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Stability of phengite and biotite in eclogites and characteristics of biotite- or orthopyroxene-bearing eclogites

机译:榴辉岩中软铁矿和黑云母的稳定性以及含黑云母或邻苯二甲酚的榴辉岩的特性

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摘要

Stability of phengite and biotite in eclogite is discussed using petrological data of natural eclogites, and the observational data are examined by thermodynamic calculations. Generally, phengite is a major K phase in natural eclogite and is stable in wide range of bulk composition. However, in eclogites from several localities of the Caledonides, biotite occurs as a stable eclogite-facies mineral, and is often associated with orthopyroxene. Bulk compositions of such biotite- or orthopyroxene-bearing eclogites are compared with those of eclogites from the Dabie–Sulu region, China, where phengite is a major K phase in eclogite. The biotite- or orthopyroxene-bearing eclogites from the Western Gneiss Region of the Caledonides are rich in MgO (10–15 wt%) and relatively poor in CaO (7–8 wt%) and Al2O3 (12–16 wt%). The CaO/MgO ratios of the biotite- or orthopyroxene-bearing eclogites are clearly lower than those of eclogites from the Dabie–Sulu region, indicating that MgO-rich and CaO-poor environments should be important for stabilizing of biotite and orthopyroxene in eclogite. Biotite-bearing eclogite from the North-East Greenland Eclogite Province is rich in MgO (≈16 wt%) and CaO (≈15.5 wt%) and extremely poor in Al2O3 (≈8 wt%). To stabilize biotite in eclogite, Al2O3-poor environments are also important. Bulk compositions of these biotite- or orthopyroxene-bearing eclogites are similar to picrite basaltic compositions. To examine these observational data, thermodynamic calculations were carried out in a seven-component system KH2O1.5–Na2O–CaO–FeO–MgO–Al2O3–SiO2, which includes garnet, kyanite, phengite, biotite, quartz, omphacite, orthopyroxene and olivine in conjunction with mass-balance calculations. Firstly, calculations were performed on the average bulk composition of eclogites from the Dabie–Sulu region to lherzolite (KLB-1). The calculation results confirmed that phengite should be stable in eclogite with 'ordinary' basaltic composition, whereas biotite and orthopyroxene should be stable in picrite basaltic compositions (e.g. MgO >11.0 wt%, CaO <9.8 wt%, Al2O3 <15.2 wt% at 700 °C, 2.5 GPa). Further calculations in basaltic system confirmed that increase of MgO content and decrease of CaO and Al2O3 contents were important to stabilize biotite and orthopyroxene in eclogite. Thus, mineral assemblage in picrite basalt system should be completely different from that in normal basaltic system.
机译:利用天然榴辉岩的岩石学资料讨论了榴辉岩中辉长岩和黑云母的稳定性,并通过热力学计算检查了观测资料。通常,锂辉石是天然榴辉岩中的主要K相,并且在大范围的整体组成中都稳定。但是,在来自Caledonides几个地方的榴辉岩中,黑云母以稳定的榴辉岩相矿物的形式出现,并且通常与邻苯二甲酚有关。将这种含黑云母或邻位邻苯二酚的榴辉岩的本体组成与中国大别-苏鲁地区的榴辉岩的膨松组成进行了比较,其中榴辉岩是榴辉岩中的主要K相。 Caledonides西部片麻岩地区的含黑云母或邻苯二酚的榴辉岩富含MgO(10-15 wt%),而CaO(7-8 wt%)和Al2 O3 相对较差。 (12–16 wt%)。带有黑云母或邻位邻辉石的榴辉岩的CaO / MgO比明显低于大别-苏鲁地区的榴辉岩,这表明富MgO和贫CaO的环境对于稳定榴辉岩中的黑云母和邻位辉石应该是重要的。东北格陵兰榴辉岩省的含黑云母的榴辉岩富含MgO(≈16wt%)和CaO(≈15.5wt%),而Al2 O3 极为贫乏(≈8wt%)。 。为了稳定榴辉岩中的黑云母,贫Al2 O3 环境也很重要。这些带有黑云母或邻苯二酚的榴辉岩的本体组成与苦味碱玄武岩组成相似。为了检查这些观测数据,在七组分系统KH2 O1.5 –Na2 O–CaO–FeO–MgO–Al2 O3 < / sub> –SiO2 ,其中包括石榴石,蓝晶石,变色石,黑云母,石英,绿辉石,邻位邻苯二酚和橄榄石,并进行质量平衡计算。首先,计算了从大别-苏鲁地区到锂铁矿(KLB-1)的榴辉岩的平均体积组成。计算结果证实,榴辉岩在具有“普通”玄武岩成分的榴辉岩中应该是稳定的,而黑云母和邻辉石在苦味碱玄武岩成分中应该是稳定的(例如,MgO> 11.0 wt%,CaO <9.8 wt%,Al2 O3 < / sub>在700°C,2.5 GPa下<15.2 wt%)。在玄武岩体系中的进一步计算证实,MgO含量的增加和CaO和Al2 O3 含量的降低对于稳定榴辉岩中的黑云母和邻辉石具有重要意义。因此,苦味粉玄武岩系统中的矿物组合应该与正常玄武岩系统中的矿物组合完全不同。

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  • 来源
    《Contributions to Mineralogy and Petrology》 |2003年第5期|550-567|共18页
  • 作者

    Daisuke Nakamura;

  • 作者单位

    Department of Geology and Mineralogy Graduate School of Science Kyoto University;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 00:16:25

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