首页> 外文期刊>Journal of Asian earth sciences >Phase equilibria modelling using major and trace element compositions of zoned garnet and clinopyroxene from southwestern Tianshan eclogites, China
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Phase equilibria modelling using major and trace element compositions of zoned garnet and clinopyroxene from southwestern Tianshan eclogites, China

机译:利用天山西南部榴辉岩中带状石榴石和斜辉石的主要和微量元素组成进行相平衡建模

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摘要

We present major and trace element zoning in clinopyroxene and garnet in the low-temperature eclogites from southwestern Tianshan ultrahigh-pressure metamorphic belt. The clinopyroxene crystals in the matrix exhibit three distinct growth zones, including the aegirine-rich core, a transition mantle and the omphacite rim. The aegirine core has weak Ce anomaly, flat light rare earth element pattern, and slightly enriched heavy rare earth element contents. The omphacite rim has lower trace element contents, and is depleted in large-ion lithospheric elements, light and heavy rare earth elements. The garnet zonation is featured by the core-to-rim increase in pyrope and grossular contents, and distinct rare earth element patterns: the core has left-leaning rare earth element patterns and the rim is depleted in both light and heavy rare earth elements. Phase equilibria modelling based on the phase assemblage and mineral zoning patterns reveal that the aegirine eclogite was heated and buried along the ca. 8 degrees C/km geotherm in the cold subduction zone, and reached the peak metamorphic condition of 23-25 kbar, 540-560 degrees C. The jadeite content in the clinopyroxene increases along the prograde-toexhumation P-T path (Jd: from 0.25 to 0.45), with the transitional mantle corresponds to the peak conditions. The omphacite rim with the highest jadeite content (Jd similar to 45) formed during decompression. For a Fe3+-rich clinopyroxene, the maximum in Jd component does not necessarily represent the peak pressure, so the conventional thermobarometers should be used with caution for mineral assemblages with such complicated zonation patterns. The variation of oxygen fugacity correlates with the changes in mineral assemblage, P-T condition, and the bulk-rock Fe3+/Fe-T ratio. The oxygen fugacity is not always positively correlated with the Fe3+/(Fe3+ + Al) or Fe3+/Fe-T ratio in clinopyroxene. Rare earth element zoning garnet and clinopyroxene are modelled based on mass balance. The modelled growth zonation closely resembles the observed compositional profiles, suggesting that rare earth elements are passively distributed among phases near chemical equilibrium during the mineral growth.
机译:在西南天山超高压变质带的低温榴辉岩中,我们发现了斜辉石和石榴石中的主要和微量元素分区。基质中的斜辉石晶体显示出三个不同的生长区,包括富含埃吉拉林的核,过渡幔和绿辉石边缘。 eg子核芯的Ce异常弱,轻稀土元素形态平坦,重稀土元素含量稍富。绿沸石边缘的微量元素含量较低,并且贫化了大离子岩石圈元素,轻和重稀土元素。石榴石区带的特征是核心之间的焦距和总含量增加,并且稀土元素的形态独特:核心具有左倾稀土元素的形态,并且轮缘中的轻稀土元素和重稀土元素都被耗尽。基于相组成和矿物分区模式的相平衡模型表明,aegirine榴辉岩被加热并沿ca埋藏。冷俯冲带中的地热为8°C / km,并达到了540-560°C的23-25 kbar的峰值变质条件。斜柏石中的翡翠含量沿前进-放化PT路径增加(Jd:从0.25至0.45),与过渡幔对应的峰值条件。在减压过程中形成了具有最高翡翠含量(Jd类似于45)的绿辉石边缘。对于富Fe3 +的斜ino,Jd组分的最大值不一定代表峰值压力,因此对于具有这种复杂分区模式的矿物组合,应谨慎使用常规的热压计。氧逸度的变化与矿物组成,P-T条件和块岩中Fe3 + / Fe-T比的变化有关。氧逸度并不总是与斜柏中的Fe3 + /(Fe3 ++ Al)或Fe3 + / Fe-T比呈正相关。基于质量平衡,对稀土元素分区石榴石和斜铁茂进行建模。建模的生长区带非常类似于观察到的成分分布,表明稀土元素在矿物生长过程中在化学平衡附近的各相之间被动分布。

著录项

  • 来源
    《Journal of Asian earth sciences》 |2017年第1期|408-423|共16页
  • 作者单位

    Peking Univ, Sch Earth & Space Sci, Key Lab Orogen Belts & Crustal Evolut, MOE, Beijing 100871, Peoples R China;

    Peking Univ, Sch Earth & Space Sci, Key Lab Orogen Belts & Crustal Evolut, MOE, Beijing 100871, Peoples R China|Yale Univ, Dept Geol & Geophys, New Haven, CT 06520 USA;

    Peking Univ, Sch Earth & Space Sci, Key Lab Orogen Belts & Crustal Evolut, MOE, Beijing 100871, Peoples R China;

    Peking Univ, Sch Earth & Space Sci, Key Lab Orogen Belts & Crustal Evolut, MOE, Beijing 100871, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Eclogite; Aegirine; Pseudosection; Rare earth element; Southwestern Tianshan;

    机译:榴辉岩;eg碱;拟剖面;稀土元素;西南天山;

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