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首页> 外文期刊>Mineralogical Magazine >REE zoning in allanite related to changing partition coefficients during crystallization: implications for REE behaviour in an epidote-bearing tonalite
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REE zoning in allanite related to changing partition coefficients during crystallization: implications for REE behaviour in an epidote-bearing tonalite

机译:与结晶过程中分配系数变化有关的尿囊石中的稀土元素分区:对带有附子的方铅矿中稀土元素行为的影响

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摘要

Allanite is present in most samples of the tonalitic Bell Island Pluton, with an average mode near 0.05 wt.%. Allanite occurs as cores in igneous epidote-clinozoisite and exhibits characteristic and consistent zoning patterns. REE-rich cores (All40–70) grade out towards epidote-clinozoisite with REE below electron microprobe detection limits. La, Ce and Pr contents are highest in the REE-rich cores of zoned crystals. Nd and Sm contents both initially increase as total REE decreases and are highest in intermediate zones. Y contents are generally low throughout, but tend to be highest in analyses with All5–20. The zoning behaviour exhibited by the allanite, specifically the rimward increases in Nd, Sm, and Y, cannot be accounted for by simple fractionation and are best explained by increases in allanite/melt partition coefficients (Kd values) for these elements during crystallization. We propose that the variation in Kd values reflects modification of the allanite structure with changing REE content. These modifications are manifested by changes in colour, extinction, and pleochroism within the zoned crystals and include changes in unit-cell volume and dimensions. The changes in Kd values are large enough to result in crossing REE patterns within single allanite crystals. Fractional crystallization of zoned allanite can have noticeable effects on LREE contents and La/Sm (and almost certainly La/Lu) in magmas. In the Bell Island pluton, 80% of La, but <3% of Y is contained in allanite. Although some of the variation in the LREE chemistry of the pluton is attributable to statistical sampling error, much of it appears to reflect petrogenetic processes that controlled LREE abundance and, ultimately, allanite mode. One sample of Bell Island tonalite is depleted in LREE and has low La/Lu and La/Sm. These chemical features can be modelled by fractionation of zoned allanite.
机译:色拉石贝尔岛 Pluton的大多数样品中都存在尿石,其平均模式接近0.05 wt。%。尿囊石以 为核心存在于火成岩的斜长岩沸石中,并具有特征性的 和一致的分区模式。富含REE的核(全部 40–70 趋向于表观斜长岩,其REE低于电子 探针的检测极限。 La,Ce和Pr的含量在分区晶体的富REE核中最高 。 Nd和Sm含量 最初都随着总REE的减少而增加,并且在中间区域最高。 Y含量通常在整个 中较低,但在使用All 5-20 的分析中往往最高。尿囊石表现出的分区 行为,特别是Nd,Sm和Y中边沿 的增加,不能通过简单的 分馏来解释,并且最好的解释是,在 结晶期间,这些元素的尿石/熔体 分配系数(K d 值)增加。我们建议K d 值的变化 反映了随着 REE含量的变化,尿囊结构的改变。这些修饰通过区域晶体 中的 颜色,消光和多色性变化来体现,并且包括单位晶胞体积和尺寸的变化。 K d 值的 变化足够大,以致于单个尿石晶体中的 REE图案交叉。带分区的尿囊石的部分结晶 可以对岩浆中的LREE含量 和La / Sm(几乎肯定是La / Lu)产生显着影响。在Bell 岛岩体中,尿囊石中含La的80%,但Y的<3%。 尽管的LREE化学有一些变化 可归因于统计采样误差, 的大部分似乎反映了控制 LREE丰度的岩石成因过程,最终反映了尿囊石模式。 贝尔岛方钠石的一个样本的LREE耗尽,并且La / Lu和 La / Sm低。这些化学特征可以通过分层安拉石的 进行建模。

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  • 来源
    《Mineralogical Magazine 》 |2006年第4期| 419-435| 共17页
  • 作者单位

    Virginia Museum of Natural History, 1001 Douglas Avenue, Martinsville VA 24112, USA;

    Department of Mineral Sciences, Smithsonian Institution, PO Box 37012, National Museum of Natural History, NHB-119, Washington DC 20013-7012, USA;

    Mineralogisch-Geochemisches Institut, Albert-Ludwigs-Universit?t, Albertstrasse 23b, D-79104 Freiburg, Germany;

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

    allanite; zoning; REE; partitioning; tonalite;

    机译:尿囊石分区稀土分区音调;

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