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Superoxide Mediated Reduction of Organically Complexed Iron(Ⅲ): Comparison of Non-Dissociative and Dissociative Reduction Pathways

机译:超氧化物介导的有机络合铁的还原反应(Ⅲ):非解离还原途径与解离还原途径的比较

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摘要

We have investigated the mechanism of reduction of organically complexed iron(Ⅲ) in the presence of superoxide, the one-electron reduced form of dioxygen that is produced in natural waters by thermal, photochemical, and biological pathways. Experimental results show that reduction of organically complexed iron(Ⅲ) by superoxide may occur by either (or, in some instances, both) reaction of superoxide with inorganic iron(Ⅲ) after its dissociation from the complex (dissociative reduction) or by direct reaction of superoxide with the complex (non-dissociative reduction). In the presence of low concentrations of ligands such as citrate and sulfosalicylate that bind iron-(Ⅲ) relatively weakly and result in complexes with high dissociation rate constants (k_d > 1 x 10~ (-4) s~(-1)), a dissociative reduction pathway dominates. However, in the presence of strong ligands or high concentrations of weak ligands, only non-dissociative reduction of complexed iron(Ⅲ) occurs. The relative contribution of each pathway has major implications for the lability and hence potential bioavailablity of iron in natural waters. The simple kinetic model developed here can be used to correctly predict the superoxide-mediated formation rates of iron(Ⅱ) in natural systems.
机译:我们研究了在超氧化物的存在下有机络合铁(Ⅲ)的还原机理,超氧化物是天然水通过热,光化学和生物途径产生的单电子双氧还原形式。实验结果表明,过氧化物与无机铁(Ⅲ)解离后(分解还原)或直接反应可导致超氧化物还原有机络合铁(Ⅲ)。与复合物的超氧化物(非离解还原)。在低浓度的配体(例如柠檬酸盐和磺基水杨酸酯)的存在下,它们与铁-(Ⅲ)的结合相对较弱,并导致复合物具有高解离速率常数(k_d> 1 x 10〜(-4)s〜(-1)),分离还原途径占主导。但是,在存在强配体或高浓度的弱配体的情况下,仅发生非离解的复合铁(Ⅲ)还原。每种途径的相对贡献对天然水中铁的不稳定性以及铁的潜在生物利用度都有重要影响。本文开发的简单动力学模型可用于正确预测自然系统中超氧介导的铁(Ⅱ)形成速率。

著录项

  • 来源
    《Environmental Science & Technology》 |2007年第9期|p.3205-3212|共8页
  • 作者单位

    School of Civil and Environmental Engineering, The University of New South Wales, Sydney 2052, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:05:57

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