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Global Fe–O isotope correlation reveals magmatic origin of Kiruna-type apatite-iron-oxide ores

机译:全球铁氧同位素相关性揭示了基律纳型磷灰石-氧化铁矿的岩浆成因

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摘要

Kiruna-type apatite-iron-oxide ores are key iron sources for modern industry, yet their origin remains controversial. Diverse ore-forming processes have been discussed, comprising low-temperature hydrothermal processes versus a high-temperature origin from magma or magmatic fluids. We present an extensive set of new and combined iron and oxygen isotope data from magnetite of Kiruna-type ores from Sweden, Chile and Iran, and compare them with new global reference data from layered intrusions, active volcanic provinces, and established low-temperature and hydrothermal iron ores. We show that approximately 80% of the magnetite from the investigated Kiruna-type ores exhibit δ56Fe and δ18O ratios that overlap with the volcanic and plutonic reference materials (> 800 °C), whereas ~20%, mainly vein-hosted and disseminated magnetite, match the low-temperature reference samples (≤400 °C). Thus, Kiruna-type ores are dominantly magmatic in origin, but may contain late-stage hydrothermal magnetite populations that can locally overprint primary high-temperature magmatic signatures.
机译:基律纳型磷灰石-氧化铁矿石是现代工业的重要铁源,但其来源仍存在争议。已经讨论了多种成矿过程,包括低温水热过程与来自岩浆或岩浆流体的高温成因。我们提供了来自瑞典,智利和伊朗的基律纳型矿石磁铁矿的大量新的和合并的铁和氧同位素数据,并将它们与分层侵入岩,活跃的火山省以及已建立的低温和高温地区的新的全球参考数据进行了比较。热液铁矿石。我们发现,所研究的基律纳型矿石中约80%的磁铁矿表现出δ 56 Fe和δ 18 O的比率,这些比率与火山岩和深成岩参考物质(> 800°C),而约20%(主要是脉状和弥散的磁铁矿)与低温参考样品(≤400°C)匹配。因此,基律纳型矿石的起源主要是岩浆,但可能含有后期热液磁铁矿群,可以局部覆盖主要的高温岩浆特征。

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