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Iron(III)-Reduction in a Low-Organic-Carbon Brackish-Marine System

机译:低有机碳微咸海洋系统中的铁(III)还原

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Siderite rhizocretions are generally considered to be an indicator of fresh-water conditions. The presence of siderite rhizocretions with a marine 18O isotope signature in the Rutland Formation, Ketton, U.K. seems to contradict this belief. Commonly, in marine settings pyrite is more prevalent than siderite because of the high concentrations of sulfate in seawater. The Rutland Formation is a fine-grained mixed carbonate-clastic succession with interbedded coals that was deposited in marginal marine conditions. Analysis of siderite revealed that it was chemically zoned, predated pyrite, and has an average 18O signature of +0.44. This siderite is interpreted as having precipitated during early diagenesis from brackish to marine porewaters containing low concentrations of bioavailable organic matter. Despite the porewaters being dominantly marine, under conditions of restricted organic-matter quality and/or quantity Fe(III)-reducing bacteria can outcompete sulfate-reducing bacteria for the organic substrate, resulting in the precipitation of siderite at the expense of pyrite.
机译:菱铁矿的根瘤菌通常被认为是淡水状况的指示符 。英国拉特兰组 Ketton中存在具有海洋 18 O同位素特征的菱铁矿根瘤菌 似乎与这一观点相矛盾。通常,在海洋 环境中,黄铁矿比菱铁矿更普遍,因为 在海水中的硫酸盐浓度很高。拉特兰组 是细粒的碳酸盐-碎屑混合岩屑演替,其间夹杂了 煤层,沉积在边缘海洋条件下。菱铁矿的 分析表明,它是化学分区的,早于 黄铁矿,平均 18 O签名为+0.44。该菱铁矿 被解释为在早成岩作用 从微咸水到含有低浓度 生物可利用有机物的海洋孔隙中沉淀。尽管 主要是海洋中的孔隙水,但是在有机物 质量和/或数量受到限制的条件下,减少Fe(III)的细菌可以胜过 硫酸盐还原细菌的有机底物,导致菱铁矿沉淀中的 ,以黄铁矿为代价。

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  • 来源
    《Journal of Sedimentary Research》 |2006年第6期|919-925|共7页
  • 作者单位

    University of Manchester, Department of Earth Sciences, Williamson Building, Oxford Road, Manchester, M13 9PL, U.K. present address: Rice University, 6100 Main Street, Department of Civil and Environmental Engineering, Mechanical Lab, Houston, Texas 77005, U.S.A. Laura.Adams@rice.edu;

    University of Manchester, Department of Earth Sciences, Williamson Building, Oxford Road, Manchester, M13 9PL, U.K.;

    Liverpool University, Department of Earth and Oceanographic Sciences, 4 Brownlow Street, Liverpool, L69 3GP, U.K.;

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