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Distribution of trace elements in spinel and garnet peridotites 被引量:6

Distribution of trace elements in spinel and garnet peridotites
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摘要 The distribution of trace elements in the upper mantle has been discussed on the basis of the trace element abundances in bulk rocks and constituent minerals of two spinel and garnet facies peridotite xenoliths in alkali basalts from eastern China. The data presented are consistent with the suggestion that highly incompatible elements (Rb, Ba, Th, U, Sr, Nb, Ta) mainly reside in intergranular components, and to a lesser extent in fluid inclusions in minerals. The LILE composition in olivine and orthopyroxene can be seriously affected by the presence of fluid inclusions. Consequently the subsolidus partitioning of the LILE cannot be used to infer the olivine-melt and orthopyroxene-melt partition coefficients for these elements. There is a significant difference in (Opx/Cpx)HREE ratios for spinel and garnet peridotites, suggesting a P-T control on equilibrium partition coefficients. The distribution of trace elements in the upper mantle has been discussed on the basis of the trace element abundances in bulk rocks and constituent minerals of two spinel and garnet facies peridotite xenoliths in alkali basalts from eastern China. The data presented are consistent with the suggestion that highly incompatible elements (Rb, Ba, Th, U, Sr, Nb, Ta) mainly reside in intergranular components, and to a lesser extent in fluid inclusions in minerals. The LILE composition in olivine and orthopyroxene can be seriously affected by the presence of fluid inclusions. Consequently the subsolidus partitioning of the LILE cannot be used to infer the olivine-melt and orthopyroxene-melt partition coefficients for these elements. There is a significant difference in (Opx/Cpx)HREE ratios for spinel and garnet peridotites, suggesting a P-T control on equilibrium partition coefficients.
作者 徐义刚
出处 《Science China Earth Sciences》 SCIE EI CAS 2000年第2期166-175,共10页 中国科学(地球科学英文版)
关键词 trace elements DISTRIBUTION PERIDOTITE XENOLITH upper MANTLE ICP-MS. trace elements, distribution, peridotite xenolith, upper mantle, ICP-MS.
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参考文献8

  • 1XU YigangGuangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China.Trace element characteristics and origin of intergranular components in mantle peridotites[J].Chinese Science Bulletin,2000,45(7):643-649. 被引量:5
  • 2Stanley R. Hart,Todd Dunn.Experimental cpx/melt partitioning of 24 trace elements[J]. Contributions to Mineralogy and Petrology . 1993 (1)
  • 3W. F. McDonough,H. -G. Stosch,N. G. Ware.Distribution of titanium and the rare earth elements between peridotitic minerals[J]. Contributions to Mineralogy and Petrology . 1992 (2-3)
  • 4Paul Beattie,Clifford Ford,Douglas Russell.Partition coefficients for olivine-melt and orthopyroxene-melt systems[J]. Contributions to Mineralogy and Petrology . 1991 (2)
  • 5Green,T. H.Experimental studies of trace element partitioning applicable to igneous petrogenesis—Sedona 16 years later, Chem. Geol . 1994
  • 6Shimizu,N.Rare earth elements in garnets and clinopyroxenes from garnet Iherzolites nodules in kimberlites, Earth Planet.Sci. Lett . 1975
  • 7Stosch,H. G.Rare earth element partitioning between minerals from anhydrous spinel peridotite xenoliths, Geochim.Cosmochim. Acta . 1982
  • 8Frey,F. A.Rare earth abundances in a high-temperature peridotite intrusion, Geochim.Cosmochim. Acta . 1969

二级参考文献13

  • 1Liu C Q,Masuda A,Xie G H.Major-and trace-element compositions of Cenozoic basalts in eastern China: petrogenesis and mantle source. Chemical Geology . 1994
  • 2Bedini,R.M,Bodinier,J.L,Dautria,J.M,and Morten,L.Evolution of LILE-enriched small melt fractions in the lithospheric mantle:A case from the East African Rift. Earth and Planetary Science Letters . 1997
  • 3Neal CR,Taylor LA.A negative Ce anomaly in a peridotitexenolith:Evidence for crustal recycling into the mantle or mantlemetasomatism. Geochimica et Cosmochimica Acta . 1989
  • 4Zindler,A,Jagoutz,E.Mantle cryptology. Geochimica et Cosmochimica Acta . 1988
  • 5Bodinier,JL,Merlet,C,Bedini,RM,Simien,F,Remaidi,M,Garrido,CJ.Distribution of niobium, tantalum, and other highly incompatible trace elements in the lithospheric mantle: the spinel paradox. Geochimica et Cosmochimica Acta . 1996
  • 6Ionov,DA,Savoyant,L,Dupuy,C.Application of the ICP-MS technique to trace element analysis of peridotites and their minerals. Geostandard Newslett . 1992
  • 7Fleet,A. J.Rare Earth Element Geochemistry (Ed. Hendereon, P.). Elsevier Oceanography Series . 1984
  • 8DA Ionov,C Dupuy,SY O’Reilly,MG Kopylova,YS Genshaft.Carbonated peridotite xenoliths from Spitsbergen: implications for trace element signature of mantle carbonate metasomatism. Earth and Planetary Science . 1993
  • 9Mckenzie,D. P.Some remarks on the movement of small melt fractions in the mantle, Earth Planet.Sci. Lett . 1989
  • 10Sun, S. S,McDonough, W.F.Chemical and isotopic systematic of oceanic basalt: Implication for mantle composition and process. Magmatism in the Ocean Basin . 1989

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