THE OXIDATION-STATE OF SUBCONTINENTAL MANTLE - OXYGEN THERMOBAROMETRY OF MANTLE XENOLITHS FROM CENTRAL-ASIA

被引:108
作者
IONOV, DA
WOOD, BJ
机构
[1] ACAD SCI USSR, IGEM, MOSCOW 109017, USSR
[2] UNIV BRISTOL, DEPT GEOL, BRISTOL B58 1RJ, ENGLAND
[3] MAX PLANCK INST CHEM, W-6500 MAINZ, GERMANY
关键词
D O I
10.1007/BF00348950
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
The oxygen fugacities of 48 mantle xenoliths from 5 localities in southern Siberia (USSR) and Mongolia have been determined. Ferric iron contents of spinels were measured by Fe-57 Mossbauer spectroscopy and oxygen fugacities calculated from spinel-olivine-orthopyroxene equilibrium. The samples studied represent the major types of upper mantle lithologies including spinel and garnet peridotites and pyroxenites, fertile and depleted peridotites and anhydrous and metasomatized samples which come from diverse tectonic settings. Extensive geochemical and isotope data are also available for these samples. Oxygen fugacity values for most central Asian xenoliths fall within the range observed in peridotite xenoliths from other continental regions at or slightly below the FMQ buffer. However, xenoliths from the Baikal rift zone are the most reduced among xenoliths for which Mossbauer data on spinels are available. They yield fO2 values similar to those in oceanic peridotites and MORBs, while xenoliths in other occurrences have higher fO2s. In general, the continental lithosperic mantle is more oxidized than MORB-like oceanic mantle. This difference seems to be due to incorporation of oxidized material into some parts of the subcontinental mantle as a result of subduction of oceanic crust. Garnet- and garnet-spinel lherzolites from the Baikal rift area have slightly higher oxygen fugacities than shallower spinel lherzolites. Oxygen fugacity does not appear to be correlated with the degree of depletion of peridotites, and its values in peridotites and pyroxenites are very much alike, suggesting that partial melting (at least at moderate degrees) takes place at essentially the same fO2s that are now recorded by the residual material. Modally (amphibole- and phlogopite-bearing) and cryptically metasomatized xenoliths from the Baikal rift zone give the same fO2 values as depleted anhydrous peridotites, suggesting that solid-melt-fluid reactions in the continental rift mantle also take place without substantial change in redox state. This is in contrast to other tectonic environments where metasomatism appears to be associated with oxidation.
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页码:179 / 193
页数:15
相关论文
共 43 条
[21]   FERRIC IRON IN MANTLE-DERIVED GARNETS - IMPLICATIONS FOR THERMOBAROMETRY AND FOR THE OXIDATION-STATE OF THE MANTLE [J].
LUTH, RW ;
VIRGO, D ;
BOYD, FR ;
WOOD, BJ .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 1990, 104 (01) :56-72
[22]  
MA XY, 1988, EPISODES, V11, P84
[23]   MAGNETITE ACTIVITIES ACROSS THE MGAL2O4-FE3O4 SPINEL JOIN, WITH APPLICATION TO THERMOBAROMETRIC ESTIMATES OF UPPER MANTLE OXYGEN FUGACITY [J].
MATTIOLI, GS ;
WOOD, BJ .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 1988, 98 (02) :148-162
[24]   UPPER MANTLE OXYGEN FUGACITY AND ITS RELATIONSHIP TO METASOMATISM [J].
MATTIOLI, GS ;
BAKER, MB ;
RUTTER, MJ ;
STOLPER, EM .
JOURNAL OF GEOLOGY, 1989, 97 (05) :521-536
[25]   UPPER MANTLE OXYGEN FUGACITY RECORDED BY SPINEL LHERZOLITES [J].
MATTIOLI, GS ;
WOOD, BJ .
NATURE, 1986, 322 (6080) :626-628
[26]   CONSTRAINTS ON THE COMPOSITION OF THE CONTINENTAL LITHOSPHERIC MANTLE [J].
MCDONOUGH, WF .
EARTH AND PLANETARY SCIENCE LETTERS, 1990, 101 (01) :1-18
[27]  
MENZIES MA, 1987, MANTLE XENOLITHS, P59
[28]  
MERCIER JCC, 1975, J PETROL, V16, P454
[29]  
NELL J, 1991, AM MINERAL, V76, P405
[30]   THE OLIVINE ORTHO-PYROXENE SPINEL OXYGEN GEOBAROMETER, THE NICKEL PRECIPITATION CURVE, AND THE OXYGEN FUGACITY OF THE EARTHS UPPER MANTLE [J].
ONEILL, HS ;
WALL, VJ .
JOURNAL OF PETROLOGY, 1987, 28 (06) :1169-1191