首页> 外文期刊>The American mineralogist >Silician magnetite from the Dales Gorge Member of the Brockman Iron Formation, Hamersley Group, Western Australia
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Silician magnetite from the Dales Gorge Member of the Brockman Iron Formation, Hamersley Group, Western Australia

机译:西澳大利亚州哈默斯利集团布罗克曼铁矿集团Dales Gorge成员的西西里磁铁矿

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摘要

We report silician magnetite from banded iron formation (BIF) in the Dales Gorge Member of the Brockman Iron Formation, Hamersley Group, Western Australia. Magnetite mesobands typically consisting of individual ~100 μm microlaminae are revealed to be composed of silician magnetite overgrowths on magnetite. Silician magnetite overgrowths contain from 1 to 3 wt% SiO _2, whereas (low-Si) magnetite domains contain less than 1 wt% SiO _2. Silicon solid solution is present in the magnetite crystal lattice as determined by in situ micro-X-ray diffraction and high-resolution transmission electron microscopy. Three textures are distinguished in magnetite mesobands: (1) magnetite sub-microlaminae with silician magnetite overgrowths, (2) recrystallized magnetite fragments with silician magnetite overgrowths, and (3) a complex intergrowth of magnetite and silician magnetite. All three textures are found in magnetite mesobands from the BIF4-5 and BIF12-16 macrobands of the Dales Gorge type-section drill core DDH-47A from Wittenoom, Western Australia. Magnetite domains contain numerous submicrometer-to- micrometer inclusions of quartz, carbonate, stilpnomelane, and apatite, whereas silician magnetite overgrowths are devoid of mineral inclusions. The presence of mineral inclusions in magnetite indicates the BIF oxide precipitate was not chemically pure iron oxyhydroxide/oxide. Magnetite domains display textures formed during soft sediment deformation that are the earliest and best preserved relict sedimentary structures in this BIF. Silician magnetite is the dominant iron oxide in the Dales Gorge BIF and is present in many other sub-greenschist facies BIFs worldwide. We suggest the former presence of organic matter creates reducing conditions necessary to stabilize silician magnetite. Thus, silician magnetite is a potential biosignature in BIFs.
机译:我们报道了西澳大利亚州哈默斯利集团布罗克曼铁矿集团Dales Gorge成员带状铁矿(BIF)中的硅质磁铁矿。磁铁矿介带通常由单个〜100μm的微层组成,被发现是由磁铁矿上的硅质磁铁矿过度生长组成的。硅质磁铁矿的过度生长含有1-3 wt%的SiO _2,而(低硅)磁铁矿畴的含量小于1 wt%的SiO _2。硅固溶体存在于磁铁矿晶格中,这是通过原位X射线衍射和高分辨率透射电子显微镜确定的。磁铁矿介带具有三种织构:(1)含硅磁铁矿过度生长的亚磁铁矿亚微薄片;(2)含硅磁铁矿过度生长的重结晶磁铁矿碎片;(3)磁铁矿与硅磁铁矿的复杂共生。在来自西澳大利亚维滕努姆的Dales Gorge型截面钻芯DDH-47A的BIF4-5和BIF12-16宏带的磁铁矿中频带中发现了所有三种纹理。磁铁矿域包含许多亚微米级至微米级的石英,碳酸盐,stilpnomelane和磷灰石夹杂物,而硅质磁铁矿的过度生长则没有矿物夹杂物。磁铁矿中矿物夹杂物的存在表明BIF氧化物沉淀物不是化学纯的羟基氧化铁/氧化物。磁铁矿域显示出软沉积物变形过程中形成的纹理,这是该BIF中最早,保存最完好的遗迹沉积结构。硅质磁铁矿是山谷峡谷BIF中主要的氧化铁,并且在世界范围内的许多其他次绿党相BIF中也存在。我们建议以前存在的有机物会产生还原条件,以稳定硅质磁铁矿。因此,硅质磁铁矿是BIF中潜在的生物特征。

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