首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Discrimination of biogenic and detrital magnetite through a double Verwey transition temperature
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Discrimination of biogenic and detrital magnetite through a double Verwey transition temperature

机译:通过双重Verwey转变温度区分生物和碎屑磁铁矿

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Magnetite occurs widely in natural environments in both inorganic and biogenic forms. Discrimination of the origin of magnetite has important implications, from searching for past microbial activity to interpreting paleomagnetic and environmental magnetic records in a wide range of settings. In this study, we present rock magnetic and electron microscopic analyses of marine sediments from the continental margin of Oman. Low-temperature magnetic data reveal two distinct Verwey transition (T-v) temperatures that are associated with the presence of biogenic and inorganic magnetite. This interpretation is consistent with room temperature magnetic properties and is confirmed by electron microscopic analyses. Our study justifies the use of two distinct Tv temperatures as a diagnostic signature for discriminating inorganic and biogenic magnetite. Simple low-temperature magnetic measurements, therefore, provide a tool to recognize rapidly the origin of magnetite within natural samples. In addition, our analyses reveal progressive down-core dissolution of detrital and biogenic magnetite, but with preservation of significant amounts of fine-grained magnetite within sediments that have been subjected to severe diagenetic alteration. We demonstrate that preservation of magnetite in such environments is due to protection of fine-grained magnetite inclusions within silicate hosts. Our results, therefore, also provide new insights into diagenetic processes in marine sediments.
机译:磁铁矿在自然环境中以无机和生物成因形式广泛存在。从寻找过去的微生物活动到解释各种环境中的古磁和环境磁记录,对磁铁矿起源的区分具有重要意义。在这项研究中,我们介绍了来自阿曼大陆边缘的海洋沉积物的岩石磁和电子显微镜分析。低温磁性数据揭示了两个不同的Verwey转变(T-v)温度,它们与生物磁铁矿和无机磁铁矿的存在有关。该解释与室温磁性能一致,并且通过电子显微镜分析得到证实。我们的研究证明使用两个不同的电视温度作为区分无机和生物磁铁矿的诊断特征。因此,简单的低温磁测量提供了一种快速识别天然样品中磁铁矿起源的工具。此外,我们的分析揭示了碎屑和生物成矿磁铁矿的逐渐下芯溶解,但在经历了严重成岩作用的沉积物中保留了大量细粒磁铁矿。我们证明了在这样的环境中保存磁铁矿是由于保护了硅酸盐主体中的细粒磁铁矿包裹体。因此,我们的结果也为海洋沉积物中的成岩过程提供了新的见识。

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