Chemistry and Crystallization Conditions of Minerals in Metasomatized Oceanic Lithosphere and Basaltic Rocks of Govorov Guyot, Magellan Seamounts, Pacific Ocean

被引:1
|
作者
Peretyazhko, Igor S. [1 ,2 ]
Savina, Elena A. [1 ]
机构
[1] Russian Acad Sci, Vinogradov Inst Geochem, Siberian Branch, Irkutsk 664033, Russia
[2] Russian Acad Sci, Inst Earhs Crust, Siberian Branch, Irkutsk 664033, Russia
关键词
metasomatized oceanic lithosphere; wehrlite; mantle xenoliths and xenocrysts; pargasitic amphibole; Ti-amphibole; Govorov Guyot; Magellan Seamounts; Pacific Ocean; CLINOPYROXENE; WATER; PERIDOTITES; BAROMETER;
D O I
10.3390/min12101305
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
Studies have provided first detailed data on the chemistry of rock-forming, minor, and accessory minerals of Govorov Guyot volcanic rocks (basalts, trachybasalts, basaltic trachyandesites, and trachyandesites). Some basalt samples bear pargasitic amphibole and clinopyroxene xenocrysts, mantle vein fragments in xenoliths, as well as wehrlite xenoliths, which are remnants of metasomatized oceanic lithosphere. Amphiboles make up a continuous series from pargasite -Mg-hastingsite in wehrlite xenoliths and xenocrysts to Mg-hastingsite-kaersutite end-members in phenocrysts and microlites of basaltic rocks. The discussed issues include the trace element chemistry of Ti-amphibole and clinopyroxene phenocrysts; fractionation of OIB melts; and P-T equilibration of minerals during the formation of mantle and basaltic rocks. Pargasitic amphibole may have crystallized at P-T conditions (2.5-0.6 GPa, 1170-980 degrees C) corresponding to the spinel facies of peridotite at different depths (73-21 km) in hydrous (6.0-4.5 wt% H2O) silicate mafic melts that percolated through peridotites of the oceanic lithosphere. Ti-amphibole in basaltic rocks crystallized at 1.2-0.4 GPa (40-15 km), and 1060-910 degrees C from melts containing 8.6-2.6 wt% H2O. As the high-temperature (similar to 1100 degrees C) basaltic magmas reached chambers at the oceanic crust level (7 to 3 km), the Ti-bearing amphiboles of xenocrysts and phenocrysts became replaced by Ti-magnetite- and/or rhonite-bearing mineral assemblages.
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