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Electrochemical Analyses of Redox-Active Iron Minerals: A Review of Nonmediated and Mediated Approaches

机译:氧化还原活性铁矿物质的电化学分析:非介导和介导方法的综述。

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摘要

Redox-active minerals are ubiquitous in the environment and are involved in numerous electron transfer reactions that significantly affect biogeochemical processes and cycles as well as pollutant dynamics. As a consequence, research in different scientific disciplines is devoted to elucidating the redox properties and reactivities of minerals. This review focuses on the characterization of mineral redox properties using electrochemical approaches from an applied (bio)geochemical and environmental analytical chemistry perspective. Establishing redox equilibria between the minerals and working electrodes is a major challenge in electrochemical measurements, which we discuss in an overview of traditional electrochemical techniques. These issues can be overcome with mediated electrochemical analyses in which dissolved redox mediators are used to increase the rate of electron transfer and to facilitate redox equilibration between working electrodes and minerals in both amperometric and potentiometric measurements. Using experimental data on an iron-bearing clay mineral, we illustrate how mediated electrochemical analyses can be employed to derive important thermodynamic and kinetic data on electron transfer to and from structural iron. We summarize anticipated methodological advancements that will further contribute to advance an improved understanding of electron transfer to and from minerals in environmentally relevant redox processes.
机译:具有氧化还原活性的矿物质在环境中无处不在,并且参与许多电子转移反应,这些反应显着影响生物地球化学过程和循环以及污染物动力学。因此,不同科学领域的研究致力于阐明矿物质的氧化还原特性和反应性。这篇综述集中于从应用的(生物)地球化学和环境分析化学的角度使用电化学方法表征矿物氧化还原特性。在矿物和工作电极之间建立氧化还原平衡是电化学测量的主要挑战,我们将在传统电化学技术的概述中进行讨论。这些问题可以通过介导的电化学分析来克服,在电化学分析中,溶解的氧化还原介体可用于提高电子传输速率,并在安培和电位测量中促进工作电极与矿物之间的氧化还原平衡。使用含铁粘土矿物的实验数据,我们说明了如何利用介导的电化学分析来得出关于结构铁中电子转移的重要热力学和动力学数据。我们总结了预期的方法学进展,这些进展将进一步有助于增进人们对与环境有关的氧化还原过程中与矿物之间的电子转移的理解。

著录项

  • 来源
    《Environmental Science & Technology》 |2015年第10期|5862-5878|共17页
  • 作者单位

    Department of Environmental Systems Science, Institute of Biogeochemistry and Pollutant Dynamics, Environmental Chemistry, Swiss Federal Institute of Technology (ETH), Universitaetstrasse 16, 8092 Zurich, Switzerland;

    Environmental Chemistry, Swiss Federal Institute of Aquatic Science and Technology (Eawag), Ueberlandstrasse 133,8600 Duebendorf, Switzerland;

    Civil and Environmental Engineering, The Pennsylvania State University, 212 Sackett Building, University Park, Pennsylvania 16802-1408, United States;

  • 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
  • 关键词

  • 入库时间 2022-08-17 13:59:40

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