MELTING RELATIONS OF PERIDOTITE AND THE DENSITY CROSSOVER IN PLANETARY MANTLES

被引:68
作者
OHTANI, E [1 ]
NAGATA, Y [1 ]
SUZUKI, A [1 ]
KATO, T [1 ]
机构
[1] EHIME UNIV,DEPT EARTH SCI,MATSUYAMA,EHIME 790,JAPAN
关键词
D O I
10.1016/0009-2541(94)00139-Y
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
Melting relations of primitive peridotite were studied up to 25 GPa. The change of the liquidus phase from olivine to majorite occurs at similar to 16 GPa. We confirmed the density crossover of the FeO-rich peridotite melt and the equilibrium olivine (Fo(90)) at similar to 7 GPa. Sinking of equilibrium olivine (Fo(95)) in the primitive peridotite melt was observed up to 10 GPa. The compression curves of FeO-rich peridotitic and komatiite melts reported in this and earlier work suggest that the density crossover in the Earth's mantle will be located at similar to 11-12 GPa at 2000 degrees C, consistent with an previous estimation by C.B. Agee and D. Walker. The density crossover can play a key role in the Moon and the terrestrial planets, such as the Earth, Venus and Mars. Majorite and some fraction of melt could have separated from the ascending ng diapir and sunk downwards at the depths below the density crossover. This process could have produced a garnet-rich transition zone in the Earth's mantle. The density crossover may exist in the FeO-rich lunar mantle at around the center of the Moon. The density crossover which exists at the depth of similar to 600 km in the Martian mantle plays a key role in producing a fractionated mantle, which is the source the parent magmas of the SNC meteorites.
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页码:207 / 221
页数:15
相关论文
共 43 条
[1]   EARLY EVOLUTION OF THE EARTH - ACCRETION, ATMOSPHERE FORMATION, AND THERMAL HISTORY [J].
ABE, Y ;
MATSUI, T .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1986, 91 (B13) :E291-E302
[2]   HIGH-PRESSURE MELTING OF CARBONACEOUS CHONDRITE [J].
AGEE, CB .
JOURNAL OF GEOPHYSICAL RESEARCH-PLANETS, 1993, 98 (E3) :5419-5426
[3]   MASS BALANCE AND PHASE DENSITY CONSTRAINTS ON EARLY DIFFERENTIATION OF CHONDRITIC MANTLE [J].
AGEE, CB ;
WALKER, D .
EARTH AND PLANETARY SCIENCE LETTERS, 1988, 90 (02) :144-156
[4]   OLIVINE FLOTATION IN MANTLE MELT [J].
AGEE, CB ;
WALKER, D .
EARTH AND PLANETARY SCIENCE LETTERS, 1993, 114 (2-3) :315-324
[5]   STATIC COMPRESSION AND OLIVINE FLOTATION IN ULTRABASIC SILICATE LIQUID [J].
AGEE, CB ;
WALKER, D .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1988, 93 (B4) :3437-3449
[6]   MELTING IN AN ARCHEAN MANTLE PLUME - HEADS ITS BASALTS, TAILS ITS KOMATIITES [J].
CAMPBELL, IH ;
GRIFFITHS, RW ;
HILL, RI .
NATURE, 1989, 339 (6227) :697-699
[7]   ORTHO-PYROXENE STABILITY ALONG THE PERIDOTITE SOLIDUS AND THE ORIGIN OF CRATONIC LITHOSPHERE BENEATH SOUTHERN AFRICA [J].
CANIL, D .
EARTH AND PLANETARY SCIENCE LETTERS, 1992, 111 (01) :83-95
[8]  
DREIBUS G, 1985, METEORITICS, V20, P367
[9]   CRYSTAL-CHEMISTRY OF PHASE-B AND AN ANHYDROUS ANALOG - IMPLICATIONS FOR WATER STORAGE IN THE UPPER MANTLE [J].
FINGER, LW ;
KO, J ;
HAZEN, RM ;
GASPARIK, T ;
HEMLEY, RJ ;
PREWITT, CT ;
WEIDNER, DJ .
NATURE, 1989, 341 (6238) :140-142
[10]   ORIGIN OF MANTLE PERIDOTITE - CONSTRAINTS FROM MELTING EXPERIMENTS TO 16.5 GPA [J].
HERZBERG, C ;
GASPARIK, T ;
SAWAMOTO, H .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1990, 95 (B10) :15779-15803