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Volcanic Origin of the Proterozoic Itabira Iron Formation, Quadrilatero Ferrifero, Minas Gerais, Brazil

机译:Plcanic Origin of Martrozoice Itabira铁形成,Quadrilatero Ferrifero,Minas Gerais,巴西

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Theories on the origin of the Itabira iron formation (itabirite) in Quadrilatero Ferrifero (QF), as elsewhere in the world, are restricted by the apparent lack of adjoining volcanic units, severe syndeformational metamorphism and deep weathering. Besides the three types of iron formations at QF (siliceous, dolomitic and amphibolitic; Dorr, 1969) we include a fourth type initially described as ocherous, goethitic, limonitic or even yellow iron formation. Considering its high magnetite content, it has been described as yellow magnetite itabirite (Pires, 1979). It was reported as formed by the alteration of the dolomitic itabirite (Dorr, 1969) although the anomalous Al_2O_3 contents are high for normal weathered itabirite. The yellowish magnetitic itabirite occurs at the bottom of the Itabira Iron formation, along the contact with the Batatal schists, and at the top units of the Itabira, within the Gandarela Formation. Within the magnetitic itabirite at the Tamandua iron ore mine there are metric zones, concordant to the bedding of pillow-like structures, exhibiting a porous core, surrounded by an intermediate, more granular zone with numerous, minute rounded cavities grading to an external, fine-grained zone with much less minute cavities. In the external portions of some pillows a breadcrust type structure, derived by quenching with the water can be observed. In some other zones, such as the Barreiro hill, an outer, vesicular, whitish yellow, 5 - 10 mm thick, band grades to an aphanitic, isotropic band. The vesicles are slightly flattened against the band surfaces. The existence of fragmental layers showing flowage and fragment alignment, kaolinitic laminas and vesicles filled with kaolinite at Barreiro Hill and Capitao do Mato Mine represent mesoscopic structures, indicators of a possible volcanic origin. Chemical compositions of the magnetitic itabirite from a wide area in QF revealed a relatively high Al_2O_3 content, consistent with a volcanic origin.
机译:Quadrilatero Ferriferro(QF)中itabira铁形成(itabirite)的原始理论,如世界其他地方,受到毗邻的火山组,严重的综合情质变质和深刻风化的明显缺乏。除了QF的三种类型的铁形成之外,我们还包括最初描述的第四种类型,最初被描述为赭石,可变性,唇原甚至黄铁形成。考虑到其高磁铁矿含量,已被描述为黄磁铁矿itabirite(Pires,1979)。据报道,由于白云岩itabirite(Dorr,1969)的改变而形成,尽管正常风化itabirite的异常Al_2O_3内容很高。浅磁性烟灰在伊息岛铁形成的底部发生,沿着与施达塔拉拉的伊息岛的接触,在Gandarela形成内。在Tamandua铁矿石的磁性itabirite内有公制区,到枕头状结构的床上用品,呈现多孔芯,被中间体,更粒度的区域包围,具有众多微小的圆形腔,偏离外部,精细 - 漂亮的区域,腔腔更少。在一些枕头的外部部分中,可以观察到通过用水淬火而导出的填充物型结构。在其他一些区域,例如Barreiro Hill,外部,囊状,发白的黄色,5-10mm厚,带等级到Aphanitic,各向同性带。囊泡略微扁平缠绕在带表面上。存在碎片层的碎片层,显示出在Barreiro Hill和Cabitao的填充有高岭石的碎片对齐,高岭土层和囊泡进行MATO矿井代表了可能的火山原产地的介观结构。 QF中宽面积的磁性itabirite的化学成分显示出相对高的Al_2O_3含量,与火山起源一致。

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