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Stable Iron Isotopes and Microbial Mediation in Red Pigmentation of the Rosso Ammonitico (Mid-Late Jurassic, Verona Area, Italy)

机译:Rosso Ammonitico(意大利中后期侏罗纪,维罗纳地区)的红色色素沉着中的稳定铁同位素和微生物介导

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The iron (Fe) isotopic composition of 17 Jurassic limestones from the Rosso Ammonitico of Verona (Italy) have been analyzed by Multiple-Collector Inductively Coupled Plasma Mass Spectrometry (MC-ICP-MS). Such analysis allowed for the recognition of a clear iron isotopic fractionation (mean −0.8‰, ranging between −1.52 to −0.06‰) on a millimeter–centimeter scale between the red and grey facies of the studied formation. After gentle acid leaching, measurements of the Fe isotopic compositions gave δ56Fe values that were systematically lower in the red facies residues (median: −0.84‰, range: −1.46 to +0.26‰) compared to the grey facies residues (median: −0.08‰, range: −0.34 to +0.23‰). In addition, the red facies residues were characterized by a lighter δ56Fe signal relative to their corresponding leachates. These Fe isotopic fractionations could be a sensitive fingerprint of a biotic process; systematic isotopic differences between the red and grey facies residues, which consist of hematite and X-ray amorphous iron hydroxides, respectively, are hypothesized to have resulted from the oxidizing activity of iron bacteria and fungi in the red facies. The grey Fe isotopic data match the Fe isotopic signature of the terrestrial baseline established for igneous rocks and low-Corg clastic sedimentary rocks. The Fe isotopic compositions of the grey laminations are consistent with the influx of detrital iron minerals and lack of microbial redox processes at the water-interface during deposition. Total Fe concentration measurements were performed by Inductively Coupled Plasma Atomic Emission Spectroscopy (ICP-AES) (confirmed by concentration estimations obtained by MC-ICP-MS analyses of microdrilled samples) on five samples, and resultant values range between 0.30% (mean) in the grey facies and 1.31% (mean) in the red facies. No correlation was observed between bulk Fe content and pigmentation or between bulk Fe content and Fe isotopic compositions. The rapid transformation of the original iron oxyhydroxides to hematite could have preserved the original isotopic composition if it had occurred at about the same temperature. This paper supports the use of Fe isotopes as sensitive tracers of biological activities recorded in old sedimentary sequences that contain microfossils of iron bacteria and fungi. However, a careful interpretation of the iron isotopic fractionation in terms of biotic versus abiotic processes requires supporting data or direct observations to characterize the biological, (geo)chemical, or physical context in relation to the geologic setting. This will become even more pertinent when Fe isotopic studies are expanded to the interplanetary realm. Astrobiology 8, 841–857.
机译:来自意大利维罗纳(Roona)Rosso Ammonitico的Rosso Ammonitico的17种侏罗纪石灰石的铁(Fe)同位素组成已通过多收集器电感耦合等离子体质谱法(MC-ICP-MS)进行了分析。这种分析可以在研究的岩层的红色和灰色相之间的毫米厘米尺度上识别出清晰的铁同位素分馏(平均值为-0.8‰,范围在-1.52至-0.06‰之间)。轻度酸浸后,Fe同位素组成的测量得出的δ56Fe值与灰色相残渣(中位数:-0.08)相比,在红色相残渣(中位数:-0.84‰,范围:-1.46至+ 0.26‰)中系统性地较低。 ‰,范围:-0.34至+ 0.23‰)。另外,相对于其相应的浸出液,红色相残余物的特征在于更轻的δ56Fe信号。这些铁同位素分馏可能是生物过程的敏感指纹。假设分别由赤铁矿和X射线无定形氢氧化铁组成的红色和灰色相残余物之间的系统同位素差异是由于红色相中铁细菌和真菌的氧化活性所致。灰色的Fe同位素数据与为火成岩和低Corg碎屑沉积岩建立的地面基线的Fe同位素特征相符。灰色叠层的铁同位素组成与碎屑铁矿的涌入和沉积过程中水界面缺乏微生物氧化还原过程相一致。通过电感耦合等离子体原子发射光谱法(ICP-AES)(通过微钻孔样品的MC-ICP-MS分析获得的浓度估计值证实)对五个样品进行总Fe浓度测量,结果值在0.30%(平均值)之间。灰色相和红色相的1.31%(平均值)。在本体铁含量与色素沉着之间或在本体铁含量与Fe同位素组成之间未观察到相关性。如果原始的羟基氧化铁快速转变为赤铁矿,如果它在大约相同的温度下发生,则可以保留原始的同位素组成。本文支持使用铁同位素作为记录在旧沉积序列中的生物活动的敏感示踪剂,这些沉积序列包含铁细菌和真菌的微化石。但是,从生物过程和非生物过程的角度对铁同位素分馏进行仔细的解释需要支持数据或直接观察以表征与地质环境有关的生物学,(地球)化学或物理环境。当Fe同位素研究扩展到行星际领域时,这将变得更加相关。天体生物学8,841–857。

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