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Oxygen Isotope Compositions of Iron Oxides from High-Grade BIF-Hosted Iron Ore Deposits of the Central Hamersley Province, Western Australia: Constraints on the Evolution of Hydrothermal Fluids

机译:西澳大利亚州中部哈默斯利省高品位BIF宿主铁矿床中氧化铁的氧同位素组成:对热液演化的限制

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The Hamersley province of northwest Western Australia is one of the world's premier iron ore regions with high-grade martite-microplaty hematite iron ore deposits mostly hosted within banded iron formation (BIF) sequences of the Brockman Iron Formations of the Hamersley Group. These high-grade iron ores contain between 60 and 68 wt percent Fe, and formed by the multistage interaction of hydrothermal fluids with the host BIF formation. The oxygen isotope compositions of magnetite and hematite from BIF, hydrothermal alteration assemblages, and high-grade iron ore were analyzed from the Mount Tom Price, Paraburdoo, and Channar iron ore deposits. The delta~(18)O values of magnetite and hematite from hydrothermal alteration assemblages and high-grade iron ore range from -9.0 to -2.9 per mil, a depletion of 5 to 15 per mil relative to the host BIF. The delta~(18)O values are spatially controlled by faults within the deposits, a response to higher fluid flux and larger influence on the isotopic compositions by the hydrothermal fluids. The oxygen isotope composition of hydrothermal fluids (delta~(18)O_(fluid)) indicates that the decrease in the ~(18)O content of iron oxides was due to the interaction of both basinal brines and meteoric fluids with the original BIF. Late-stage talc-bearing ore at the Mount Tom Price deposit formed in the presence of a pulse of ~(18)OO-enriched basinal brine, indicating that hydrothermal fluids may have repeatedly interacted with the BIFs during the Paleoproterozoic.
机译:西澳大利亚州西北部的哈默斯利省是世界上主要的铁矿石地区之一,其高品位的马氏体-微型白铁矿赤铁矿矿床主要位于哈默斯利集团布罗克曼铁矿的带状铁矿(BIF)层序内。这些高级铁矿石含有60%至68%的铁,是通过水热流体与主体BIF形成的多级相互作用而形成的。从汤姆·普莱斯·普莱斯,帕拉布尔多和尚纳尔铁矿床中分析了BIF,磁铁矿和赤铁矿,水热蚀变组合和高品位铁矿的氧同位素组成。来自水热蚀变组合和高品位铁矿的磁铁矿和赤铁矿的δ〜(18)O值范围为-9.0至-2.9 / mil,相对于宿主BIF而言减少了5-15 / mil。 δ〜(18)O值受沉积物内部断层的空间控制,对较高流体通量的响应以及热液对同位素组成的较大影响。水热流体的氧同位素组成(δ〜(18)O_(流体))表明,氧化铁的〜(18)O含量的减少是由于盆地盐水和陨石流体与原始BIF的相互作用所致。汤姆山(Mount Tom Price)矿床的晚期含滑石矿石是在脉冲状富集〜(18)OO的盆地盐水的情况下形成的,表明在古元古代期间,热液可能与BIF反复相互作用。

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