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生物磁铁矿在铁锰结核中的存在。

Presence of biogenic magnetite in ferromanganese nodules.

机构信息

Instituto Oceanográfico, Universidade de São Paulo, São Paulo, Brazil.

Instituto de Microbiologia Paulo de Góes, Universidade Federal do Rio de Janeiro, Brazil.

出版信息

Environ Microbiol Rep. 2020 Jun;12(3):288-295. doi: 10.1111/1758-2229.12831. Epub 2020 Mar 7.

Abstract

Transmission electron microscopy (TEM) and rock magnetic study of ferromanganese nodule sample JC120-104B collected from Clarion-Clipperton zone (CCZ) in the eastern Pacific Ocean indicate the presence of biogenic magnetite (magnetofossils). First-order reversal curves (FORCs) and decomposition of isothermal remanent magnetization (IRM) curves were used as the main tool for the characterization of magnetic properties of the bulk magnetic minerals present in the sample. TEM was performed for the direct identification of biogenic magnetic minerals (magnetofossils). The nodule sample has distinctive alternating Mn and Fe-rich layers per micro-X-ray fluorescence data. While diagenetic precipitation of Mn is known for the less oxygenated environment, the presence of biogenic magnetite is also common in the environments where the supply of oxygen is limited. Moreover, the increase in magnetic properties is consistent with the increase in Mn-content, which is related to favourable conditions for Mn precipitation as well as magnetite biomineralization in oxic-suboxic transition zone. Investigations on magnetofossil fingerprints lead to a better understanding of paleoenvironmental conditions involved in the formation and growth of deep-sea ferromanganese nodules.

摘要

从东太平洋克拉里昂-克利珀顿区(CCZ)采集的铁锰结核 JC120-104B 样本的透射电子显微镜(TEM)和岩石磁学研究表明存在生物磁铁矿(磁化石)。一阶反转曲线(FORC)和等温剩磁(IRM)曲线的分解被用作表征样品中存在的整体磁性矿物磁性质的主要工具。TEM 用于直接鉴定生物磁性矿物(磁化石)。根据微 X 射线荧光数据,结核样本具有独特的交替富 Mn 和富 Fe 层。虽然已知在缺氧环境中会发生 Mn 的成岩沉淀,但在氧气供应有限的环境中也普遍存在生物磁铁矿。此外,磁性特性的增加与 Mn 含量的增加一致,这与 Mn 沉淀以及在氧化-缺氧过渡带中铁矿生物矿化的有利条件有关。对磁化石指纹的研究有助于更好地了解深海铁锰结核形成和生长过程中涉及的古环境条件。

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