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Spessartine in compact-hematite rock, southern Serra do Espinhaco, Minas Gerais, Brazil, and genesis of compact hematite

机译:巴西米纳斯吉拉斯州Serra do Espinhaco南部致密赤铁矿岩石中的Spessartine和致密赤铁矿的成因

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Fine-grained garnet (grains <50 μm across) is an accessory component of compact hematite, a rock consisting essentially of hematite; compact hematite is a variety of high-grade Fe ore. The garnet is characterized compositionally as spessartine (81—86 mol.%) with subordinate, but significant, amounts of calderite (5—11 mol.%) and "blythite" (up to ~5 mol.%), as well as andradite (4—7 mol.%); pyrope and almandine endmembers are ≤~2 and 1 mol.%, respectively. The recognition of spessartine in compact hematite indicates that oxidation state, rather than whole-rock chemical composition, controlled the garnet composition. The spessartine has a positive Eu anomaly, and a low Th/U ratio (0.13—0.65) compared to the average upper continental crust, Th/U = 3.9, as well as a positive linear correlation of U vs. Li. The spessartine-hosting compact-hematite rock is a high-grade hematite ore that similarly shows a low Th/U ratio, but a convex, tetrad-like segment between Gd and Dy. Decoupling of Eu from other rare-earth elements and of U from Th in the spessartine, together with the anomalous geochemical behaviour of Gd, Tb and Dy in the compact hematite, and its low Th/U ratio, could have been achieved under oxidizing conditions at greenschist-facies metamorphic temperatures. The U and Li present in the spessartine could have been sourced from metamorphic fluids of continental, possibly evaporitic, origin. These interpretations are underpinned by the regional hematitization and tourmalinization observed in the southern Serra do Espinhaco.
机译:石榴石(粒度小于50μm)是致密赤铁矿(一种主要由赤铁矿组成的岩石)的辅助成分。致密的赤铁矿是各种高档铁矿石。石榴石的组成特征为司贝沙汀(81-86 mol。%),具有次要的但显着量的钙铝石(5-11 mol。%)和“褐藻土”(至〜5 mol。%),并辐射(4-7 mol。%);吡啶端基和铝金刚烷端基分别为≤〜2和1 mol。%。致密赤铁矿中的斯佩沙汀的识别表明,氧化状态而非石榴石化学成分控制着石榴石的成分。与平均上部大陆壳的Th / U = 3.9相比,该spessartine具有正Eu异常,并且Th / U比较低(0.13-0.65),并且U与Li呈线性正相关。含塞斯帕汀的致密赤铁矿岩是一种高品位的赤铁矿矿石,其Th / U比低,但在Gd和Dy之间呈凸的,四边形的部分。在氧化条件下,可以使Es与其他稀土元素脱钩,使U在Spessartine中与Th脱钩,以及在致密赤铁矿中Gd,Tb和Dy的异常地球化学行为,以及Th / U比率低。在绿片岩相变质温度。 Spessartine中存在的U和Li可能来源于大陆的可能是蒸发的变质流体。这些解释是在南部埃斯皮尼亚科(Serra do Espinhaco)南部观察到的局部血化和电气化作用的基础。

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