a NW-SE elongated composite structure, affected by two intersecting multistage calderas. Volcanics older than 20 ka consist mostly of high-K calc-alkaline (HKCA) to shoshonitic (SHO) mafic rocks. These magmas interacted significantly with the continental crust, which generated variable Sr isotopic ratios (0.70412-0.70520). However, a major role was also played by input of parental liquids into the magma chamber, which prevented further evolution of the magmas. HKCA, SHO, and potassic (KS) racks formed from 20 to 8 ka, display a much larger range of SiO2 (from shoshonites to rhyolites) and higher concentrations of incompatible elements with respect to the previous stage. Sr isotopic ratios show small variations (0.70448-0.70486). Mixing of silicic and mafic liquids and fractional crystallization processes (FC) were the main evolutionary processes during this stage. Volcanics younger than 8 ka consist of SHO and leucite-bearing KS mafic rocks, with abundant intermediate and silicic products. Mafic and intermediate rocks display similar incompatible element abundances and Sr isotopic ratios as the previous stage volcanics, whereas higher Sr-87/Sr-86 (0.70494-0.70583) are observed in some rhyolites. These products originated from a complex interplay of FC, crustal assimilation, and magma mixing processes. The most mafic rocks show increasing incompatible element abundances, Rb/Sr, Rb/Ba, Mg/Al, Mg/Ca, and a decrease in large ion lithophile to high field strength element ratios, passing from older HKCA-SHO to the younger SHO-KS volcanics. These variations suggest a shifting of magma sources from a slightly metasomatized asthenosphere (fertile peridotite) to a more strongly metasomatized lithospheric mantle (residual peridotite). Time-related petrological and geochemical variations have been used to develop a model for the evolution of the Vulcano plumbing system.
引用
收藏
页码:8021 / 8050
页数:30
相关论文
共 50 条
[41]   Chemistry of shallow submarine warm springs in an arc-volcanic setting: Vulcano Island, Aeolian Archipelago, Italy [J].
Sedwick, P ;
Stuben, D .
MARINE CHEMISTRY, 1996, 53 (1-2) :147-161
[42]   Dynamics of Vulcano Island (Tyrrhenian Sea, Italy) investigated by long-term (40 years) geophysical data [J].
Alparone, Salvatore ;
Bonforte, Alessandro ;
Gambino, Salvatore ;
Guglielmino, Francesco ;
Obrizzo, Francesco ;
Velardita, Rosanna .
EARTH-SCIENCE REVIEWS, 2019, 190 :521-535
[43]   MORPHOSTRUCTURAL FEATURES AND SOME PETROCHEMICAL DATA FROM THE SUBMERGED AREA AROUND ALICUDI AND FILICUDI VOLCANIC ISLANDS (AEOLIAN ARC, SOUTHERN TYRRHENIAN SEA) [J].
CALANCHI, N ;
ROMAGNOLI, C ;
ROSSI, PL .
MARINE GEOLOGY, 1995, 123 (3-4) :215-238
[44]   Petrological and geochemical characteristics of Plio-Pleistocene Volcanics from Ponza Island (Tyrrhenian Sea, Italy) [J].
Conte, AM ;
Dolfi, D .
MINERALOGY AND PETROLOGY, 2002, 74 (01) :75-94
[45]   Petrological and geochemical characteristics of Plio-Pleistocene volcanics from Ponza Island (Tyrrhenian Sea, Italy) [J].
Conte A.M. ;
Dolfi D. .
Mineralogy and Petrology, 2002, 74 (1) :75-94
[46]   Mineralogical and geochemical investigation of seafloor massive sulfides from Panarea Platform (Aeolian Arc, Tyrrhenian Sea) [J].
Dekov, Vesselin M. ;
Kamenov, George D. ;
Abrasheva, Marina D. ;
Capaccioni, Bruno ;
Munnik, Frans .
CHEMICAL GEOLOGY, 2013, 335 :136-148
[47]   Benthic foraminifera from a recent, shallow-water hydrothermal environment in the Aeolian Arc (Tyrrhenian Sea) [J].
Panieri, G ;
Gamberi, F ;
Marani, M ;
Barbieri, R .
MARINE GEOLOGY, 2005, 218 (1-4) :207-229
[48]   Magmatic signature of episodic back-arc rifting in the southern Tyrrhenian Sea [J].
Argnani, A ;
Savelli, C .
PERI-TETHYS MEMOIR 6: PERI-TETHYAN RIFT/WRENCH BASINS AND PASSIVE MARGINS, 2001, 186 :735-754
[49]   LITHOLOGICAL INFLUENCES ON THE FRACTAL DIMENSION OF COASTAL MORPHOLOGY - THE VOLCANIC ISLANDS OF VULCANO, STROMBOLI AND ALICUDI IN THE SOUTHERN TYRRHENIAN SEA [J].
LEONARDI, S ;
MULARGIA, F ;
ROSSI, PML .
TERRA NOVA, 1994, 6 (03) :246-250
[50]   Constraining the recent plumbing system of Vulcano (Aeolian Arc, Italy) by textural, petrological, and fractal analysis: The 1739 AD Pietre Cotte lava flow [J].
Piochi, Monica ;
De Astis, Gianfilippo ;
Petrelli, Maurizio ;
Ventura, Guido ;
Sulpizio, Roberto ;
Zanetti, Alberto .
GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, 2009, 10