贝洛摩尔移动带含刚玉变质岩中磷灰石的地球化学和钍钕同位素系统学

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS
E. Yu. Akimova, A. B. Kuznetsov, G. V. Konstantinova, S. G. Skublov
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引用次数: 0

摘要

研究了基托斯特罗夫(Khitoostrov)矿床(白云母移动带)含刚玉变质岩、伴生斜长岩以及以Chupa序列石榴石闪长岩和辉绿岩-石榴石-黑云母片麻岩为代表的母岩中磷灰石的地球化学特征(REE、微量元素)以及Sr和Nd同位素组成。含刚玉变质岩和辉绿岩-石榴石-生物片麻岩中的磷灰石富含中等REE,并具有负Eu异常(Eu/Eu* 0.20-0.35)。含刚玉岩石中的磷灰石与Chupa岩序片麻岩中的磷灰石不同,其Sr、LREE含量增加,HREE含量减少,87Sr/86Sr(t)比值降低,ɛNd(T)值增加:分别为0.70 865-0.70 896和-9.3 ± 0.2,而Chupa岩序片麻岩中的磷灰石为0.72 533和-8.1。石榴石闪长岩中的磷灰石富含MREE,缺乏Eu-异常(Eu/Eu* 0.98),具有较低的ɛNd(T) = -9.3和最低的87Sr/86Sr(t) 比率(0.70 560)。磷灰石的Sm-Nd年龄估计为1.80 ± 0.15 Ga,与贝洛摩里亚移动带的斯维科芬尼变质作用相吻合。磷灰石的地球化学特征和 87Sr/86Sr(t) 比值表明,片麻岩的变质作用是由下地壳流体引起的,并伴随着 LREE 的流入和 HREE 的去除。Eu异常略低,Ce与Th、REE与La/Sm的关系较高,反映了含刚玉变质岩的磷灰石是在比主岩磷灰石更氧化的环境中形成的。无论是含刚玉的变质岩和斜长岩,还是母岩,都没有发现任何与地表(流星)水相互作用的 Sr-同位素和 REE-地球化学痕迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Geochemistry and Sr–Nd Isotope Systematics of Apatite from Corundum-Bearing Metasomatites of the Belomorian Mobile Belt

Geochemistry and Sr–Nd Isotope Systematics of Apatite from Corundum-Bearing Metasomatites of the Belomorian Mobile Belt

The geochemical characteristics (REE, trace elements) and Sr and Nd isotopic composition of apatite from corundum-bearing metasomatites of the Khitoostrov occurrence (Belomorian Mobile Belt), associated plagioclasites, and host rocks represented by garnet amphibolites and kyanite–garnet–biotite gneisses of the Chupa sequence have been studied. Apatites from the corundum-bearing metasomatites and kyanite–garnet–biotite gneisses are enriched in medium REE and have a negative Eu anomaly (Eu/Eu* 0.20–0.35). Apatite from the corundum-bearing rocks differs from apatite from the gneisses of the Chupa sequence in the increased content of Sr, LREE, decreased content of HREE, as well as a lower 87Sr/86Sr(t) ratio and an increased ɛNd(T) value: 0.70 865–0.70 896 and –9.3 ± 0.2 compared to 0.72 533 and –8.1, respectively. Apatite from the garnet amphibolites is enriched in MREE, lacks Eu-anomaly (Eu/Eu* 0.98), and has a low ɛNd(T) = –9.3 and the lowest 87Sr/86Sr(t) ratio of 0.70 560. The Sm-Nd age estimate of apatite is 1.80 ± 0.15 Ga, which coincides with the Svecofennian metamorphism in the Belomorian Mobile Belt. The geochemical features of the apatite and 87Sr/86Sr(t) ratios indicate that the metasomatic alteration of the gneisses was caused by the lower crustal fluid and was accompanied by the influx of LREE and the removal of HREE. The slightly lower Eu anomaly and higher Ce vs Th and REE vs La/Sm relations reflect the fact that apatite from the corundum-bearing metasomatic rocks was formed in a more oxidizing environment than apatite from host rocks. Neither the corundum-bearing metasomatites and plagioclasites, nor the host rocks revealed any Sr-isotopic and REE-geochemical traces of interaction with surface (meteoric) waters.

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来源期刊
Geochemistry International
Geochemistry International 地学-地球化学与地球物理
CiteScore
1.60
自引率
12.50%
发文量
89
审稿时长
1 months
期刊介绍: Geochemistry International is a peer reviewed journal that publishes articles on cosmochemistry; geochemistry of magmatic, metamorphic, hydrothermal, and sedimentary processes; isotope geochemistry; organic geochemistry; applied geochemistry; and chemistry of the environment. Geochemistry International provides readers with a unique opportunity to refine their understanding of the geology of the vast territory of the Eurasian continent. The journal welcomes manuscripts from all countries in the English or Russian language.
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