首页> 外文期刊>Proceedings of the Indian Academy of Sciences. Earth and Planetary Sciences >Geology and geochemistry of palaeoproterozoic low-grade metabasic volcanic rocks from Salumber area, Aravalli Supergroup, NW India
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Geology and geochemistry of palaeoproterozoic low-grade metabasic volcanic rocks from Salumber area, Aravalli Supergroup, NW India

机译:印度西北部Aravalli Supergroup Salumber地区的古元古代低品位元成火山岩的地质和地球化学

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摘要

The Palaeoproterozoic Aravalli Supergroup in Salumber region includes a basal unit of metabasic volcanic rocks (Salumber volcanic rocks) overlain by a volcaniclastic/conglomerate one. Although these volcanic rocks have been metamorphosed to green-schist facies, some primary volcanic features are still preserved. This metabasic volcanic sequence can be further differentiated on the basis of textural variations, and the mineral assemblages are: (a) oligoclase + actinolite + chlorite + epidote; and (b) oligoclase + hornblende+ chlorite + biotite + Fe-Ti oxides. The SiO_2 content ranges from ~47.7 to 55.8% and MgO from ~4.2 to 12.8%. Geochemical characteristics allow their subdivision into high Mg and Fe tholeiites. Inverse relationship of MgO with silica, alkalis and Zr is generally consistent with fractionation mechanism, also suggested by a change in colour of the rocks from dark greenish to light greenish towards the upper parts of the sequence. These metabasic volcanic rocks are enriched in incompatible trace elements and LREE (La = 30 — 40 × chondrite, Lu = 2 — 5 × chondrite), and demonstrate affinity mainly with MORB and within plate settings in geochemical tectonic discrimination schemes. The geochemical characteristics suggest a complex evolutionary history envisaging derivation of the melt from an enriched heterogeneous lithospheric source.
机译:萨伯伦地区的古元古代Aravalli超级群包括由火山碎屑/砾岩覆盖的基性火山岩(萨伯伦火山岩)的基底单元。尽管这些火山岩已变质为绿色片岩相,但仍保留了一些主要的火山岩特征。可以根据质地变化进一步区分这种元生火山序列,矿物组合为:(a)寡糖+阳起石+亚氯酸盐+附子; (b)寡糖+角闪石+亚氯酸盐+黑云母+ Fe-Ti氧化物。 SiO_2的含量范围为〜47.7〜55.8%,MgO的范围为〜4.2〜12.8%。地球化学特征使其可以细分为高Mg和Fe菱铁矿。 MgO与二氧化硅,碱金属和Zr的逆关系通常与分馏机理相一致,这也可以通过岩石颜色从深绿色到浅绿色的变化朝向序列的上部来暗示。这些元生火山岩富含不相容的微量元素和LREE(La = 30-40×球粒陨石,Lu = 2-5×球粒陨石),并在地球化学构造判别方案中主要表现出与MORB的亲合力和板块环境内的亲和力。地球化学特征表明,复杂的演化历史设想从富集的非均质岩石圈源中提取熔体。

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