首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Magnetic detection and characterization of biogenic magnetic minerals: A comparison of ferromagnetic resonance and first-order reversal curve diagrams
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Magnetic detection and characterization of biogenic magnetic minerals: A comparison of ferromagnetic resonance and first-order reversal curve diagrams

机译:磁性检测和表征生物磁性矿物:铁磁共振和一阶反转曲线图的比较

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Biogenic magnetic minerals produced by magnetotactic bacteria occur ubiquitously in natural aquatic environments. Their identification and characterization are important for interpretation of paleomagnetic and environmental magnetic records. We compare two magnetic methods for their identification and characterization in a diverse set of sedimentary environments: ferromagnetic resonance (FMR) spectroscopy and first-order reversal curve (FORC) diagrams, constrained by transmission electron microscope observations. The advantages and limitations of each method are evaluated. FMR analysis provides a strong diagnostic indicator because of its ability to detect the strong shape anisotropy that arises from the biogenic chain architecture, but it can be obscured in mixed magnetic mineral assemblages. We develop a new FMR fitting approach that enables separation and characterization of biogenic components in natural samples. FMR spectral fitting on magnetofossil-bearing samples does not always reveal a strong signature of biogenic magnetite with <111>-aligned chains, in contrast to whole magnetotactic bacteria cells. This indicates that strictly <111>-aligned chains are not as common in magnetofossil assemblages, due to either chain collapse or different crystallographic axis orientations. FORC analysis provides an excellent tool for isolating the biogenic component as a “central ridge” signature with peak switching field distribution between ~20 and 60 mT. We also analyzed tuff samples with similar FMR characteristics to biogenic magnetite chains, which can cause ambiguity. We propose a magnetic protocol to improve the robustness and efficiency of biogenic magnetite identification and past microbial activity in a wide range of environments.
机译:趋磁细菌产生的生物磁性矿物普遍存在于自然水生环境中。它们的识别和表征对于解释古磁和环境磁记录很重要。我们比较了两种在多种沉积环境中进行识别和表征的磁性方法:铁磁共振(FMR)光谱和一阶反转曲线(FORC)图,这些图受透射电子显微镜观察的约束。评估每种方法的优缺点。 FMR分析提供了强大的诊断指标,因为它能够检测到由生物链结构引起的强烈的形状各向异性,但是在混合的磁性矿物组合物中却难以理解。我们开发了一种新的FMR拟合方法,可以分离和表征天然样品中的生物成分。与整个趋磁细菌细胞相比,含磁石的样品的FMR光谱拟合并不总是显示出具有<111>对齐链的生物磁铁矿的强烈特征。这表明由于链塌陷或不同的结晶轴方向,严格<111>排列的链在磁化石组件中并不常见。 FORC分析提供了一种出色的工具,可将生物成分分离为“中央脊”特征,且峰切换场分布在约20至60 mT之间。我们还分析了具有与生物磁铁矿链相似的FMR特征的凝灰岩样品,这可能会引起歧义。我们提出了一种磁协议,以提高在广泛的环境中生物磁铁矿识别和过去的微生物活动的鲁棒性和效率。

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