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Magnetite and Green Rust: Synthesis, Properties, and Environmental Applications of Mixed-Valent Iron Minerals

机译:磁铁矿和绿色锈:混合价钢铁矿物的合成,性能和环境应用

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Mixed-valent iron [Fe(II)-Fe(III)] minerals such as magnetite and green rust have received a significant amount of attention over recent decades, especially in the environmental sciences. These mineral phases are intrinsic and essential parts of biogeochemical cycling of metals and organic carbon and play an important role regarding the mobility, toxicity, and redox transformation of organic and inorganic pollutants. The formation pathways, mineral properties, and applications of magnetite and green rust are currently active areas of research in geochemistry, environmental mineralogy, geomicrobiology, material sciences, environmental engineering, and environmental remediation. These aspects ultimately dictate the reactivity of magnetite and green rust in the environment, which has important consequences for the application of these mineral phases, for example in remediation strategies. In this review we discuss the properties, occurrence, formation by biotic as well as abiotic pathways, characterization techniques, and environmental applications of magnetite and green rust in the environment. The aim is to present a detailed overview of the key aspects related to these mineral phases which can be used as an important resource for researchers working in a diverse range of fields dealing with mixed-valent iron minerals.
机译:混合价铁[Fe(ii)-fe(iii)]磁铁和绿色铁锈如近几十年的矿物质,特别是在环境科学中得到了大量关注。这些矿物阶段是金属和有机碳生物地球化学循环的内在和基本部位,对有机和无机污染物的迁移率,毒性和氧化还原转化起着重要作用。磁铁矿和绿色锈病的形成途径,矿物质和应用是目前地球化学,环境矿物学,地貌学,物质科学,环境工程和环境修复的有效研究领域。这些方面最终决定了环境中磁铁矿和绿色生锈的反应性,这对这些矿物相具有重要后果,例如在修复策略中。在本篇综述中,我们讨论了生物和生物途径的性质,发生,形成,磁铁矿和绿色生锈的非生物途径,表征技术和环境应用。目的是介绍与这些矿物阶段相关的关键方面的详细概述,这些矿泉阶段可以用作在处理混合价钢矿物的各种领域的研究人员的重要资源。

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  • 来源
    《Chemical Reviews 》 |2018年第7期| 共54页
  • 作者单位

    Environmental Mineralogy Center for Applied Geosciences University of Tübingen 72074 Tübingen Germany;

    Geomicrobiology Center for Applied Geosciences University of Tübingen 72074 Tübingen Germany;

    Environmental Mineralogy Center for Applied Geosciences University of Tübingen 72074 Tübingen Germany;

    Environmental Mineralogy Center for Applied Geosciences University of Tübingen 72074 Tübingen Germany;

    Univ Rennes école Nationale Supérieure de Chimie de Rennes CNRS ISCR – UMR6226 F-35000 Rennes France;

    Laboratoire de Chimie Physique et Microbiologie pour l’Environnement UMR 7564 CNRS-Université de Lorraine 54600 Villers-Lès-Nancy France;

    Geomicrobiology Center for Applied Geosciences University of Tübingen 72074 Tübingen Germany;

    Environmental Mineralogy Center for Applied Geosciences University of Tübingen 72074 Tübingen Germany;

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  • 正文语种 eng
  • 中图分类 化学 ;
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