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首页> 外文期刊>Contributions to Mineralogy and Petrology >Chemical assembly of Archean anorthosites from amphibolite-and granulite-facies terranes, SW Greenland
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Chemical assembly of Archean anorthosites from amphibolite-and granulite-facies terranes, SW Greenland

机译:从格陵兰西南部的角闪石和花岗石相地层中太古代的钙长石的化学组装

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We report whole-rock, major- and trace-element compositions (obtained by XRF and INA methods) for the amphibolite-facies Buksefjorden and granulite-facies Nordland anorthosites, SW Greenland. In a previous petrologic study on the same sample suite, we documented differences in texture, mineralogy, and mineral compositions between these two anorthosite bodies. Chemical analyses confirm differences in composition between the two bodies, but these differences cannot be explained by variations in metamorphic conditions, and point towards differences in the nature of their protoliths. Analyzed Nordland samples are anorthosites and leucogabbros with 88-98 percent normative plagioclase, whereas those from Buksefjorden include anorthosite, leucogabbro, and gabbro with approx 55-95 percent normative plagioclase. Two or more compositional groupings can be recognized at each site, which correspond to differences in color and mineralogy of the hand samples. Samples from Buksefjorden are mainly quartz-normative, whereas those from Nordland are olivine (+- nepheline) normative. Other differences include higher Ni/Co ratio and REE contents in the granulite-facies anorthosites from Nordland. REE pattern shapes are similar, however, being moderately fractionated at approx 0.5-10X chondrites with positive Eu-anomalies. Calculated equilibrium melt patterns are similar for both anorthosites, being relatively flat at approx 50-150X chondrites, suggesting unfractionated (but evolved) parental magmas. Olivine must have been present in the protoliths of the Nordland rocks compared with Buksefjorden. Otherwise, the protoliths contained plagioclase with variable An-content (approx An_(62)-An_(92)) and a mafic component with variable Fe/Mg (mg approx 0.3-0.8). This mafic component was either hornblende or a combination or ortho- and clinopyroxene in fixed proportions. plus a small amount of magnetite. Mixing calculations demonstrate that some Buksefjorden anorthosites contain two varieties of plagioclase: a calcic type that may correspond to cumulus crystals, and a sodic-type that may correspond to a trapped-melt component. On plots of normative whole-rock An versus mg, compositions of the Buksefjorden and Nordland anorthosites form crude negative arrays that differ from the generally positive trends of mafic layered intrusions (Kiglapait, Skaergaard) and from the generally flats trends of plagioclase-rich cumulate rocks (St. Urbain and Stillwater anorthosites). This difference provides further evidence for the distinctive nature of Archean calcic-anorthosite complexes compared with other types of mafic intrusions. Moreover, this distribution of data points is consistent with the assembly of the protolith of the SW Greenland anorthosites mainly as mixtures of plagioclase and hornblende. Finally, the field for the Buksefjorden and Nordland anorthosites overlaps only slightly with that for the Fiskenaesset Complex, thus extending the known range of compositions for Archean anorthosites in West Greenland.
机译:我们报告了闪石岩相Buksefjorden和花岗石相Nordland钙长石,SW格陵兰的全岩石,主要和微量元素组成(通过XRF和INA方法获得)。在先前对同一样品套件进行的岩石学研究中,我们记录了这两个无钙铁矿体之间的质地,矿物学和矿物组成的差异。化学分析证实了这两个物体之间的成分差异,但是这些差异不能用变质条件的变化来解释,并且指出了它们原生质性质的差异。分析的Nordland样品为钙长石和斜白石,具有88-98%的标准斜长石,而Buksefjorden的样品包括钙长石,白斑和长剑,其中斜石棉的比例为55-95%。可以在每个位点识别两个或多个组成组,这对应于手部样品的颜色和矿物学差异。 Buksefjorden的样品主要是石英规范的,而Nordland的样品则是橄榄石(+-霞石)的规范。其他差异包括来自Nordland的花岗石相钙长石中较高的Ni / Co比和REE含量。 REE图案形状相似,但是在Eu异常为正的约0.5-10X球粒岩中适度分级。两种钙长石的平衡熔融模式的计算结果相似,在约50-150X的球粒陨石上相对平坦,表明未分级(但演化)的父母岩浆。与Buksefjorden相比,橄榄岩一定存在于Nordland岩石的原石中。否则,原石包含具有可变An含量(约An_(62)-An_(92))的斜长石酶和具有可变Fe / Mg(mg约0.3-0.8)的镁铁矿成分。镁铁质成分为角闪石或固定比例的邻位或邻位和环庚烯。加上少量磁铁矿。混合计算表明,Buksefjorden的一些原位生物含有两种斜长石斜方型:一种可能对应于积云的方解石型,另一种可能对应于熔融熔体的苏打型。在规范的全岩​​An与mg地块上,Buksefjorden和Nordland的原位岩的成分形成了粗略的负向排列,这与镁铁质层状侵入体(Kiglapait,Skaergaard)的总体呈正趋势以及富含斜长石的堆积岩的总体呈扁平趋势不同。 (St. Urbain和Stillwater钙硅钙石)。与其他类型的镁铁质侵入岩相比,这种差异提供了太古代钙质-钙铝铁矿复合体的独特性的进一步证据。此外,数据点的这种分布与西南格陵兰钙硅钙石原硅酸盐原石的组装相一致,主要是斜长石和角闪石的混合物。最终,Buksefjorden和Nordland的钙长石与Fiskenaesset复合体的田地仅略有重叠,从而扩展了西格陵兰太古代的钙长石的组成范围。

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