4.6 Article

Trace element partitioning between majoritic garnet and silicate melt at 10-17 GPa: Implications for deep mantle processes

期刊

LITHOS
卷 148, 期 -, 页码 128-141

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.lithos.2012.06.013

关键词

Garnet; Majorite; Trace elements; Komatiites; Diamonds; Mars

资金

  1. Carnegie Institution of Washington
  2. National Aeronautics and Space Administration [NNG04GG09G]
  3. National Science Foundation [EAR0337621, EAR0739006]
  4. INSU-CNRS 'Programme National de Planetologie'
  5. Bayerisches Geoinstitut
  6. Geotop research centre
  7. Division Of Earth Sciences
  8. Directorate For Geosciences [0739006] Funding Source: National Science Foundation

向作者/读者索取更多资源

Melting experiments were performed on a silica-rich peridotite composition at 10-17 GPa to determine majoritic garnet-melt partition coefficients (D) for major and trace elements. Our results show that D for many elements, including Na, Sc, Y and rare earth elements (REE), varies significantly with increasing pressure or proportion of majorite component. Lu and Sc become incompatible at 17 GPa, with D decreasing from 1.5 at 10 GPa to 0.9 at 17 GPa. As predicted from lattice strain, log D for isovalent cations entering the large site of majoritic garnet exhibits a near-parabolic dependence on ionic radius. Our data are used to refine a previously published predictive model for garnet-melt partitioning of trivalent cations, which suffered from a lack of calibration in the 10-20 GPa range. Our results suggest that Archean Al-depleted komatiites from Barberton (South Africa) may have been generated by partial melting of dry peridotite at depths between 200 and 400 km. We also speculate that transition zone diamonds from Kankan (Guinea), which contain inclusions of majoritic garnet, may have formed from the partial reduction of CO2-rich magmas that subsequently transported them to the surface. This hypothesis would provide an explanation for the REE patterns of majoritic garnet trapped within these diamonds, including Eu anomalies. Finally, we show that segregation of majoritic garnet-bearing cumulates during crystallisation of a deep Martian magma ocean could lead to a variety of Lu/Hf and Sm/Nd ratios depending on pressure, leading to a range of epsilon Nd-143 and epsilon Hf-176 isotope signatures for potential mantle sources of Martian rocks. (C) 2012 Elsevier B.V. All rights reserved.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.6
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据